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Conformational Flexibility of p150Glued(1–191) Subunit of Dynactin Assembled with Microtubules

机译:用微管组装的Dynactin的p150glued(1-191)亚基的构象灵活性

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摘要

Microtubule (MT)-associated proteins perform diverse functions in cells. These functions are dependent on their interactions with MTs. Dynactin, a cofactor of dynein motor, assists the binding of dynein to various organelles and is crucial to the long-distance processivity of dynein-based complexes. The largest subunit of dynactin, the p150Glued, contains an N-terminus segment that is responsible for the MT-binding interactions and long-range processivity of dynactin. We employed solution and magic angle spinning NMR spectroscopy to characterize the structure and dynamics of the p150Glued N-terminal region, both free and in complex with polymerized MTs. This 191-residue region encompasses the cytoskeleton-associated protein glycine-rich domain, the basic domain, and serine/proline-rich (SP-rich) domain. We demonstrate that the basic and SP-rich domains are intrinsically disordered in solution and significantly enhance the binding affinity to MTs as these regions contain the second MT-binding site on the p150Glued subunit. The majority of the basic and SP-rich domains are predicted to be random coil, whereas the segments S111–I116, A124–R132, and K144–T146 in the basic domain contain short α-helical or β-sheet structures. These three segments possibly encompass the MT-binding site. Surprisingly, the protein retains a high degree of flexibility upon binding to MTs except for the regions that are directly involved in the binding interactions with MTs. This conformational flexibility may be essential for the biological functions of the p150Glued subunit.
机译:微管(MT)相关蛋白在细胞中执行各种功能。这些功能都依赖于他们与MTS的相互作用。 Dynactin,动力蛋白马达的辅因子,辅助动力蛋白结合至各种细胞器和是基于动力蛋白复合物的长距离合成能力是至关重要的。 dynactin的最大亚基的p150Glued,包含一个N-末端区段负责MT-结合相互作用和dynactin远距离持续合成能力。我们采用了溶液和魔角旋转NMR光谱表征的结构和p150Glued N末端区域的动力学,免费和在复合体与聚合的MT。这191个残基的区域包括细胞骨架相关蛋白的富含甘氨酸的结构域,基本域,和丝氨酸/脯氨酸富含(富SP-)结构域。我们表明,基本和丰富的SP-域在本质上解决无序和显著增强MT的结合亲和力,因为这些区域包含在p150Glued亚基第二MT结合位点。多数基本和富SP结构域的被预测为无规卷曲,而区段S111-I116,A124-R132和K144-T146在基本域包含短α螺旋或β片层结构。这三个部分可能包括MT的结合位点。出人意料的是,蛋白质保留在不同的是直接参与与MT的结合相互作用的区域结合的MT高程度的灵活性。这种构象的灵活性可能对p150Glued亚基的生物学功能是必不可少的。

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