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Synthetic lethality screen identifies a novel yeast myosin I gene (MYO5): myosin I proteins are required for polarization of the actin cytoskeleton

机译:合成杀伤力筛选可鉴定出一种新型酵母肌球蛋白I基因(MYO5):肌动蛋白I骨架极化需要肌球蛋白I蛋白

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摘要

The organization of the actin cytoskeleton plays a critical role in cell physiology in motile and nonmotile organisms. Nonetheless, the function of the actin based motor molecules, members of the myosin superfamily, is not well understood. Deletion of MYO3, a yeast gene encoding a "classic" myosin I, has no detectable phenotype. We used a synthetic lethality screen to uncover genes whose functions might overlap with those of MYO3 and identified a second yeast myosin 1 gene, MYO5. MYO5 shows 86 and 62% identity to MYO3 across the motor and non- motor regions. Both genes contain an amino terminal motor domain, a neck region containing two IQ motifs, and a tail domain consisting of a positively charged region, a proline-rich region containing sequences implicated in ATP-insensitive actin binding, and an SH3 domain. Although myo5 deletion mutants have no detectable phenotype, yeast strains deleted for both MYO3 and MYO5 have severe defects in growth and actin cytoskeletal organization. Double deletion mutants also display phenotypes associated with actin disorganization including accumulation of intracellular membranes and vesicles, cell rounding, random bud site selection, sensitivity to high osmotic strength, and low pH as well as defects in chitin and cell wall deposition, invertase secretion, and fluid phase endocytosis. Indirect immunofluorescence studies using epitope-tagged Myo5p indicate that Myo5p is localized at actin patches. These results indicate that MYO3 and MYO5 encode classical myosin I proteins with overlapping functions and suggest a role for Myo3p and Myo5p in organization of the actin cytoskeleton of Saccharomyces cerevisiae.
机译:肌动蛋白细胞骨架的组织在运动和非运动有机体的细胞生理中起着至关重要的作用。然而,基于肌动蛋白的运动分子,即肌球蛋白超家族成员的功能尚不十分清楚。编码“经典”肌球蛋白I的酵母基因MYO3的缺失没有可检测的表型。我们使用合成杀伤力筛选来发现其功能可能与MYO3重叠的基因,并鉴定出第二个酵母肌球蛋白1基因MYO5。在运动和非运动区域,MYO5与MYO3分别具有86%和62%的同一性。这两个基因均包含一个氨基末端运动结构域,一个包含两个IQ基序的颈部区域和一个由带正电的区域,一个富含脯氨酸的区域(包含与ATP不敏感的肌动蛋白结合相关的序列)组成的尾部区域和一个SH3域。尽管myo5缺失突变体没有可检测的表型,但缺失的MYO3和MYO5酵母菌株在生长和肌动蛋白细胞骨架组织方面均存在严重缺陷。双缺失突变体还表现出与肌动蛋白紊乱有关的表型,包括细胞内膜和囊泡的积累,细胞圆化,随机芽位选择,对高渗透压的敏感性和低pH值以及几丁质和细胞壁沉积,转化酶分泌和液相内吞。使用表位标记的Myo5p进行的间接免疫荧光研究表明,Myo5p位于肌动蛋白斑处。这些结果表明MYO3和MYO5编码具有重叠功能的经典肌球蛋白I蛋白,并暗示了Myo3p和Myo5p在酿酒酵母肌动蛋白细胞骨架的组织中的作用。

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