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SEPA-1 Mediates the Specific Recognition and Degradation of P Granule Components by Autophagy in C. elegans

机译:SEPA-1通过自噬介导秀丽隐杆线虫介导P颗粒成分的特异性识别和降解。

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How autophagy, an evolutionarily conserved intracel_lular catabolic system for bulk degradation, selectively degrades protein aggregates is poorly understood. Here, we show that several maternally derived germ P granule components are selectively eliminated by autophagy in somatic cells during C. elegans embryo-genesis. The activity of sepa-1 is required for the degradation of these P granule components and for their accumulation into aggregates, termed PGL granules, in autophagy mutants. SEPA-1 forms protein aggregates and is also a preferential target of autophagy. SEPA-1 directly binds to the P granule component PGL-3 and also to the autophagy protein LGG-1/Atg8. SEPA-1 aggregates consistently colocalize with PGL granules and with LGG-1 puncta. Thus, SEPA-1 functions as a bridging molecule in mediating the specific recognition and degradation of P granule components by autophagy. Our study reveals a mechanism for preferential degradation of protein aggregates by autophagy and emphasizes the physiological significance of selective autophagy during animal development.
机译:自噬是一种进化上保守的细胞内分解代谢系统,用于整体降解,如何选择性地降解蛋白质聚集体却知之甚少。在这里,我们显示线虫秀丽线虫胚胎发生过程中体细胞中的自噬选择性地消除了一些母体来源的胚芽P颗粒成分。 sepa-1的活性是这些P颗粒成分的降解及其在自噬突变体中积累为聚集体(称为PGL颗粒)所必需的。 SEPA-1形成蛋白质聚集体,并且也是自噬的优先目标。 SEPA-1直接与P颗粒成分PGL-3结合,也与自噬蛋白LGG-1 / Atg8结合。 SEPA-1聚集体始终与PGL颗粒和LGG-1点共同定位。因此,SEPA-1在通过自噬介导P颗粒成分的特异性识别和降解中起桥接分子的作用。我们的研究揭示了通过自噬优先降解蛋白质聚集体的机制,并强调了动物发展过程中选择性自噬的生理意义。

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