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RHAMM is a centrosomal protein that interacts with dynein and maintains spindle pole stability

机译:RHAMM是一种与动力蛋白相互作用并维持纺锤极稳定性的中心体蛋白

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The receptor for hyaluronan-mediated motility (RHAMM), an acidic coiled coil protein, has previously been characterized as a cell surface receptor for hyaluronan, and a microtubule-associated intracellular hyaluronan binding protein. In this study, we demonstrate that a subset of cellular RHAMM localizes to the centrosome and functions in the maintenance of spindle integrity. We confirm a previous study showing that the amino terminus of RHAMM interacts with microtubules and further demonstrate, that a separate carboxy-terminal domain is required for centrosomal targeting. This motif overlaps the defined hyaluronan binding domain and bears 72% identity to the dynein interaction domain of Xk1p2. RHAMM antibodies coimmunprecipitate dynein IC from Xenopus and HeLa extracts. Deregulation of RHAMM expression inhibits mitotic progression and affects spindle architecture. Structure, localization, and function, along with phylogenetic analysis, suggests that RHAMM may be a new member of the TACC family. Thus, we demonstrate a novel centrosomal localization and mitotic spindle-stabilizing function for RHAMM. Moreover, we provide a potential mechanism for this function in that RHAMM may cross-link centrosomal microtubules, through a direct interaction with microtubules and an association with dynein. [References: 57]
机译:透明质酸介导的运动的受体(RHAMM),一种酸性卷曲螺旋蛋白,先前已被表征为透明质酸的细胞表面受体,以及微管相关的细胞内透明质酸结合蛋白。在这项研究中,我们证明了细胞RHAMM的一个子集定位于中心体并在维持纺锤体完整性中起作用。我们证实了先前的研究,表明RHAMM的氨基末端与微管相互作用,并进一步证明,对于中心体靶向,需要一个单独的羧基末端结构域。该基序与定义的透明质酸结合域重叠,并且与Xk1p2的动力蛋白相互作用域具有72%的同一性。 RHAMM抗体可从非洲爪蟾和HeLa提取物中共免疫沉淀动力蛋白IC。 RHAMM表达的失调抑制有丝分裂进程并影响纺锤体结构。结构,定位和功能以及系统发育分析表明,RHAMM可能是TACC家族的新成员。因此,我们证明了RHAMM的新型中心体定位和有丝分裂纺锤体稳定功能。此外,我们为该功能提供了一种潜在的机制,即RHAMM可能通过与微管直接相互作用并与达因结合而交联中心微管。 [参考:57]

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