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Calpains promote α2β1 integrin turnover in nonrecycling integrin pathway

机译:钙蛋白酶促进非循环整合素途径中的α2β1整合素更新

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Collagen receptor integrins recycle between the plasma membrane and endosomes and facilitate formation and turnover of focal adhesions. In contrast, clustering of α2β1 integrin with antibodies or the human pathogen echovirus 1 (EV1) causes redistribution of α2 integrin to perinuclear multivesicular bodies, α2-MVBs. We show here that the internalized clustered α2 integrin remains in α2-MVBs and is not recycled back to the plasma membrane. Instead, receptor clustering and internalization lead to an accelerated down-regulation of α2β1 integrin compared to the slow turnover of unclustered α2 integrin. EV1 infection or integrin degradation is not associated with proteasomal or autophagosomal processes and shows no significant association with lysosomal pathway. In contrast, degradation is dependent on calpains, such that it is blocked by calpain inhibitors. We show that active calpain is present in α2-MVBs, internalized clustered α2β1 integrin coprecipitates with calpain-1, and calpain enzymes can degrade α2β1 integrin. In conclusion, we identified a novel virus- and clustering-specific pathway that diverts α2β1 integrin from its normal endo/exocytic traffic to a nonrecycling, calpain-dependent degradative endosomal route.
机译:胶原受体整联蛋白在质膜和内体之间循环,并促进粘着斑的形成和周转。相反,α2β1整联蛋白与抗体或人类病原体回声病毒1(EV1)聚集导致α2整联蛋白重新分布于核周多囊泡体α2-MVB。我们在这里表明,内在的聚集的α2整联蛋白保留在α2-MVBs中,并且没有再循环回到质膜。相反,与未聚簇的α2整联蛋白的缓慢转换相比,受体的聚集和内在化导致α2β1整联蛋白的加速下调。 EV1感染或整联蛋白降解与蛋白酶体或自噬体过程无关,并且与溶酶体途径无关。相反,降解取决于钙蛋白酶,因此其被钙蛋白酶抑制剂阻断。我们表明,活性钙蛋白酶存在于α2-MVBs中,内化成簇的α2β1整合素与calpain-1共沉淀,钙蛋白酶可以降解α2β1整合素。总之,我们确定了一种新型的病毒和簇特异性途径,可将α2β1整联蛋白从其正常的内/外向运输转移到非循环的,依赖钙蛋白酶的降解性内体途径。

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