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Centrosome-intrinsic mechanisms modulate centrosome integrity during fever

机译:中心体固有机制调节发烧期间的中心体完整性

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The centrosome is critical for cell division, ciliogenesis, membrane trafficking, and immunological synapse function. The immunological synapse is part of the immune response, which is often accompanied by fever/heat stress (HS). Here we provide evidence that HS causes deconstruction of all centrosome substructures primarily through degradation by centrosome-associated proteasomes. This renders the centrosome nonfunctional. Heat-activated degradation is centrosome selective, as other nonmembranous organelles (midbody, kinetochore) and membrane-bounded organelles (mitochondria) remain largely intact. Heat-induced centrosome inactivation was rescued by targeting Hsp70 to the centrosome. In contrast, Hsp70 excluded from the centrosome via targeting to membranes failed to rescue, as did chaperone inactivation. This indicates that there is a balance between degradation and chaperone rescue at the centrosome after HS. This novel mechanism of centrosome regulation during fever contributes to immunological synapse formation. Heat-induced centrosome inactivation is a physiologically relevant event, as centrosomes in leukocytes of febrile patients are disrupted.
机译:中心体对于细胞分裂,纤毛生成,膜运输和免疫突触功能至关重要。免疫突触是免疫反应的一部分,通常伴有发烧/热应激(HS)。在这里,我们提供的证据表明,HS主要通过与中心体相关的蛋白酶体降解而引起所有中心体亚结构的解构。这使中心体失去功能。热活化降解是中心体选择性的,因为其他非膜细胞器(中体,线粒体)和膜结合细胞器(线粒体)仍保持完整。通过将Hsp70靶向中心体来挽救热诱导的中心体失活。相反,通过靶向膜而从中心体中排除的Hsp70不能恢复,伴侣伴侣失活也不能恢复。这表明HS后中心体的降解与伴侣保护之间存在平衡。发烧期间这种中心体调节的新机制有助于免疫突触的形成。热诱导的中心体失活是生理相关事件,因为高热患者白细胞中的中心体被破坏。

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