The ultimate goal of this proposal is to obtain mice heterozygous for mutations in specific genes thought to play an important role in the control of normal embryonic development. We propose two alternative plans for obtaining such mice. Both involve the creation of insertion mutations in the particular gene of interest in mouse embryonic stem (ES) cells in vitro. One plan employs a method that is termed """"""""gene replacement,"""""""" whereby we will attempt to target the insertion into the gene of interest by injecting into ES cells a mutated segment of that gene, and then isolate cells in which the incoming, mutated DNA has replaced one of the endogenous copies of that gene segment. The other plan involves the establishment of a library of frozen male ES cells in which """"""""saturation mutagenesis"""""""" has occurred following retroviral integration. This library will be screened by the """"""""polymerase chain reaction"""""""" (PCR) method to identify and isolate individual ES cell lines heterozygous for a proviral insertion in the gene of interest, once cells with mutations in the gene of interest are obtained, they will be injected into mouse blastocysts, which will be placed in foster mothers and allowed to develop to term. Any chimeric mice that are born will be mated to determine if the mutated ES cells have colonized the germ line. The successful conversion of mutated ES cells into functional germ cells would allow the establishment of new strains of mice heterozygous for an insertion mutation in the gene of interest. Once such mice are available, we would use them to obtain, by breeding, mutant homozygous embryos, which could then be analyzed to determine the effects on development of a lack of the wild-type gene product. The information gained from such studies could lead, ultimately, to an understanding of the functions of these genes in development.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project (R01)
Project #
5R01HD025331-03
Application #
3326455
Study Section
Special Emphasis Panel (SRC (04))
Project Start
1989-06-01
Project End
1994-02-28
Budget Start
1991-03-01
Budget End
1992-02-29
Support Year
3
Fiscal Year
1991
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
Chi, Neil C; Bussen, Markus; Brand-Arzamendi, Koroboshka et al. (2010) Cardiac conduction is required to preserve cardiac chamber morphology. Proc Natl Acad Sci U S A 107:14662-7
Ishimura, Ryuta; Martin, Gail R; Ackerman, Susan L (2008) Loss of apoptosis-inducing factor results in cell-type-specific neurogenesis defects. J Neurosci 28:4938-48
Storm, Elaine E; Garel, Sonia; Borello, Ugo et al. (2006) Dose-dependent functions of Fgf8 in regulating telencephalic patterning centers. Development 133:1831-44
Grieshammer, Uta; Le Ma; Plump, Andrew S et al. (2004) SLIT2-mediated ROBO2 signaling restricts kidney induction to a single site. Dev Cell 6:709-17
Chi, Candace L; Martinez, Salvador; Wurst, Wolfgang et al. (2003) The isthmic organizer signal FGF8 is required for cell survival in the prospective midbrain and cerebellum. Development 130:2633-44
Goldman, D C; Martin, G R; Tam, P P (2000) Fate and function of the ventral ectodermal ridge during mouse tail development. Development 127:2113-23
Grieshammer, U; Lewandoski, M; Prevette, D et al. (1998) Muscle-specific cell ablation conditional upon Cre-mediated DNA recombination in transgenic mice leads to massive spinal and cranial motoneuron loss. Dev Biol 197:234-47
Lewandoski, M; Martin, G R (1997) Cre-mediated chromosome loss in mice. Nat Genet 17:223-5
Rosenquist, T A; Martin, G R (1995) Visceral endoderm-1 (VE-1): an antigen marker that distinguishes anterior from posterior embryonic visceral endoderm in the early post-implantation mouse embryo. Mech Dev 49:117-21
Blanar, M A; Crossley, P H; Peters, K G et al. (1995) Meso1, a basic-helix-loop-helix protein involved in mammalian presomitic mesoderm development. Proc Natl Acad Sci U S A 92:5870-4

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