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Structural basis of substrate recognition and specificity in the N-end rule pathway

机译:N端规则途径中底物识别和特异性的结构基础

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摘要

The N-end rule links the half-life of a protein to the identity of its N-terminal residue. Destabilizing N-terminal residues are recognized by E3 ubiquitin ligases, termed N-recognins. A conserved structural domain called the UBR box is responsible for their specificity. Here we report the crystal structures of the UBR boxes of the human N-recognins UBR1 and UBR2, alone and in complex with an N-end rule peptide, Arg-Ile-Phe-Ser. These structures show that the UBR box adopts a previously undescribed fold stabilized through the binding of three zinc ions to form a binding pocket for type 1 N-degrons. NMR experiments reveal a preference for N-terminal arginine. Peptide binding is abrogated by N-terminal acetylation of the peptide or loss of the positive charge of the N-terminal residue. These results rationalize and refine the empirical rules for the classification of type 1 N-degrons. We also confirm that a missense mutation in UBR1 that is responsible for Johanson-Blizzard syndrome leads to UBR box unfolding and loss of function.
机译:N末端规则将蛋白质的半衰期与其N末端残基的身份联系起来。不稳定的N末端残基被称为N-recognins的E3泛素连接酶识别。称为UBR盒的保守结构域负责它们的特异性。在这里,我们报告了人类N-recognins UBR1和UBR2的UBR盒的晶体结构,单独和与N-端规则肽Arg-Ile-Phe-Ser结合使用。这些结构表明,UBR盒采用了以前未描述的折叠方式,该折叠方式通过三个锌离子的结合而稳定下来,从而形成了用于1型N-degrons的结合袋。 NMR实验揭示了对N末端精氨酸的偏爱。肽的N末端乙酰化或N末端残基正电荷的丧失消除了肽的结合。这些结果合理化和完善了用于1型N型德龙的分类的经验规则。我们还证实,负责Johanson-Blizzard综合征的UBR1的错义突变会导致UBR盒打开和功能丧失。

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