spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Baur, S. T.
Right arrow Articles by Dymecki, S. M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Baur, S. T.
Right arrow Articles by Dymecki, S. M.
Astrom, A.-K., Jin, D., Imamura, T., Roijer, E., Rosenzweig, B., Miyazono, K., ten Dijke, P. and Stenman, G (1999). Chromosomal localization of three human genes encoding bone morphogenetic protein receptors. Mammalian Genome 10, 299-302.[Medline]

Bau, Z.-Z. and Cepko, C.L (1997). The expression and function of Notch pathway genes in the developing rat eye. J. Neurosci 17, 1425-1434.[Abstract/Free Full Text]

Bitgood, M. J. and McMahon, A. P (1995). Hedgehog and Bmp genes are coexpressed at many diverse sites of cell-cell interaction in the mouse embryo. Dev. Biol 172, 126-138.[Medline]

Dewulf, N., Verschueren, K., Lonnoy, O., Moren, A., Grimsby, S., Vande Spiegle, K., Miyazono, K., Huylebroeck, D. and Ten Dijke, P (1995). Distinct spatial and temporal expression patterns of two type I receptors for bone morphogenetic proteins during mouse embryogenesis. Endocrinology 136, 2652-2663.[Abstract]

Dunn, N. R., Winnier, G. E., Hargett, L. K., Schrick, J. J., Fogo, A. B. and Hogan, B. L. M (1997). Haploinsufficient phenotypes in Bmp4 heterozygous null mice and modification by mutations in Gli3 and Alx4. Dev. Biol 188, 235-247.[Medline]

Dymecki, S. M (1996). Flp recombinase promotes site-specific DNA recombination in embryonic stem cells and transgenic mice. Proc. Natl. Acad. Sci. USA 93, 6191-6196.[Abstract/Free Full Text]

Enomoto-Iwamoto, M., Iwamoto, M., Mukudai, Y., Kawakami, Y., Nohno, T., Higuchi, Y., Takemoto, S., Ohuchi, H., Noji, S. and Kurisu, K (1998). Bone morphogenetic protein signaling is required for maintenance of differentiation phenotype, control of proliferation, and hypertrophy of chondrocytes. J. Cell Biol 140, 409-418.[Abstract/Free Full Text]

Francis-West, P. H., Abdelfattah, A., Chen, P., Allen, C., Parish, J., Ladher, R., Allen, S., MacPherson, S., Luyten, F. P. and Archer, C. W (1999). Mechanisms of GDF-5 action during skeletal development. Development 126, 1305-1315.[Abstract]

Freytag, S., and Geddes, T (1992). Reciprocal regulation of adipogenesis by Myc and C/EBPalpha. Science 256, 379-382.[Abstract/Free Full Text]

Green, M. C (1968). Mechanism of the pleiotropic effects of the short ear mutant gene in the house mouse. J. Exp. Zool 167, 129-150.[Medline]

Gruneberg, H., and Lee, A. J (1973). The anatomy and development of brachypodism in the mouse. J. Embryol. Exp. Morph 30, 119-141.[Medline]

Hinchliffe, J. R (1994). Evolutionary developmental biology of the tetrapod limb. Development 1994, 163-168.

Hogan, B. L. M (1996). Bone morphogenetic proteins: multifunctional regulators of vertebrate development. Genes Dev 10, 1580-1594.[Free Full Text]

Hoodless, P. A., Haerry, T., Abdollah, S., Stapleton, M., O'Connor, M. B., Attisano, L. and Wrana, J. L (1996). MADR1, a MAD-related protein that functions in BMP2 signaling pathways. Cell 85, 489-500.[Medline]

Hotten, G. C., Matsumoto, T., Kimura, M., Bechtold, R. F., Kron, R., Ohara, T., Tanaka, H., Satoh, Y., Okazaki, M., Shirai, T., Pan, H., Kawai, S., Pohl, J. S. and Kudo, A (1996). Recombinant human growth/differentiation factor 5 stimulates mesenchymal aggregation and chondrogenesis responsible for the skeletal development of limbs. Growth Factors 13, 65-74.[Medline]

Hui, C. C., Slusarski, D., Platt, K. A., Holmgren, R. and Joyner, A. L (1994). Expression of three mouse homologs of the Drosophila segment polarity gene cubitus interruptus, Gli, Gli-2, and Gli-3, in ectoderm-and mesoderm-derived tissues suggests multiple roles during postimplantation development. Dev. Biol 162, 402-413.[Medline]

