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纺锤体形成基因sad1+的产物与裂殖酵母纺锤体极体相关联,并且对于细胞存活至关重要。

The product of the spindle formation gene sad1+ associates with the fission yeast spindle pole body and is essential for viability.

作者信息

Hagan I, Yanagida M

机构信息

Department of Biophysics, Faculty of Science, Kyoto University, Japan.

出版信息

J Cell Biol. 1995 May;129(4):1033-47. doi: 10.1083/jcb.129.4.1033.

Abstract

Spindle formation in fission yeast occurs by the interdigitation of two microtubule arrays extending from duplicated spindle pole bodies which span the nuclear membrane. By screening a bank of temperature-sensitive mutants by anti-tubulin immunofluorescence microscopy, we previously identified the sad1.1 mutation (Hagan, I., and M. Yanagida. 1990. Nature (Lond.). 347:563-566). Here we describe the isolation and characterization of the sad1+ gene. We show that the sad1.1 mutation affected both spindle formation and function. The sad1+ gene is a novel essential gene that encodes a protein with a predicted molecular mass of 58 kD. Deletion of the gene was lethal resulting in identical phenotypes to the sad1.1 mutation. Sequence analysis predicted a potential membrane-spanning domain and an acidic amino terminus. Sad1 protein migrated as two bands of 82 and 84 kD on SDS-PAGE, considerably slower than its predicted mobility, and was exclusively associated with the spindle pole body (SPB) throughout the mitotic and meiotic cycles. Microtubule integrity was not required for Sad1 association with the SPB. Upon the differentiation of the SPB in metaphase of meiosis II, Sad1-staining patterns similarly changed from a dot to a crescent supporting an integral role in SPB function. Moderate overexpression of Sad1 led to association with the nuclear periphery. As Sad1 was not detected in the cytoplasmic microtubule-organizing centers activated at the end of anaphase or kinetochores, we suggest that Sad1 is not a general component of microtubule-interacting structures per se, but is an essential mitotic component that associates with the SPB but is not required for microtubule nucleation. Sad1 may play a role in SPB structure, such as maintaining a functional interface with the nuclear membrane or in providing an anchor for the attachment of microtubule motor proteins.

摘要

裂殖酵母中的纺锤体形成是通过从跨越核膜的复制纺锤体极体延伸出的两个微管阵列相互交错实现的。通过用抗微管蛋白免疫荧光显微镜筛选一组温度敏感突变体,我们之前鉴定出了sad1.1突变(哈根,I.,和柳田M. 1990. 《自然》(伦敦)。347:563 - 566)。在此我们描述sad1⁺基因的分离和特性。我们表明sad1.1突变影响纺锤体的形成和功能。sad1⁺基因是一个新的必需基因,编码一种预测分子量为58 kD的蛋白质。该基因的缺失是致死性的,导致与sad1.1突变相同的表型。序列分析预测有一个潜在的跨膜结构域和一个酸性氨基末端。Sad1蛋白在SDS - PAGE上迁移为82和84 kD的两条带,比其预测的迁移速度慢得多,并且在整个有丝分裂和减数分裂周期中仅与纺锤体极体(SPB)相关。Sad1与SPB的结合不需要微管的完整性。在减数分裂II中期SPB分化时,Sad1染色模式同样从点状变为月牙状,支持其在SPB功能中的重要作用。Sad1的适度过表达导致其与核周边相关。由于在后期结束时激活的细胞质微管组织中心或动粒中未检测到Sad1,我们认为Sad1本身不是微管相互作用结构的一般组成部分,而是一个与SPB相关的必需有丝分裂组分,但不是微管成核所必需的。Sad1可能在SPB结构中发挥作用,例如维持与核膜的功能界面或为微管运动蛋白的附着提供锚定。

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