Search PubMed⌕ Search

Biomedical subjects

C C Li

Publications and source records attributed to C C Li.

At least 109 records · Page 6Linked to original sources

The existance of a group translocation transport mechanism in animal cells: uptake of the ribose moiety of inosine.

After exposure to inosine, transport-competent plasma membrane vesicles isolated from SV-40-transformed Bal/c 3T3 cells accumulate intravesicular ribose 1-PO4 at a concentration 200-fold greater than the extravesicular concentration. An analysis of the purine nucleoside phosphorylase activity distribution in various subcellular fractions, relative to other enzyme activities, indicated the presence of plasma membrane-associated purine nucleoside phosphorylase activity. The plasma membrane vesicles appear relatively impermeable to hypoxanthine. However, hypoxanthine, which is a competitive inhibitor of the transport reaction, is the only compound tested capable of mediating efflux of already accumulated ribose 1-PO4. In addition, hypoxanthine does not result in the efflux of transported uridine which is accumulated in these membrane vesicles as uridine. Exogenous ribose 1-PO4 neither results in counterflow nor does it inhibit the original uptake reaction. The following transport reaction is proposed: uptake occurs by group translocation, mediated by membrane-localized purine nucleoside phosphorylase. The data are consistent with sites for inosine and hypoxanthine being on the outer membrane surface whereas the ribose 1-PO4 site is only on the inner surface.

Adenine↗

The testing of dominants for heterozygoisty.

A simple method of estimating the frequency of heterozygotes among the dominants by test-making has been described; and then a maximum likelihood estimate is obtained by an iterative counting procedure. Eearly results of Haldane have been review and modified. Methods of estimating the gene frequencies, their ratio, and the inbreeding coefficient from test-mating results have also been given.

Animals↗

Increment of average fitness for multiple alleles.

When the various genotypes (A(i)A(i), A(i)A(i)) of an autosomal locus do not reproduce and contribute equally to the genetic composition of the next generation, we say that the "fitness" values of the genotypes are different, or that there is natural selection on the genotypes. Under natural selection, the average fitness for a random mating population increases with time until a stationary state is reached. This communication gives a general expression for the amount of increase of the average fitness per generation of selection. It was found that the amount of increase depends largely on the linear or additive component of the variance of the genotype fitness values and, to a lesser extent, on the dominance pattern for the values of heterozygote fitness relative to those of homozygote fitness.

Genetic Complementation Test↗