Hynes, M., Stone, D. M., Dowd, M., Pitts-Meek, S., Goddard, A., Gurney, A. and Rosenthal, A (1997). Control of cell pattern in the neural tubebythe zinc finger transcription factor and oncogene Gli-1. Neuron 19, 15-26.[Medline]

Ide, H., Saito-Ohara, F., Ohnami, S., Osada, Y., Ikeuchi, T., Yoshida, T. and Terada, M (1998). Assignment of the BMPR1A and BMPR1B genes to human chromosome 10q22.3 and 4q23-q24 by in situ hybridization and radiation hybrid mapping. Cytogenet. Cell Genet 81, 285-286.[Medline]

Kang, S., Graham, J. M., Jr., Olney, A. H. and Biesecker, L. G (1997). GLI3 frameshift mutations cause autosomal dominant Pallister-Hall syndrome. Nat. Genet 15, 266-268.[Medline]

Kawakami, Y., Ishikawa, T., Shimabara, M., Tanda, N., Enomoto-Iwamoto, M., Iwamoto, M., Kuwana, T., Ueki, A., Noji, S. and Nohno, T (1996). BMP signaling during bone pattern determination in the developing limb. Development 122, 3557-3566.[Abstract]

Kengaku, M., Capdevila, J., Rogriguez-Esteban, C., De La Pena, J., Johnson, R. L., Belmonte, J. C. I. and Tabin, C. J (1998). Distinct WNT pathways regulating AER formation and dorsoventral polarity in the chick limb bud. Science 280, 1274-1277.[Abstract/Free Full Text]

Kingsley, D. M (1994). What do BMPs do in mammals? Clues from the mouse short-ear mutation. Trends Genet 10, 16-21.[Medline]

Lee, J., Platt, K. A., Censullo, P. and Ruiz i Altaba, A (1997). Gli1 is a target of Sonic hedgehog that induces ventral neural tube development. Development 124, 2537-2552.[Abstract]

Lee, K., Lanske, B., Karaplis, A. C., Deeds, J. D., Kohno, H., Nissenson, R. A., Kronenberg, H. M. and Segre, G. V (1996). Parathyroid hormone-related peptide delays terminal differentiation of chondrocytes during endochondral bone development. Endocrinology 137, 5109-5118.[Abstract]

Liu, F., Hata, A., Baker, J. C., Doody, J., Carcamo, J., Harland, R. M. and Massague, J (1996). A human Mad protein acting as a BMP-regulated transcriptional activator. Nature 381, 620-623.[Medline]

Liu, F., Massague, J. and Ruiz i Altaba, A (1998). C-terminally truncated GLI3 proteins associate with Smads. Nature Genet 20, 325-326.[Medline]

Marigo, V., Johnson, R. L., Vortkamp, A., and Tabin, C. J (1996). Sonic hedgehog differentially regulates expression of GLI and GLI3 during limb development. Dev. Biol 180, 273-283.[Medline]

Martin, G. R (1998). The roles of FGFs in the early development of vertebrate limbs. Genes Dev 12, 1571-1586.[Free Full Text]

Massague, J (1996). TGFbeta signaling: receptors, transducers, and Mad proteins. Cell 85, 947-950.[Medline]

Merino, R., Ganan, Y., Macias, D., Economides, A. N., Sampath, K. T. and Hurle, J. M (1998). Morphogenesis of digits in the avian limb is controlled by FGFs, TGFs, and Noggin through BMP Signaling. Dev. Biol 200, 35-45.[Medline]

Merino, R., Macias, D., Ganan, Y., Economides, A. N., Wang, X., Wu, Q., Stahl, N., Sampath, K. T., Varona, P. and Hurle, J. M (1999). Expression and function of Gdf-5 during digit skeletogenesis in the embryonic chick leg bud. Dev. Biol 206, 33-45.[Medline]

Mo, R., Freer, A. M., Zinyk, D. L., Crackower, M. A., Michaud, J., Heng, H. H., Chik, K. W., Shi, X. M., Tsui, L. C., Cheng, S. H., Joyner, A. L. and Hui, C (1997). Specific and redundant functions of Gli2 and Gli3 zinc finger genes in skeletal patterning and development. Development 124, 113-123.[Abstract]

