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Volume 13, Issue 23:  December 1, 1999  [Index by Author]  [Cover Caption] 

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Other Issues:
  Reviews
  Research Papers
  Errata
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To see an article, click its [Full Text] link. To review many abstracts, check the boxes to the left of the titles you want, and click the 'Get All Checked Abstract(s)' button. To see one abstract at a time, click its [Abstract] link.

Reviews:

Gerard Karsenty
The genetic transformation of bone biology
Genes Dev. 1999 13: 3037-3051. [Full Text] [PDF]  

Research Papers:

Simon H. Reed, Masahiro Akiyama, Bruce Stillman, and Errol C. Friedberg
Yeast autonomously replicating sequence binding factor is involved in nucleotide excision repair
Genes Dev. 1999 13: 3052-3058. [Abstract] [Full Text] [PDF]  

Mark A. Landree, Jamie A. Wibbenmeyer, and David B. Roth
Mutational analysis of RAG1 and RAG2 identifies three catalytic amino acids in RAG1 critical for both cleavage steps of V(D)J recombination
Genes Dev. 1999 13: 3059-3069. [Abstract] [Full Text] [PDF]  

Deok Ryong Kim, Yan Dai, Cynthia L. Mundy, Wei Yang, and Marjorie A. Oettinger
Mutations of acidic residues in RAG1 define the active site of the V(D)J recombinase
Genes Dev. 1999 13: 3070-3080. [Abstract] [Full Text] [PDF]  

Lenore Landis, Jimin Xu, and Reid C. Johnson
The cAMP receptor protein CRP can function as an osmoregulator of transcription in Escherichia coli
Genes Dev. 1999 13: 3081-3091. [Abstract] [Full Text] [PDF]  

Stefano Bertuzzi, Robert Hindges, Stina H. Mui, Dennis D.M. O'Leary, and Greg Lemke
The homeodomain protein Vax1 is required for axon guidance and major tract formation in the developing forebrain
Genes Dev. 1999 13: 3092-3105. [Abstract] [Full Text] [PDF]  

Marc Hallonet, Thomas Hollemann, Tomas Pieler, and Peter Gruss
Vax1, a novel homeobox-containing gene, directs development of the basal forebrain and visual system
Genes Dev. 1999 13: 3106-3114. [Abstract] [Full Text] [PDF]  

Tamara Caspary, Michele A. Cleary, Elizabeth J. Perlman, Pumin Zhang, Stephen J. Elledge, and Shirley M. Tilghman
Oppositely imprinted genes p57Kip2 and Igf2 interact in a mouse model for Beckwith-Wiedemann syndrome
Genes Dev. 1999 13: 3115-3124. [Abstract] [Full Text] [PDF]  

Alice Davy, Nicholas W. Gale, Elizabeth W. Murray, Richard A. Klinghoffer, Philippe Soriano, Claude Feuerstein, and Stephen M. Robbins
Compartmentalized signaling by GPI-anchored ephrin-A5 requires the Fyn tyrosine kinase to regulate cellular adhesion
Genes Dev. 1999 13: 3125-3135. [Abstract] [Full Text] [PDF]  

Andreas Trumpp, Michael J. Depew, John L.R. Rubenstein, J. Michael Bishop, and Gail R. Martin
Cre-mediated gene inactivation demonstrates that FGF8 is required for cell survival and patterning of the first branchial arch
Genes Dev. 1999 13: 3136-3148. [Abstract] [Full Text] [PDF]  

Julie C. Baker, Rosa S.P. Beddington, and Richard M. Harland
Wnt signaling in Xenopus embryos inhibits Bmp4 expression and activates neural development
Genes Dev. 1999 13: 3149-3159. [Abstract] [Full Text] [PDF]  

Jacinto M. Villanueva, Jean Broadhvest, Bernard A. Hauser, Robert J. Meister, Kay Schneitz, and Charles S. Gasser
INNER NO OUTER regulates abaxial- adaxial patterning in Arabidopsis ovules
Genes Dev. 1999 13: 3160-3169. [Abstract] [Full Text] [PDF]  

Errata:


Genes Dev. 1999 13: 3170. [Full Text] [PDF]  

To see an article, click its [Full Text] link. To review many abstracts, check the boxes to the left of the titles you want, and click the 'Get All Checked Abstract(s)' button. To see one abstract at a time, click its [Abstract] link.


Cover Caption:

Cover

Axon guidance defects in Vax1-mutant mice. Shown here is an immunohistochemical analysis of wild-type and Vax1-mutant embryos at E18.5 labeled with antibodies against the cell adhesion protein L1 (brown). In wild-type mice (top), retinal ganglion cell (RGC) axons enter the brain at the base of the hypothalamus and cross to the contralateral side at the X-shaped optic chiasm. In Vax1-mutant mice (bottom), axons do not form an optic chiasm and do not penetrate the brain. They instead terminate in encapsulated whorls. This defect results from the loss of Vax1 in the midline guidance cells with which RGC axons must normally interact at the optic chiasm. (For details, see Bertuzzi et al., p. 3092; see also Hallonet et al., p. 3106).



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