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Xenopus TACC3/Maskin Is Not Required for Microtubule Stability but Is Required for Anchoring Microtubules at the Centrosome

机译:Xenopus TACC3 / Maskin对于微管稳定性不是必需的,但在中心体上固定微管则是必需的

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Members of the transforming acidic coiled coil (TACC) protein family are emerging as important mitotic spindle assembly proteins in a variety of organisms. The molecular details of how TACC proteins function are unknown, but TACC proteins have been proposed to recruit microtubule-stabilizing proteins of the tumor overexpressed gene (TOG) family to the centrosome and to facilitate their loading onto newly emerging microtubules. Using Xenopus egg extracts and in vitro assays, we show that the Xenopus TACC protein maskin is required for centrosome function beyond recruiting the Xenopus TOG protein XMAP215. The conserved C-terminal TACC domain of maskin is both necessary and sufficient to restore centrosome function in maskin-depleted extracts, and we provide evidence that the N terminus of maskin inhibits the function of the TACC domain. Time-lapse video microscopy reveals that microtubule dynamics in Xenopus egg extracts are unaffected by maskin depletion. Our results provide direct experimental evidence of a role for maskin in centrosome function and suggest that maskin is required for microtubule anchoring at the centrosome.
机译:转化酸性卷曲螺旋(TACC)蛋白家族的成员正在作为多种生物中重要的有丝分裂纺锤体组装蛋白而出现。 TACC蛋白质如何发挥功能的分子细节尚不清楚,但有人提出TACC蛋白质可将肿瘤过度表达基因(TOG)家族的微管稳定蛋白募集到中心体,并促进它们装载到新出现的微管上。使用爪蟾卵提取物和体外测定法,我们显示爪蟾TACC蛋白maskin是除募集爪蟾TOG蛋白XMAP215之外中心体功能所必需的。掩蔽蛋白的保守的C末端TACC结构域对于恢复缺掩蛋白的提取物中的中心体功能是必要且充分的,并且我们提供了掩蔽蛋白的N末端抑制TACC结构域功能的证据。延时视频显微镜显示非洲爪蟾卵提取物中的微管动力学不受屏蔽素消耗的影响。我们的结果提供了掩模素在中心体功能中作用的直接实验证据,并表明掩模素是微管锚定在中心体上所必需的。

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