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Recruitment of the inhibitor Cand1 to the cullin substrate adaptor site mediates interaction to the neddylation site

机译:向cullin底物衔接子位点抑制剂Cand1的募集介导与neddylation位点的相互作用

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摘要

Cand1 inhibits cullin RING ubiquitin ligases by binding unneddylated cullins. The Cand1 N-terminus blocks the cullin neddylation site, whereas the C-terminus inhibits cullin adaptor interaction. These Cand1 binding sites can be separated into two functional polypeptides which bind sequentially. C-terminal Cand1 can directly bind to unneddylated cullins in the nucleus without blocking the neddylation site. The smaller N-terminal Cand1 cannot bind to the cullin neddylation region without C-terminal Cand1. The separation of a single cand1 into two independent genes represents the in vivo situation of the fungus Aspergillus nidulans, where C-terminal Cand1 recruits smaller N-terminal Cand1 in the cytoplasm. Either deletion results in an identical developmental and secondary metabolism phenotype in fungi, which resembles csn mutants deficient in the COP9 signalosome (CSN) deneddylase. We propose a two-step Cand1 binding to unneddylated cullins which initiates at the adaptor binding site and subsequently blocks the neddylation site after CSN has left.
机译:Cand1通过结合未修饰的cullins抑制cullin RING泛素连接酶。 Cand1 N末端可阻断cullin的腺苷化位点,而C末端则抑制cullin衔接子的相互作用。这些Cand1结合位点可分为两个顺序结合的功能多肽。 C末端Cand1可以直接结合细胞核中未烯化的cullins,而不会阻断烯化的位点。没有C端Cand1的情况下,较小的N端Cand1无法结合到cullin磺酰化区域。将单个cand1分为两个独立的基因代表了构巢曲霉真菌的体内情况,其中C末端Cand1在细胞质中募集了较小的N末端Cand1。两种缺失都导致真菌中相同的发育和次级代谢表型,类似于在COP9信号体(CSN)树枝化酶中缺失的csn突变体。我们提出了两步Cand1与未修饰的cullins的结合,该过程起始于衔接子结合位点,并在CSN离开后阻断了该修饰位点。

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