This application is for an NIMH Research Scientist Development Award (RSDA) Level 2. The University of California at San Francisco is the nominating institution and the site of the research. Many severe psychiatric disorders of childhood, such as autism, mental retardation, and childhood schizophrenia, are caused by abnormalities in brain development. In some of these cases, the abnormal neural development is due to a genetic defect. The goal of the proposed research is to identify and study genes that regulate the development of the mammalian brain, in particular the telencephalon. It is likely that study of the basic genetic mechanisms that control neural development will lead to a firm foundation from which we will be able to understand developmental psychiatric disorders. Subtractive hybridization between cDNA libraries will be used to enrich for genes that are preferentially expressed during development of the mouse telencephalon. Genes that are homologous to transcriptional regulators will be identified using PCR and hybridization. Using these methodologies several cDNAs were cloned in the last year. Highest priority will be given to analysis of one of these genes called TES-1. Preliminary evidence shows that TES-1 encodes a homeodomain-containing protein that is transiently expressed during development of the ventral forebrain, which suggests that TES-1 encodes a transcriptional activator that may regulate differentiation of the ventral forebrain. Analysis of TES-1 will include DNA sequencing, in situ hybridization and characterization of the genomic DNA. Functional studies will include construction of transgenic mice which express the LacZ gene under the control of the TES-1 promoter and construction of strains of mice containing mutations in TES-1.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Research Scientist Development Award - Research (K02)
Project #
5K02MH001046-03
Application #
2240379
Study Section
Molecular, Cellular, and Developmental Neurobiology Review Committee (MCDN)
Project Start
1993-01-01
Project End
1997-12-31
Budget Start
1995-01-01
Budget End
1995-12-31
Support Year
3
Fiscal Year
1995
Total Cost
Indirect Cost
Name
University of California San Francisco
Department
Type
Schools of Medicine
DUNS #
073133571
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Ghanem, Noel; Yu, Man; Long, Jason et al. (2007) Distinct cis-regulatory elements from the Dlx1/Dlx2 locus mark different progenitor cell populations in the ganglionic eminences and different subtypes of adult cortical interneurons. J Neurosci 27:5012-22
Cobos, Inma; Broccoli, Vania; Rubenstein, John L R (2005) The vertebrate ortholog of Aristaless is regulated by Dlx genes in the developing forebrain. J Comp Neurol 483:292-303
Jones, Edward G; Rubenstein, John L R (2004) Expression of regulatory genes during differentiation of thalamic nuclei in mouse and monkey. J Comp Neurol 477:55-80
Huffman, Kelly J; Garel, Sonia; Rubenstein, John L R (2004) Fgf8 regulates the development of intra-neocortical projections. J Neurosci 24:8917-23
Flames, Nuria; Long, Jason E; Garratt, Alistair N et al. (2004) Short- and long-range attraction of cortical GABAergic interneurons by neuregulin-1. Neuron 44:251-61
Bishop, Kathie M; Garel, Sonia; Nakagawa, Yasushi et al. (2003) Emx1 and Emx2 cooperate to regulate cortical size, lamination, neuronal differentiation, development of cortical efferents, and thalamocortical pathfinding. J Comp Neurol 457:345-60
Storm, Elaine E; Rubenstein, John L R; Martin, Gail R (2003) Dosage of Fgf8 determines whether cell survival is positively or negatively regulated in the developing forebrain. Proc Natl Acad Sci U S A 100:1757-62
Yun, Kyuson; Garel, Sonia; Fischman, Seth et al. (2003) Patterning of the lateral ganglionic eminence by the Gsh1 and Gsh2 homeobox genes regulates striatal and olfactory bulb histogenesis and the growth of axons through the basal ganglia. J Comp Neurol 461:151-65
Puelles, Luis; Rubenstein, John L R (2003) Forebrain gene expression domains and the evolving prosomeric model. Trends Neurosci 26:469-76
Garel, Sonia; Huffman, Kelly J; Rubenstein, John L R (2003) Molecular regionalization of the neocortex is disrupted in Fgf8 hypomorphic mutants. Development 130:1903-14

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