Nishitoh, H., Ichijo, H., Kimura, M., Matsumoto, T., Makishima, F., Yamaguchi, A., Yamashita, H., Enomoto, S. and Miyazono, K (1996). Identification of type I and type II serine/threonine kinase receptors for growth/differentiation factor-5. J. Biol. Chem 271, 21345-21352.[Abstract/Free Full Text]

Nowakowski, R.S., Lewin, S.B. and Miller, M.W (1989). Bromodeoxyuridine immunohistochemical determination of the lengths of the cell cycle and the DNA-synthetic phase for an anatomically defined population. J. Neurocytol 18, 311-318.[Medline]

Oster, G. F., Shubin, N., Murray, J. D. and Alberch, P (1988). Evolution and morphogenetic rules: the shape of the vertebrate limb in ontogeny and phylogeny. Evolution 42, 862-884.

Parr, B. A., Shea, M. J., Vassileva, G. and McMahon, A. P (1993). Mouse Wnt genes exhibit discrete domains of expression in the early embryonic CNS and limb buds. Development 119, 247-61.[Abstract]

Radhakrishna, U., Wild, A., Grzeschik, K.-H. and Antonarakis, S. E (1997). Mutation in Gli3 in postaxial polydactyly type A. Nature Genetics 17, 269-271.[Medline]

Ruiz i Altaba, A (1999). Gli proteins encode context-dependent positive and negative functions: implications for development and disease. Development 126, 3205-3216.[Abstract]

Sasaki, H., Nishizaki, Y., Hui, C., Nakafuku, M. and Kondoh, H (1999). Regulation of Gli2 and Gli3 activities by an amino-terminal repressiondomain: implication of Gli2 and Gli3 as primary mediators of Shh signaling. Development 126, 3915-3924.[Abstract]

St-Jacques, B., Hammerschmidt, M. and McMahon, A. P (1999). Indian Hedgehog signaling regulates proliferation and differentiation of chondrocytes and is essential for bone formation. Genes Dev 13, 2072-2086.[Abstract/Free Full Text]

Storm, E. E., Huynh, T. V., Copeland, N. G., Jenkins, N. A., Kingsley, D. M. and Lee, S. J (1994). Limb alterations in brachypodism mice due to mutations in a new member of the TGF beta-superfamily [see comments]. Nature 368, 639-643.[Medline]

Storm, E. E. and Kingsley, D. M (1996). Joint patterning defects caused by single and double mutations in members of the bone morphogenetic protein (BMP) family. Development 122, 3969-3979.[Abstract]

Storm, E. E. and Kingsley, D. M (1999). GDF5 Coordinates bone and joint formation during digit development. Dev. Biol 209, 11-27.[Medline]

Takahashi, I., Nuckolls, G. H., Takahashi, K., Tanaka, O., Semba, I., Dashner, R., Shum, L. and Slavkin, H. C (1998). Compressive force promotes sox9, type II collagen and aggrecan and inhibits IL-1beta expression resulting in chondrogenesis in mouse embryonic limb bud mesenchymal cells. J. Cell Sci 111, 2067-2076.[Abstract]

Tickle, C (1995). Vertebrate limb development. Curr. Opin. Genet. Dev 5, 478-484.[Medline]

van der Hoeven, F., Zakany, J. and Duboule, D (1996). Gene transpositionsin the HoxD complex reveal a hierarchy of regulatory controls. Cell 85, 1025-1035.[Medline]

Warot, X., Fromental-Ramain, C., Fraulob, V., Chambon, P. and Dolle, P (1997). Gene dosage-dependent effects of the Hoxa-13 and Hoxd-13 mutations on morphogenesis of the terminal parts of the digestive and urogenital tracts. Development 124, 4781-4791.[Abstract]

Yamashita, H.P., ten Dijke, P., Franzen, P., Miyazono, K. and Heldin, C.H (1994). Formation of hetero-oligomeric complexes of type I and type II receptors for transforming growth factor-beta. J. Biol. Chem 269, 20172-20178.[Abstract/Free Full Text]

Yamashita, H. P., ten Dijke, P., Heldin, C. H. and Miyazono, K (1996). Bone morphogenetic protein receptors. Bone 19, 569-574.[Medline]

Yi, S. E., Daluiski, A., Pederson, Ron., Rosen, V. and Lyons, K. M (2000). The type I BMP receptor BMPRIB is required for chondrogenesis in the mouse limb. Development 127, 621-630.[Abstract]

