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The ribosome-associated complex RAC serves in a relay that directs nascent chains to Ssb

机译:核糖体相关的复合RAC在继电器中用于将新生链指向SSB的继电器中

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The conserved ribosome-associated complex (RAC) consisting of Zuo1 (Hsp40) and Ssz1 (non-canonical Hsp70) acts together with the ribosome-bound Hsp70 chaperone Ssb in de novo protein folding at the ribosomal tunnel exit. Current models suggest that the function of Ssz1 is confined to the support of Zuo1, however, it is not known whether RAC by itself serves as a chaperone for nascent chains. Here we show that, via its rudimentary substrate binding domain (SBD), Ssz1 directly binds to emerging nascent chains prior to Ssb. Structural and biochemical analyses identify a conserved LP-motif at the Zuo1 N-terminus forming a polyproline-II helix, which binds to the Ssz1-SBD as a pseudo-substrate. The LP-motif competes with nascent chain binding to the Ssz1-SBD and modulates nascent chain transfer. The combined data indicate that Ssz1 is an active chaperone optimized for transient, low-affinity substrate binding, which ensures the flux of nascent chains through RAC/Ssb.
机译:由ZuO1(HSP40)和SSZ1(非规范性HSP70)组成的保守核糖体相关复合物(RAC)与核糖体隧道出口的DE Novo蛋白折叠的核糖体结合的HSP70伴侣SSB一起作用在一起。当前模型表明,SSZ1的功能仅限于Zuo1的支持,但是,尚不清楚RA​​C本身是否用作新生链条的伴侣。在这里,我们表明,通过其基本基底结合结构域(SBD),SSZ1在SSB之前直接结合到出现的新兴链条。结构和生化分析鉴定了形成聚丙烯-II螺旋的Zuo1 N-末端的保守的LP基序,其与SSZ1-SBD为伪衬底结合。 LP-MOTIF与新生链接竞争到SSZ1-SBD并调节新生链转移。组合数据表明SSZ1是针对瞬态低亲和力衬底结合优化的活性伴侣,其确保了通过RAC / SSB的新生链的通量。

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