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C Oriol-Audit

Publications and source records attributed to C Oriol-Audit.

3 recordsLinked to original sources

Influence of the polyamine spermine on the organization of cortical filaments in isolated cortices of Xenopus laevis eggs.

Microinjection of spermine into Xenopus laevis eggs induces precocious furrowing, and together with known spermine-actin interactions, suggests that spermine may be affecting cortical microfilaments involved in cytokinesis. An electron microscopic study of injected eggs revealed that the ultrastructure of the induced furrows was similar to that of both artificially activated eggs and fertilized eggs. In isolated egg cortices, increasing spermine concentrations (1, 3 and 10 mM) resulted in marked changes in cortical microfilament organization. At low concentrations, spermine appeared to stabilize microfilaments and at higher concentrations induced lateral associations between filaments and formation of bundles. The actin nature of these cortical microfilaments was confirmed by immunocytochemistry. The electrophoretic profiles of proteins from control and spermine-treated isolated cortices were similar. Although the total protein content of isolates in 3 and 10 mM spermine was elevated, the relative actin content remained constant. The results are in agreement with previous in vitro studies of polyamine interactions with actin and support the hypothesis that a polyamine-actin interaction may be important in the regulation of cytokinesis.

Actins

Polyamine-induced actin polymerization.

Muscle actin has been found to polymerize reversibly upon addition of low concentrations of polyamines. This polymerization, studied by centrifugation, has shown a linear relationship between the actin polymerization yield and the chain length of the polyamine. Among the biological polyamines tested, spermidine and spermine are the most efficient. The polymerization of actin can also be induced by the corresponding mono or diguanidine derivatives of these polyamines but monoamines or amino acids are inactive at the same concentration. The transformation of actin from a globular to a fibrous from upon addition of spermidine is also demonstrated by the changes in the near-ultraviolet circular dichoroic spectrum of this protein. Moreover, the polyamine-induced F -actin exhibits the same properties as the salt-induced F -actin: it strongly activates the Mg2+ -ATPase of myosin, its specific viscosity is enhanced to the same extent and electron micrographs show homogeneous thin filaments.

Actins