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Gsh-1: a novel murine homeobox gene expressed in the central nervous system

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TLDR
The characterization of Gsh‐1, a novel murine homeobox gene, is reported, with a transcript of approximately 2 kb in size present at embryonic days 10.5 to E13.5 and the consensus DNA ninding site of the GSh‐1 homeoprotein is determined to be GCT/CA/CATTAG/A.
Abstract
We report the characterization of Gsh-1, a novel murine homeobox gene. Northern blot analysis revealed a transcript of approximately 2 kb in size present at embryonic days 10.5, 11.5, and 12.5 of development. The cDNA sequence encoded a proline rich motif, a polyalanine tract, and a homeodomain with strong homology to those encoded by the clustered Hox genes. The Gsh-1 expression pattern was determined for days E8.5 to E13.5 by whole mount and serial section in situ hybridizations. Gsh-1 transcription was restricted to the central nervous system. Expression is present in the neural tube and hindbrain as two continuous, bilaterally symmetrical stripes within neural epithelial tissue. In the mesencephalon, expression is seen as a band across the most anterior portion. There is also diencephalon expression in the anlagen of the thalamus and the hypothalamus as well as in the optic stalk, optic recess, and the ganglionic eminence. Moreover, through the use of fusion proteins containing the Gsh-1 homeodomain, we have determined the consensus DNA ninding site of the Gsh-1 homeoprotein to be GCT/CA/CATTAG/A. ©1995 Wiley-Liss, Inc.

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Book ChapterDOI

Hox, Cdx, and anteroposterior patterning in the mouse embryo.

TL;DR: The possibility that regulatory phase 1, common to all Cdx and Hox genes, is inherent to the concerted mechanism sequentially turning on 3'-5'Hox genes at early stages, and keeping expression of the initiated genes subsequently in the new materials added posteriorly at the axis extends is discussed.
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A model for the development of the hypothalamic-pituitary axis: transcribing the hypophysis.

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Segment polarity and DV patterning gene expression reveals segmental organization of the Drosophila brain.

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Homeobox genes Gsx1 and Gsx2 differentially regulate telencephalic progenitor maturation

TL;DR: Gsx2 maintains LGE progenitors in an undifferentiated state, whereas Gsx1 promotes progenitor maturation and the acquisition of neuronal phenotypes, at least in part, through the down-regulation of Gs x2.
References
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Book

Manipulating the mouse embryo: A laboratory manual

TL;DR: Here are recorded the tech- niques for preparing, inserting and analysing DNA sequences, for retroviral infection of mice, for production and use of EC and EK cells as vehicles for engineered sequences and for nuclear transplantation - all against a background of the basic procedures required for pro- ducing and handling the em- bryos.
Journal ArticleDOI

An analysis of 5'-noncoding sequences from 699 vertebrate messenger RNAs

TL;DR: 5'-Noncoding sequences have been compiled from 699 vertebrate mRNAs and GCCA/GCCATGG emerges as the consensus sequence for initiation of translation in vertebrates.
Journal ArticleDOI

A gene complex controlling segmentation in Drosophila.

TL;DR: The wild-type and mutant segmentation patterns are consistent with an antero-posterior gradient in repressor concentration along the embryo and a proximo-distal gradient along the chromosome in the affinities for repressor of each gene's cis-regulatory element.
Journal ArticleDOI

Transcriptional regulation in mammalian cells by sequence-specific DNA binding proteins

TL;DR: This review summarizes recent studies that define structural domains for DNA binding and transcriptional activation functions in sequence-specific transcription factors in mammalian DNA binding transcription factors.
Journal ArticleDOI

Homeobox genes and axial patterning

TL;DR: Over the past seven years, the term “homeodomain” has evolved to define a class of protein domains that have recognizable similarity to a 60 amino acid motif originally recognized in three Drosophila homeotic and segmentation proteins.
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