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首页> 外文期刊>Eukaryotic cell >A Pericentrin-Related Protein Homolog in Aspergillus nidulans Plays Important Roles in Nucleus Positioning and Cell Polarity by Affecting Microtubule Organization
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A Pericentrin-Related Protein Homolog in Aspergillus nidulans Plays Important Roles in Nucleus Positioning and Cell Polarity by Affecting Microtubule Organization

机译:构巢曲霉中与perententrin相关的蛋白质同源物通过影响微管组织在核定位和细胞极性中起重要作用

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Pericentrin is a large coiled-coil protein in mammalian centrosomes that serves as a multifunctional scaffold for anchoring numerous proteins. Recent studies have linked numerous human disorders with mutated or elevated levels of pericentrin, suggesting unrecognized contributions of pericentrin-related proteins to the development of these disorders. In this study, we characterized AnPcpA, a putative homolog of pericentrin-related protein in the model filamentous fungus Aspergillus nidulans, and found that it is essential for conidial germination and hyphal development. Compared to the hyphal apex localization pattern of calmodulin (CaM), which has been identified as an interactive partner of the pericentrin homolog, GFP-AnPcpA fluorescence dots are associated mainly with nuclei, while the accumulation of CaM at the hyphal apex depends on the function of AnPcpA. In addition, the depletion of AnPcpA by an inducible alcA promoter repression results in severe growth defects and abnormal nuclear segregation. Most interestingly, in mature hyphal cells, knockdown of pericentrin was able to significantly induce changes in cell shape and cytoskeletal remodeling; it resulted in some enlarged compartments with condensed nuclei and anucleate small compartments as well. Moreover, defects in AnPcpA significantly disrupted the microtubule organization and nucleation, suggesting that AnPcpA may affect nucleus positioning by influencing microtubule organization.
机译:Pericentrin是哺乳动物中心体中的大卷曲螺旋蛋白,可作为锚固多种蛋白的多功能支架。最近的研究已将许多人类疾病与pericentrin的突变或水平升高联系起来,表明pericentrin相关蛋白对这些疾病的发展尚无公认的贡献。在这项研究中,我们表征了AnPcpA,这是模型丝状真菌构巢曲霉中与蛋白结合蛋白的推定同源物,并发现它对分生孢子萌发和菌丝发育至关重要。与被确定为pericentrin同系物的相互作用伴侣的钙调蛋白(CaM)的菌丝先端定位模式相比,GFP-AnPcpA荧光点主要与细胞核相关,而CaM在菌丝先端的积累取决于功能的AnPcpA。此外,可诱导的 alcA 启动子阻遏作用耗尽AnPcpA会导致严重的生长缺陷和异常的核偏析。最有趣的是,在成熟的菌丝细胞中,pericentrin的敲低能够显着诱导细胞形状和细胞骨架重塑的改变。它导致一些扩大的隔室,其中有浓缩的核和无核小隔室。此外,AnPcpA中的缺陷显着破坏了微管的组织和成核,这表明AnPcpA可能通过影响微管的组织来影响细胞核的定位。

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