Yokouchi, Y., Sakiyama, J., Kameda, T., Iba, H., Suzuki, A., Ueno, N. and Kuroiwa, A (1996). BMP-2/-4 mediate programmed cell death in chicken limb buds. Development 122, 3725-3734.[Abstract]

Zakany, J. and Duboule, D (1999). Hox genes in digit development and evolution. Cell Tissue Res 296, 19-25.[Medline]

Zou, H. and Niswander, L (1996). Requirement for BMP signaling in interdigital apoptosis and scale formation. Science 272, 738-741.[Abstract]

Zou, H., Wieser, R., Massague, J. and Niswander, L (1997). Distinct roles of type I bone morphogenetic protein receptors in the formation and differentiation of cartilage. Genes Dev 11, 2191-3203.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
DevelopmentHome page
M. L. Sohaskey, J. Yu, M. A. Diaz, A. H. Plaas, and R. M. Harland
JAWS coordinates chondrogenesis and synovial joint positioning
Development, July 1, 2008; 135(13): 2215 - 2220.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
T. Suzuki, S. M. Hasso, and J. F. Fallon
Unique SMAD1/5/8 activity at the phalanx-forming region determines digit identity
PNAS, March 18, 2008; 105(11): 4185 - 4190.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Pathol.Home page
J. Sun, H. Chen, C. Chen, J. A. Whitsett, Y. Mishina, P. Bringas Jr., J. C. Ma, D. Warburton, and W. Shi
Prenatal Lung Epithelial Cell-Specific Abrogation of Alk3-Bone Morphogenetic Protein Signaling Causes Neonatal Respiratory Distress by Disrupting Distal Airway Formation
Am. J. Pathol., March 1, 2008; 172(3): 571 - 582.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
B. S. Yoon, R. Pogue, D. A. Ovchinnikov, I. Yoshii, Y. Mishina, R. R. Behringer, and K. M. Lyons
BMPs regulate multiple aspects of growth-plate chondrogenesis through opposing actions on FGF pathways
Development, December 1, 2006; 133(23): 4667 - 4678.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. T. Thomas, D. Prakash, K. Weih, and M. Moos Jr.
CDMP1/GDF5 Has Specific Processing Requirements That Restrict Its Action to Joint Surfaces
J. Biol. Chem., September 8, 2006; 281(36): 26725 - 26733.
[Abstract] [Full Text] [PDF]


Home page
Mol. Endocrinol.Home page
D. T. Fritz, S. Jiang, J. Xu, and M. B. Rogers
A Polymorphism in a Conserved Posttranscriptional Regulatory Motif Alters Bone Morphogenetic Protein 2 (BMP2) RNA:Protein Interactions
Mol. Endocrinol., July 1, 2006; 20(7): 1574 - 1586.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
L. Qin, L. Wine-Lee, K. J. Ahn, and E. B. Crenshaw III
Genetic Analyses Demonstrate That Bone Morphogenetic Protein Signaling Is Required for Embryonic Cerebellar Development
J. Neurosci., February 15, 2006; 26(7): 1896 - 1905.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
T. Kobayashi, K. M. Lyons, A. P. McMahon, and H. M. Kronenberg
BMP signaling stimulates cellular differentiation at multiple steps during cartilage development
PNAS, December 13, 2005; 102(50): 18023 - 18027.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Kluppel, T. N. Wight, C. Chan, A. Hinek, and J. L. Wrana
Maintenance of chondroitin sulfation balance by chondroitin-4-sulfotransferase 1 is required for chondrocyte development and growth factor signaling during cartilage morphogenesis
Development, September 1, 2005; 132(17): 3989 - 4003.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. Meech, D. B. Edelman, F. S. Jones, and H. P. Makarenkova
The homeobox transcription factor Barx2 regulates chondrogenesis during limb development
Development, May 1, 2005; 132(9): 2135 - 2146.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
B. S. Yoon, D. A. Ovchinnikov, I. Yoshii, Y. Mishina, R. R. Behringer, and K. M. Lyons
Bmpr1a and Bmpr1b have overlapping functions and are essential for chondrogenesis in vivo
PNAS, April 5, 2005; 102(14): 5062 - 5067.
[Abstract] [Full Text] [PDF]


