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一种新型 STRIPAK 复合物成分介导丝状真菌的菌丝融合和子实体发育。

A novel STRIPAK complex component mediates hyphal fusion and fruiting-body development in filamentous fungi.

机构信息

Institute of Microbiology and Genetics, Department of Genetics of Eukaryotic Microorganisms, Georg-August University, Göttingen, Germany.

Institute of Microbiology and Genetics, Department of Molecular Microbiology & Genetics, Georg-August University, Göttingen, Germany.

出版信息

Mol Microbiol. 2018 Nov;110(4):513-532. doi: 10.1111/mmi.14106. Epub 2018 Oct 21.

Abstract

The STRIPAK complex is involved in growth, cell fusion, development and signaling pathways, and thus malfunctions in the human STRIPAK complex often result in severe neuronal diseases and cancer. Despite the high degree of general conservation throughout the complex, several STRIPAK complex-associated small coiled-coil proteins of animals and yeasts are not conserved across species. As there are no data for filamentous ascomycetes, we addressed this through affinity purification with HA-tagged striatin ortholog PRO11 in Sordaria macrospora. Combining the method with liquid chromatography-mass spectrometry, we were able to co-purify STRIPAK complex interactor 1 (SCI1), the first STRIPAK-associated small coiled-coil protein in filamentous ascomycetes. Using yeast two-hybrid experiments, we identified SCI1 protein regions required for SCI1-PRO11 interaction, dimerization of SCI1 and interaction with other STRIPAK components. Further, both proteins PRO11 and SCI1 co-localize with the nuclear basket protein SmPOM152 at the nuclear envelope. Expression of the gene sci1 occurs during early developmental stages of S. macrospora, and the protein SCI1 in combination with PRO11 is required for cell fusion, vegetative growth and sexual development. The results of the present study will help to understand the underlying molecular mechanisms of STRIPAK signaling and function in cellular development and diseases in higher eukaryotes.

摘要

STRIPAK 复合物参与生长、细胞融合、发育和信号通路,因此人类 STRIPAK 复合物的功能障碍通常会导致严重的神经元疾病和癌症。尽管整个复合物具有高度的普遍保守性,但动物和酵母中的几种 STRIPAK 复合物相关的小卷曲螺旋蛋白在物种间并不保守。由于丝状子囊菌没有数据,我们通过在 Sordaria macrospora 中用 HA 标记的 striatin 同源物 PRO11 进行亲和纯化来解决这个问题。将该方法与液相色谱-质谱联用,我们能够共纯化 STRIPAK 复合物相互作用蛋白 1(SCI1),这是丝状子囊菌中第一个与 STRIPAK 相关的小卷曲螺旋蛋白。通过酵母双杂交实验,我们鉴定了 SCI1 蛋白与 PRO11 相互作用、SCI1 二聚化以及与其他 STRIPAK 成分相互作用所必需的区域。此外,PRO11 和 SCI1 这两种蛋白都与核篮蛋白 SmPOM152 共定位于核膜。基因 sci1 的表达发生在 S. macrospora 的早期发育阶段,并且蛋白 SCI1 与 PRO11 的组合对于细胞融合、营养生长和有性发育是必需的。本研究的结果将有助于理解 STRIPAK 信号在高等真核生物细胞发育和疾病中的潜在分子机制。

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