PubMed HealthSearch

Biomedical subjects

S S Shen

Publications and source records attributed to S S Shen.

4 recordsLinked to original sources

Intracellular pH and the sodium requirement at fertilisation.

Several lines of evidence suggest that ionic messengers are primary agents in the metabolic derepression which occurs at fertilisation. The derepression at fertilisation or parthenogenetic activation of the sea urchin egg occurs in two main phases. The first phase, which triggers the early events of fertilisation, is mediated by transitory increase of intracellular free calcium. The second, which triggers the late events of fertilisation, is mediated by a rise in the intracellular pH (refs 4-6). The transition from the early events of fertilisation of sea urchin eggs to the late events requires a minimal concentration of sodium in the external medium. External Na+ is required for the acid effux which follows fertilisation. Na+ requirement and the acid effux have been correlated in a hypothesis which proposes that internal protons are exchanged for external Na+ (refs 8, 9). By using pH-sensitive microelectrodes, we have examined the relationship between external Na+ and internal pH more closely. We demonstrate here that the increase of the intracellular pH following egg activation does require external Na+. However, the relative insensitivity of the alkalisation of the egg cytoplasm to large reductions of external Na+ is evidence against the Na-H exchange hypothesis.

Allosteric Regulation

Alteration of sodium transport in mouse mammary epithelium associated with neoplastic transformation.

Using electrophysiological techniques we have examined the apical membrane ionic permeabilities of primary cell cultures of the mouse mammary gland in the midpregnant, preneoplastic, and neoplastic states. Membrane Na+ permeability changed with tumorigenesis, whereas K+ and Cl- permeabilities were unaltered. With tracer flux techniques the unidirectional efflux rate constant of 22Na was found to be greater in tumor cells than it is in normal cells. This increase in 22Na efflux was eliminated by the addition of ouabain. The results are interpreted as an increase in Na+ permeability and in Na+-K+-ATPase activity with the neoplastic transformation. The presence or absence of the virus in midpregnant cells does not seem to affect Na+ permeability.

Animals