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Biomedical subjects

T Yi

Publications and source records attributed to T Yi.

4 recordsLinked to original sources

Resource-dependent selection.

This paper presents a resource-dependent viability selection differential equation model of continuously reproducing diploid population with two alleles at one locus for a single limiting resource. This model assumes that the genotypic fitness is only a function of the limiting resource. The conditions that the interior equilibrium point of the system exists are that the heterozygote fitness is positive and the homozygote fitness is negative, or the heterozygote fitness is negative and the homozygote fitness is positive at the point. The sufficient and necessary conditions of locally asymptotical stability of the interior equilibrium point are that the heterozygote fitness is positive at the point, or the locally asymptotically stable equilibrium corresponds to the point at which the level of the limiting resource is locally minimized on the zero mean fitness curve, f = 0.

Animals

Assignment of a novel protein tyrosine phosphatase gene (Hcph) to mouse chromosome 6.

Hematopoietic cell phosphatase (Hcph) was identified by amplification of conserved protein tyrosine phosphatase sequences from a myeloid cell line and is predominantly expressed in hematopoietic cells. Hcph is unique in containing two, tandemly repeated, src-homology 2 domains in the amino terminal region of the phosphatase. Using a genomic probe in interspecific backcross analysis, the murine Hcph gene maps to mouse Chromosome 6 and is tightly linked to the Tnfr-2 and Ly-4 genes.

Animals

Identification of Leishmania donovani isolates from different kala-azar foci in China by kDNA hybridization.

kDNA sequence homology of Leishmania donovani isolates from three types of kala-azar foci in China were analyzed by using dot and Southern hybridization with biotin- and 32P-labelled probes. The results revealed kDNA sequence heterogeneity among Leishmania donovani isolates from the three kala-azar foci: sequence homology between isolates of hill and desert foci was higher than that between hill and plain foci isolates. The kDNA hybridization technique was also found to be specific and sensitive for direct identification of Leishmania in animal tissues. In a preliminary survey, kDNA hybridization of cutaneous tissue blots of 71 dogs from endemic regions showed a positive rate of 40.8%, and the rate of double positive cases (touch blot hybridization and bone marrow smear) reached 91.3%. The direct identification of Leishmania in tissues by kDNA hybridization seems to be a useful and convenient method for epidemiological study and clinical diagnosis, especially for species/strain characterization.

Animals

Identification of novel protein tyrosine phosphatases of hematopoietic cells by polymerase chain reaction amplification.

Polymerase chain reaction (PCR) conditions were used to amplify cDNAs that encode putative protein tyrosine phosphatases (PTPs) from a murine interleukin-3-dependent myeloid cell line. Primers for the reactions were based on conserved sequences of the catalytic domain that are shared among all known PTPs. Sequencing of 100 PCR-amplified cDNA clones identified seven different cDNA sequences. Two of these sequences were identical to the murine PTP genes Ly5/CD45/LCA and LRP/R-PTP-alpha. Two of the cDNA sequences were 95% identical to human PTP epsilon (HPTP epsilon) and rat brain PTP (PTP1B), respectively, and are likely to represent their murine homologs. Three of the cDNA sequences encoded novel potential PTPs. One of the putative PTPs was ubiquitously expressed while a second was predominantly expressed in brain, kidney, and liver and at much lower levels in a variety of other cell tkpes and tissues. The third novel putative phosphatase was expressed primarily in hematopoietic cells and tissues in a pattern that was comparable with Ly5/CD45/LCA. Further characterization of these novel PTPs will provide insights into the growth regulation of hematopoietic cells.

Amino Acid Sequence