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Polarity protein Par3 controls B-cell receptor dynamics and antigen extraction at the immune synapse

机译:极性蛋白Par3在免疫突触中控制B细胞受体动态和抗原提取

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摘要

B-cell receptor (BCR) engagement with surface-tethered antigens leads to the formation of an immune synapse, which facilitates antigen uptake for presentation to T-lymphocytes. Antigen internalization and processing rely on the early dynein-dependent transport of BCR-antigen microclusters to the synapse center, as well as on the later polarization of the microtubule-organizing center (MTOC). MTOC repositioning allows the release of proteases and the delivery of MHC class II molecules at the synapse. Whether and how these events are coordinated have not been addressed. Here we show that the ancestral polarity protein Par3 promotes BCR-antigen microcluster gathering, as well as MTOC polarization and lysosome exocytosis, at the synapse by facilitating local dynein recruitment. Par3 is also required for antigen presentation to T-lymphocytes. Par3 therefore emerges as a key molecule in the coupling of the early and late events needed for efficient extraction and processing of immobilized antigen by B-cells.
机译:B细胞受体(BCR)与表面束缚抗原的结合导致免疫突触的形成,从而促进抗原摄取以呈递给T淋巴细胞。抗原的内在化和加工取决于BCR抗原微团簇早期向动力蛋白的依赖转运至突触中心,以及微管组织中心(MTOC)的后期极化。 MTOC重新定位允许在突触处释放蛋白酶和递送MHC II类分子。这些事件是否协调以及如何协调尚未得到解决。在这里,我们显示祖先极性蛋白Par3通过促进局部动力蛋白的募集来促进BCR抗原微簇聚集,以及MTOC极化和溶酶体胞吐作用。 Par3也需要抗原呈递给T淋巴细胞。因此,Par3成为关键分子,参与了B细胞有效提取和加工固定抗原所需的早期和晚期事件的耦合。

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