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首页> 外文期刊>Molecular biology of the cell >Cortical recruitment and nuclear-cytoplasmic shuttling of Scd5p, a protein phosphatase-1-targeting protein involved in actin organization and endocytosis
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Cortical recruitment and nuclear-cytoplasmic shuttling of Scd5p, a protein phosphatase-1-targeting protein involved in actin organization and endocytosis

机译:Scd5p的皮质募集和核质穿梭,Scd5p是一种参与肌动蛋白组织和内吞作用的蛋白磷酸酶-1靶向蛋白

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摘要

Scd5p regulates endocytosis and cortical actin organization as a targeting subunit for the Ser/Thr protein phosphatase-1 (PP1) in yeast. To identify localization signals in Scd5p required for cell surface recruitment, visualization of GFP-tagged Scd5 truncations and deletions was performed. Scd5p contains a PP1 binding site, a 3-repeat region of 20 amino acids (311), and a 9-repeat region of 12 amino acids (9R). We found that the 911 is critical for cortical localization of Scd5p, but cortical recruitment is not essential for Scd5p's function in actin organization and endocytosis. We propose that Scd5p can target PP1 to endocytic factors in the cytoplasm that have been disassembled and/or inactivated by phosphorylation. We also found that Scd5p undergoes nuclear-cytoplasmic shuttling in a Crm1p-dependent manner. Scd5p-Delta CT lacking the 9R region and its nuclear export signal (NES) accumulates in the nucleus, causing cortical actin and endocytic defects. Cytoplasmic localization and function of Scd5p-Delta CT is restored by NES addition. However, removal of Scd5p's nuclear localization signal prevents nuclear entry, but endocytosis and actin organization remain relatively normal. These results indicate that nuclear-cytoplasmic shuttling is not required for regulation of Scd5p's cortical function and suggest that Scd5p has an independent nuclear function.
机译:Scd5p调节内吞作用和皮质肌动蛋白组织,将其作为酵母中Ser / Thr蛋白磷酸酶1(PP1)的靶向亚基。为了鉴定细胞表面募集所需的Scd5p中的定位信号,进行了GFP标记的Scd5截短和缺失的可视化。 Scd5p包含一个PP1结合位点,一个20个氨基酸的3重复区域(311)和一个12个氨基酸的9个重复区域(9R)。我们发现911对Scd5p的皮质定位至关重要,但是皮质募集对于Scd5p在肌动蛋白组织和内吞作用中的功能并不是必需的。我们建议Scd5p可以将PP1靶向细胞质中已被磷酸化分解和/或失活的内吞因子。我们还发现Scd5p以Crm1p依赖的方式经历核质穿梭。 Scd5p-Delta CT缺少9R区,其核输出信号(NES)积聚在核内,导致皮质肌动蛋白和内吞缺陷。 NES添加可恢复Scd5p-Delta CT的细胞质定位和功能。但是,去除Scd5p的核定位信号可以防止核进入,但是胞吞作用和肌动蛋白组织仍然相对正常。这些结果表明,不需要调节Scd5p皮质功能的核质穿梭,并建议Scd5p具有独立的核功能。

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