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盘基网柄菌肌球蛋白缺陷型突变体细胞骨架的结构与功能

Structure and function of the cytoskeleton of a Dictyostelium myosin-defective mutant.

作者信息

Fukui Y, De Lozanne A, Spudich J A

机构信息

Department of Cell, Molecular and Structural Biology and Anatomy, Northwestern University Medical School, Chicago, Illinois 60611.

出版信息

J Cell Biol. 1990 Feb;110(2):367-78. doi: 10.1083/jcb.110.2.367.

Abstract

To study the role of conventional myosin in nonmuscle cells, we determined the cytoskeletal organization and physiological responses of a Dictyostelium myosin-defective mutant. Dictyostelium hmm cells were created by insertional mutagenesis of the myosin heavy chain gene (De Lozanne, A., and J. A. Spudich. 1987. Science (Wash. DC). 236: 1086-1091). Western blot analysis using different mAbs confirms that hmm cells express a truncated myosin fragment of 140 kD (HMM-140 protein) instead of the normal 243-kD myosin heavy chain (MHC). Spontaneous revertants appear at a frequency less than 4 x 10(-5), which synthesize normal myosin and are capable of forming thick filaments. In hmm cells, the HMM-140 protein is diffusely distributed in the cytoplasm, indicating that it cannot assemble into thick filaments. The actin distribution in these mutant cells appears similar to that of wild-type cells. However, there is a significant abnormality in the organization of cytoplasmic microtubules, which penetrate into lamellipodial regions. The microtubule networks consist of approximately 13 microtubules on average and their pattern is abnormal. Although hmm cells can form mitotic spindles, mitosis is not coordinated with normal furrow formation. The hmm cells are clearly defective in the contractile events that lead to normal cytokinesis. The retraction of different regions of the cell can result in the occasional pinching off of part of the cell. This process is not coupled with formation of mitotic spindles. There is no specific accumulation of HMM-140 in such constrictions, whereas 73% of such cells show actin concentrated in these regions. The mutant hmm cells are also deficient in capping of Con-A-bound surface receptors, but instead internalize this complex into the cytoplasm. The hmm cells display active phagocytosis of bacteria. Whereas actin is concentrated in the phagocytic cups, HMM-140 protein is not localized in these regions. cAMP, a chemoattractant that induces drastic rounding up and formation of surface blebs in wild type cells, does not induce rounding up in the hmm cells. A Triton-permeabilized cell model of the wild-type amebae contracts on reactivation with Mg-ATP, whereas a model of the hmm cell shows no detectable contraction. Our data demonstrate that the conventional myosin participates in the significant cortical motile activities of Dictyostelium cells, which include rounding up, constriction of cleavage furrows, capping surface receptors, and establishing cell polarity.

摘要

为研究传统肌球蛋白在非肌肉细胞中的作用,我们测定了盘基网柄菌肌球蛋白缺陷型突变体的细胞骨架组织和生理反应。盘基网柄菌hmm细胞通过肌球蛋白重链基因的插入诱变产生(德洛赞纳,A.,和J. A. 斯普迪奇。1987年。《科学》(华盛顿特区)。236: 1086 - 1091)。使用不同单克隆抗体的蛋白质印迹分析证实,hmm细胞表达一种140 kD的截短肌球蛋白片段(HMM - 140蛋白),而不是正常的243 kD肌球蛋白重链(MHC)。自发回复突变体出现的频率低于4×10⁻⁵,它们合成正常肌球蛋白并能够形成粗丝。在hmm细胞中,HMM - 140蛋白分散分布于细胞质中,表明它不能组装成粗丝。这些突变细胞中的肌动蛋白分布与野生型细胞相似。然而,细胞质微管的组织存在显著异常,微管会深入到片状伪足区域。微管网络平均由约13根微管组成,且其模式异常。虽然hmm细胞能够形成有丝分裂纺锤体,但有丝分裂与正常的沟形成不协调。hmm细胞在导致正常胞质分裂的收缩事件中明显存在缺陷。细胞不同区域的收缩偶尔会导致细胞的一部分被掐断。这个过程与有丝分裂纺锤体的形成无关。在这种缢缩处没有HMM - 140的特异性积累,而73%的此类细胞显示肌动蛋白集中在这些区域。突变的hmm细胞在结合伴刀豆球蛋白A的表面受体的封端方面也存在缺陷,而是将这种复合物内化到细胞质中。hmm细胞表现出对细菌的活跃吞噬作用。肌动蛋白集中在吞噬小体中,而HMM - 140蛋白并不定位于这些区域。环磷酸腺苷(cAMP)是一种趋化因子,能诱导野生型细胞剧烈变圆并形成表面泡状突起,但在hmm细胞中不会诱导变圆。野生型变形虫经Triton通透处理后的细胞模型在与Mg - ATP重新激活时会收缩,而hmm细胞模型则未检测到收缩。我们的数据表明,传统肌球蛋白参与了盘基网柄菌细胞重要的皮质运动活动,包括变圆、分裂沟的缢缩、表面受体的封端以及建立细胞极性。

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