PubMed Health⌕ Search

Biomedical subjects

K T Ram

Publications and source records attributed to K T Ram.

3 recordsLinked to original sources

Biological characterization of Drosophila Rapgap1, a GTPase activating protein for Rap1.

The activity of Ras family proteins is modulated in vivo by the function of GTPase activating proteins, which increase their intrinsic rate of GTP hydrolysis. We have isolated cDNAs encoding a GAP for the Drosophila Rap1 GTPase. Drosophila Rapgap1 encodes an 850-amino acid protein with a central region that displays substantial sequence similarity to human RapGAP. This domain, when expressed in Escherichia coli, potently stimulates Rap1 GTPase activity in vitro. Unlike Rap1, which is ubiquitously expressed, Rapgap1 expression is highly restricted. Rapgap1 is expressed at high levels in the developing photoreceptor cells and in the optic lobe. Rapgap1 mRNA is also localized in the pole plasm in an oskar-dependent manner. Although mutations that completely abolish Rapgap1 function display no obvious phenotypic abnormalities, overexpression of Rapgap1 induces a rough eye phenotype that is exacerbated by reducing Rap1 gene dosage. Thus, Rapgap1 can function as a negative regulator of Rap1-mediated signaling in vivo.

Amino Acid Sequence↗

Twelve new polymorphic microsatellites on human chromosome 22.

A strategy directed at constructing polymorphic STSs from human chromosome 22 has yielded 15 poly(TG) microsatellite markers. A short insert plasmid library containing flow-sorted chromosome 22 DNA was screened with a labeled poly(AC) probe. A combination of sequencing techniques was used to identify the poly(TG) targets, primers were designed to flank these targets, and PCR screening was carried out on a panel of genomic and hybrid DNAs to determine heterozygosity and regional localization on chromosome 22. Twelve of the STSs are polymorphic. Markers with high heterozygosity have been localized to three subregions of 22q, with seven in the Giemsa-dark 22q12 band. The new chromosome 22 loci will be useful for mapping disease loci, for linkage analysis, and for PCR-based contig construction in the ongoing effort to map human chromosome 22.

Animals↗