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Myosin-II tails confer unique functions in Schizosaccharomyces pombe: Characterization of a novel myosin-II tail

机译:肌球蛋白II尾巴赋予粟酒裂殖酵母独特的功能:新型肌球蛋白II尾巴的表征

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Schizosaccharomyces pombe has two myosin-IIs, Myo2p and Myp2p, which both concentrate in the cleavage furrow during cytokinesis. We studied the phenotype of mutant myosin-II strains to examine whether these myosins have overlapping functions in the cell. myo(2+) is essential. myp(2+) cannot rescue loss of myo(2+) even at elevated levels of expression. myp(2+) is required under specific nutritional conditions; thus myo(2+) cannot rescue under these conditions. Studies with chimeras show that the tails rather than the structurally similar heads determine the gene-specific functions of myp(2+) and myo(2+). The Myo2p tail is a rod-shaped coiled-coil dimer that aggregates in low salt like other myosin-II tails. The Myp2p tail is monomeric in high salt and is insoluble in low salt. Biophysical properties of the full-length Myp2p tail and smaller subdomains indicate that two predicted coiled-coil regions fold back on themselves to form a rod-shaped antiparallel coiled coil. This suggests that Myp2p is the first type II myosin with only one head. The C-terminal two-thirds of Myp2p tail are essential for function in vivo and may interact with components of the salt response pathway. [References: 31]
机译:粟酒裂殖酵母具有两个肌球蛋白II,即Myo2p和Myp2p,它们都集中在胞质分裂过程中的沟沟中。我们研究了突变肌球蛋白-II菌株的表型,以检查这些肌球蛋白是否在细胞中具有重叠的功能。 myo(2+)是必不可少的。即使在表达水平升高的情况下,myp(2+)也无法挽救myo(2+)的丢失。在特定的营养条件下需要myp(2+);因此myo(2+)无法在这些情况下营救。对嵌合体的研究表明,尾部而不是结构相似的头部决定了myp(2+)和myo(2+)的基因特异性功能。 Myo2p尾巴是棒状的盘绕螺旋二聚体,像其他肌球蛋白II尾巴一样聚集在低盐中。 Myp2p尾巴是高盐单体,不溶于低盐。全长Myp2p尾部和较小子域的生物物理特性表明,两个预测的卷曲螺旋区域会自我折叠,形成杆状反平行卷曲螺旋。这表明Myp2p是第一个只有一个头的II型肌球蛋白。 Myp2p尾部的C端三分之二对于体内功能至关重要,并且可能与盐反应途径的成分相互作用。 [参考:31]

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