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缺乏肌球蛋白重链的盘基网柄菌变形虫中的细胞运动性和趋化性

Cell motility and chemotaxis in Dictyostelium amebae lacking myosin heavy chain.

作者信息

Wessels D, Soll D R, Knecht D, Loomis W F, De Lozanne A, Spudich J

机构信息

Department of Biology, University of Iowa, Iowa City 52242.

出版信息

Dev Biol. 1988 Jul;128(1):164-77. doi: 10.1016/0012-1606(88)90279-5.

Abstract

Dictyostelium amebae have been engineered by homologous recombination of a truncated copy of the myosin heavy chain gene (heavy meromyosin (HMM) cells) and by transformation with a vector encoding an antisense RNA to myosin heavy chain mRNA (mhcA cells) so that they lack native myosin heavy chain protein. In the former case, cells synthesize only the heavy meromyosin portion of the protein and in the latter case they synthesize negligible amounts of the protein. Surprisingly, it was demonstrated that both cell lines are viable and motile. In order to compare the motility of these cells with normal cells, the newly developed computer-assisted Dynamic Morphology System (DMS) was employed. The results demonstrate that the average HMM or mhcA ameba moves at a rate of translocation less than half that of normal cells. It is rounder and less polar than a normal cell, and exhibits a rate of cytoplasmic expansion and contraction roughly half that of normal cells. In a spatial gradient of cAMP, the average ameba of HMM or mhcA exhibits a chemotactic index of +0.10 or less, compared to the chemotactic index of +0.50 exhibited by normal cells. Finally, the initial area, rate of expansion, and final area of pseudopods are roughly half that of normal cells. The five fastest HMM amebae (out of 35 analyzed in detail) moved at an average rate of translocation equal to that of normal amebae, and exhibited an average chemotactic index of +0.34. In addition, the average rate of cytoplasmic flow in fast HMM cells was equal to that of the average normal ameba. However, fast HMM amebae still exhibited the same defects in pseudopod formation that were exhibited by the entire HMM cell population. These results suggest that myosin heavy chain is involved in the "fine tuning" and efficiency of pseudopod formation, but is not essential for the basic behavior of pseudopod expansion.

摘要

通过肌球蛋白重链基因截短拷贝的同源重组(重酶解肌球蛋白(HMM)细胞)以及用编码针对肌球蛋白重链mRNA的反义RNA的载体进行转化(mhcA细胞),对盘基网柄菌变形虫进行了改造,使其缺乏天然的肌球蛋白重链蛋白。在前一种情况下,细胞仅合成该蛋白的重酶解肌球蛋白部分,而在后一种情况下,它们合成的该蛋白量可忽略不计。令人惊讶的是,已证明这两种细胞系都是有活力且能运动的。为了将这些细胞的运动性与正常细胞进行比较,采用了新开发的计算机辅助动态形态系统(DMS)。结果表明,平均HMM或mhcA变形虫的移位速率不到正常细胞的一半。它比正常细胞更圆且极性更小,并且细胞质扩张和收缩的速率大约是正常细胞的一半。在cAMP的空间梯度中,HMM或mhcA的平均变形虫表现出的趋化指数为+0.10或更低,而正常细胞表现出的趋化指数为+0.50。最后,伪足的初始面积、扩张速率和最终面积大约是正常细胞的一半。五个最快的HMM变形虫(在详细分析的35个中)的平均移位速率与正常变形虫相等,并且表现出的平均趋化指数为+0.34。此外,快速HMM细胞中的平均细胞质流动速率与正常变形虫的平均速率相等。然而,快速HMM变形虫在伪足形成方面仍表现出与整个HMM细胞群体相同的缺陷。这些结果表明,肌球蛋白重链参与伪足形成的“微调”和效率,但对于伪足扩张的基本行为不是必需的。

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