DIFFERENTIAL MODULATION OF ACTIN-SEVERING ACTIVITY OF GELSOLIN BY MULTIPLE ISOFORMS OF CULTURED RAT-CELL TROPOMYOSIN - POTENTIATION OF PROTECTIVE ABILITY OF TROPOMYOSINS BY 83-KDA NONMUSCLE CALDESMON
- 5 May 1989
- journal article
- research article
- Vol. 264 (13) , 7490-7497
Abstract
Multiple isoforms of tropomyosin (TM) of rat cultured cells show differential effects on actin-severing activity of gelsolin. Flow birefringence measurements have revealed that tropomyosin isoforms with high Mr values (high Mr TMs) partially protect actin filaments from fragmentation by gelsolin, while tropomyosins with low Mr values (low Mr TMs) have no significant protection even when the actin filaments have been fully saturated with low Mr TMs. We have also examined effect of nonmuscle caldesmon on the severing activity of gelsolin because 83-kDa nonmuscle caldesmon stimulates actin binding of rat cell TMs (Yamashiro-Matsumura, S., and Matsumura, F. (1988) J. Cell Biol. 106, 1973-1983). While nonmuscle caldesmon alone or low Mr TMs alone show no significant protection against fragmentation by gelsolin, the low Mr TMs coupled with 83-kDa protein are able to protect actin filaments. Further, high Mr TMs together with 83-kDa protein appear to block the severing activity completely. Electron microscopic analyses of length distribution of actin filaments have confirmed the results. The average length of control actin filaments is measured as 1.46 .+-. 1.0 .mu.m, and gelsolin shortens the average length to 0.084 .+-. 0.039 .mu.m. Similar short average lengths are obtained when gelsolin severe actin complexed with low Mr TMs (0.080 .+-. 0.045 .mu.m) or with nonmuscle caldesmon (0.11 .+-. 0.072 .mu.m) while longer average length (0.22 .+-. 0.18 .mu.m) is measured in the presence of high Mr TMs. The simultaneous addition of nonmuscle caldesmon makes the average length considerably longer, i.e., 0.61 .+-. 0.37 .mu.m in the presence of low Mr TMs and 1.57 .+-. 0.97 .mu.m in the presence of high Mr TMs. Furthermore, the actin binding of gelsolin is strongly inhibited by co-addition of high Mr TMs and nonmuscle caldesmon. These results suggest that TM and gelsolin share the same binding site on actin molecules and that the differences in the actin affinities between TMs are related to their abilities of protection against gelsolin.This publication has 29 references indexed in Scilit:
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