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Means of self-preservation: how an intrinsically disordered ubiquitin-protein ligase averts self-destruction

机译:自我保护的手段:内在失调的泛素蛋白连接酶如何避免自我破坏

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摘要

Ubiquitin-protein ligases (E3s) that ubiquitinate substrates for proteasomal degradation are often in the position of ubiquitinating themselves due to interactions with a charged ubiquitin-conjugating enzyme (E2). This can mediate the E3's proteasomal degradation. Many E3s have evolved means to avoid autoubiquitination, including protection by partner or substrate binding, preventative modifications, and deubiquitinating enzyme reversal of ubiquitination. Here we describe another adaptation for E3 self-protection discovered while exploring San1, which ubiquitinates misfolded nuclear proteins in yeast for proteasomal degradation. San1 is highly disordered in its substrate-binding regions N- and C-terminal to its RING domain. In cis autoubiquitination could occur if these flexible regions come in proximity to the E2. San1 prevents this by containing no lysines in its disordered regions; thus the canonical residue used for ubiquitin attachment has been selectively eliminated. San1's target substrates have lost their native structures and expose hydrophobicity. To avoid in trans autoubiquitination, San1 possesses little concentrated hydrophobicity in its disordered regions, and thus the that feature San1 recognizes in misfolded substrates has also been selectively eliminated. Overall the presence of key residues in San1 have been evolutionarily minimized to avoid self-destruction either in cis or in trans. Our work expands the ways in which E3s protect themselves from autoubiquitination.
机译:泛素化蛋白底物用于蛋白酶体降解的泛素蛋白连接酶(E3s)通常由于与带电荷的泛素结合酶(E2)相互作用而自身泛素化。这可以介导E3的蛋白酶体降解。许多E3已经进化出避免自身泛素化的方法,包括通过伴侣或底物结合的保护,预防性修饰以及泛素化的去泛素化酶逆转。在这里,我们描述了在探索San1时发现的对E3自我保护的另一种适应,它可以泛素化酵母中错误折叠的核蛋白以进行蛋白酶体降解。 San1在其RING结构域的N和C端的底物结合区高度无序。如果这些柔性区域靠近E2,则顺式可能发生自体泛素化。 San1通过在其混乱区域不包含赖氨酸来防止这种情况。因此,已经选择性地消除了用于泛素连接的规范残基。 San1的目标底物失去了天然结构并暴露出疏水性。为了避免反式自身泛素化,San1在其无序区域几乎没有集中的疏水性,因此San1在错折叠的底物中识别的特征也已被有选择地消除。总的来说,San1中关键残基的存在已在进化上降至最低,从而避免了顺式或反式自毁。我们的工作扩展了E3保护自身免受自身泛素化作用的方法。

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