Home page
J. Med. Genet.Home page
O Demirhan, S Turkmen, G C Schwabe, S Soyupak, E Akgul, D Tastemir, D Karahan, S Mundlos, and K Lehmann
A homozygous BMPR1B mutation causes a new subtype of acromesomelic chondrodysplasia with genital anomalies
J. Med. Genet., April 1, 2005; 42(4): 314 - 317.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
D. Murali, S. Yoshikawa, R. R. Corrigan, D. J. Plas, M. C. Crair, G. Oliver, K. M. Lyons, Y. Mishina, and Y. Furuta
Distinct developmental programs require different levels of Bmp signaling during mouse retinal development
Development, March 1, 2005; 132(5): 913 - 923.
[Abstract] [Full Text] [PDF]


Home page
Sci Aging Knowl EnvironHome page
Gdf5-Cre/BmpR1afloxP Mice
Sci. Aging Knowl. Environ., December 15, 2004; 2004(50): tg6 - tg6.
[Full Text]


Home page
GENES CELLSHome page
M. Sammar, S. Stricker, G. C. Schwabe, C. Sieber, A. Hartung, M. Hanke, I. Oishi, J. Pohl, Y. Minami, W. Sebald, et al.
Modulation of GDF5/BRI-b signalling through interaction with the tyrosine kinase receptor Ror2
Genes Cells, December 1, 2004; 9(12): 1227 - 1238.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D. T. Fritz, D. Liu, J. Xu, S. Jiang, and M. B. Rogers
Conservation of Bmp2 Post-transcriptional Regulatory Mechanisms
J. Biol. Chem., November 19, 2004; 279(47): 48950 - 48958.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
W. M. Knosp, V. Scott, H. P. Bachinger, and H. S. Stadler
HOXA13 regulates the expression of bone morphogenetic proteins 2 and 7 to control distal limb morphogenesis
Development, September 15, 2004; 131(18): 4581 - 4592.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y. Mishina, M. W. Starbuck, M. A. Gentile, T. Fukuda, V. Kasparcova, J. G. Seedor, M. C. Hanks, M. Amling, G. J. Pinero, S.-i. Harada, et al.
Bone Morphogenetic Protein Type IA Receptor Signaling Regulates Postnatal Osteoblast Function and Bone Remodeling
J. Biol. Chem., June 25, 2004; 279(26): 27560 - 27566.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
K. L. Abrams, J. Xu, C. Nativelle-Serpentini, S. Dabirshahsahebi, and M. B. Rogers
An Evolutionary and Molecular Analysis of Bmp2 Expression
J. Biol. Chem., April 16, 2004; 279(16): 15916 - 15928.
[Abstract] [Full Text] [PDF]


Home page
JCBHome page
P. Smits, P. Dy, S. Mitra, and V. Lefebvre
Sox5 and Sox6 are needed to develop and maintain source, columnar, and hypertrophic chondrocytes in the cartilage growth plate
J. Cell Biol., March 1, 2004; 164(5): 747 - 758.
[Abstract] [Full Text] [PDF]


Home page
EndocrinologyHome page
F. Gori and M. B. Demay
BIG-3, a Novel WD-40 Repeat Protein, Is Expressed in the Developing Growth Plate and Accelerates Chondrocyte Differentiation in Vitro
Endocrinology, March 1, 2004; 145(3): 1050 - 1054.
[Abstract] [Full Text] [PDF]


Home page
Endocr. Rev.Home page
S. Shimasaki, R. K. Moore, F. Otsuka, and G. F. Erickson
The Bone Morphogenetic Protein System In Mammalian Reproduction
Endocr. Rev., February 1, 2004; 25(1): 72 - 101.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
K. Lehmann, P. Seemann, S. Stricker, M. Sammar, B. Meyer, K. Suring, F. Majewski, S. Tinschert, K.-H. Grzeschik, D. Muller, et al.
From the Cover: Mutations in bone morphogenetic protein receptor 1B cause brachydactyly type A2
PNAS, October 14, 2003; 100(21): 12277 - 12282.
[Abstract] [Full Text] [PDF]


Home page
Endocr. Rev.Home page
H. Chang, C. W. Brown, and M. M. Matzuk
Genetic Analysis of the Mammalian Transforming Growth Factor-{beta} Superfamily
Endocr. Rev., December 1, 2002; 23(6): 787 - 823.
[Abstract] [Full Text] [PDF]


