Yamashiro S, Yamakita Y, Ishikawa R, Matsumura F
Department of Molecular Biology and Biochemistry, Rutgers University, Piscataway, New Jersey 08854-1059.
Nature. 1990 Apr 12;344(6267):675-8. doi: 10.1038/344675a0.
At mitosis in eukaryotic cells there are profound changes of shape and structure whose causes are almost entirely obscure. What is known is that there are changes in the organization of microfilaments, including the disassembly of microfilament bundles during prophases and the accompanying rounding-up of cultured cells; the formation of transient contractile rings during cytokinesis; and, subsequently, the reassembly of microfilament bundles and the respreading of the two daughter cells. As an initial step towards the biochemical understanding of these events, in which the disassembly and reassembly of microfilaments appear to play an important part, we searched for alterations of the molecular constitution of microfilaments during mitosis. We found that non-muscle caldesmon, a protein with a relative molecular mass (Mr) of 83,000 (83K) which binds to actin and calmodulin, is dissociated from microfilaments during mitosis, apparently as a consequence of phosphorylation. This process may contribute to the changes of shape and structure of cells in mitosis, as caldesmon inhibits actomyosin ATPase.
在真核细胞有丝分裂过程中,细胞的形状和结构会发生深刻变化,但其原因几乎完全不明。已知的是,微丝的组织会发生变化,包括前期微丝束的解聚以及培养细胞随之变圆;胞质分裂期间形成瞬时收缩环;随后,微丝束重新组装,两个子细胞重新铺展。作为从生化角度理解这些事件(其中微丝的解聚和重新组装似乎起重要作用)的第一步,我们研究了有丝分裂期间微丝分子组成的变化。我们发现,非肌肉钙调蛋白,一种相对分子质量(Mr)为83,000(83K)、能与肌动蛋白和钙调蛋白结合的蛋白质,在有丝分裂期间从微丝上解离,显然是磷酸化的结果。由于钙调蛋白会抑制肌动球蛋白ATP酶,这一过程可能导致有丝分裂期间细胞形状和结构的变化。