Home page
Nucleic Acids ResHome page
F. Lecerf, L. Foggia, P. Mulsant, A. Bonnet, and F. Hatey
A novel method to isolate the common fraction of two DNA samples: hybrid specific amplification (HSA)
Nucleic Acids Res., September 1, 2001; 29(17): e87 - e87.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
D. M. Panchision, J. M. Pickel, L. Studer, S.-H. Lee, P. A. Turner, T. G. Hazel, and R. D.G. McKay
Sequential actions of BMP receptors control neural precursor cell production and fate
Genes & Dev., August 15, 2001; 15(16): 2094 - 2110.
[Abstract] [Full Text] [PDF]


Home page
Mol. Endocrinol.Home page
J. A. Visser, R. Olaso, M. Verhoef-Post, P. Kramer, A. P. N. Themmen, and H. A. Ingraham
The Serine/Threonine Transmembrane Receptor ALK2 Mediates Mullerian Inhibiting Substance Signaling
Mol. Endocrinol., June 1, 2001; 15(6): 936 - 945.
[Abstract] [Full Text] [PDF]


Home page
JBJSHome page
A. H. Reddi
Bone Morphogenetic Proteins: From Basic Science to Clinical Applications
J. Bone Joint Surg. Am., April 1, 2001; 83(90010): S1 - 6.
[Full Text] [PDF]


Home page
JBJSHome page
P. Buxton, C. Edwards, C. W. Archer, and P. Francis-West
Growth/Differentiation Factor-5 (GDF-5) and Skeletal Development
J. Bone Joint Surg. Am., April 1, 2001; 83(90010): S23 - 30.
[Abstract] [Full Text] [PDF]


Home page
JBJSHome page
L. A. van Grunsven, A. Schellens, D. Huylebroeck, and K. Verschueren
SIP1 (Smad Interacting Protein 1) and {delta}EF1 ({delta}-Crystallin Enhancer Binding Factor) are Structurally Similar Transcriptional Repressors : A Current Survey of Their Functions and Mechanisms of Action in Transforming Growth Factor-{beta} Signalling
J. Bone Joint Surg. Am., April 1, 2001; 83(90010): S40 - 47.
[Abstract] [Full Text] [PDF]


Home page
JBJSHome page
A. H. Reddi
Bone Morphogenetic Proteins: From Basic Science to Clinical Applications
J. Bone Joint Surg. Am., March 1, 2001; 83(1_suppl_1): S1 - S6.
[Full Text] [PDF]


Home page
JBJSHome page
P. Buxton, C. Edwards, C. W. Archer, and P. Francis-West
Growth/Differentiation Factor-5 (GDF-5) and Skeletal Development
J. Bone Joint Surg. Am., March 1, 2001; 83(1_suppl_1): S23 - S30.
[Abstract] [Full Text] [PDF]


Home page
JBJSHome page
L. A. van Grunsven, A. Schellens, D. Huylebroeck, and K. Verschueren
SIP1 (Smad Interacting Protein 1) and {delta}EF1 ({delta}-Crystallin Enhancer Binding Factor) are Structurally Similar Transcriptional Repressors : A Current Survey of Their Functions and Mechanisms of Action in Transforming Growth Factor-{beta} Signalling
J. Bone Joint Surg. Am., March 1, 2001; 83(1_suppl_1): S40 - S47.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
H Aoki, M Fujii, T Imamura, K Yagi, K Takehara, M Kato, and K Miyazono
Synergistic effects of different bone morphogenetic protein type I receptors on alkaline phosphatase induction
J. Cell Sci., January 4, 2001; 114(8): 1483 - 1489.
[Abstract] [PDF]


Home page
DevelopmentHome page
S. Yi, A Daluiski, R Pederson, V Rosen, and K. Lyons
The type I BMP receptor BMPRIB is required for chondrogenesis in the mouse limb
Development, January 2, 2000; 127(3): 621 - 630.
[Abstract] [PDF]


Home page
J. Biol. Chem.Home page
L. Gouedard, Y.-G. Chen, L. Thevenet, C. Racine, S. Borie, I. Lamarre, N. Josso, J. Massague, and N. di Clemente
Engagement of Bone Morphogenetic Protein Type IB Receptor and Smad1 Signaling by Anti-Mullerian Hormone and Its Type II Receptor
J. Biol. Chem., September 1, 2000; 275(36): 27973 - 27978.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Baur, S. T.
Right arrow Articles by Dymecki, S. M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Baur, S. T.
Right arrow Articles by Dymecki, S. M.