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Structural insights into E1-catalyzed ubiquitin activation and transfer to conjugating enzymes

机译:对E1催化的遍在蛋白活化和转移至结合酶的结构见解

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摘要

Ubiquitin (Ub) and ubiquitin-like proteins (Ubls) are conjugated to their targets by specific cascades involving three classes of enzymes, E1, E2, and E3. Each E1 adenylates the C terminus of its cognate Ubl, forms a E1 similar to Ubl thioester intermediate, and ultimately generates a thioester-linked E2 similar to Ubl product. We have determined the crystal structure of yeast Uba1, revealing a modular architecture with individual domains primarily mediating these specific activities. The negatively charged C-terminal ubiquitin-fold domain (UFD) is primed for binding of E2s and recognizes their positively charged first a helix via electrostatic interactions. In addition, a mobile loop from the domain harboring the E1 catalytic cysteine contributes to E2 binding. Significant, experimentally observed motions in the UFD around a hinge in the linker connecting this domain to the rest of the enzyme suggest a conformation-dependent mechanism for the transthioesterification function of Uba1; however, this mechanism clearly differs from that of other E1 enzymes.
机译:泛素(Ub)和类泛素蛋白(Ubls)通过涉及三类酶E1,E2和E3的特定级联反应与它们的靶标结合。每个E1将其同源Ubl的C末端腺苷酸化,形成类似于Ubl硫酯中间体的E1,并最终产生类似于Ubl产物的硫酯连接的E2。我们已经确定了酵母Uba1的晶体结构,揭示了具有独立域的模块结构,这些域主要介导这些特定的活动。带负电的C末端泛素折叠结构域(UFD)被涂上底漆以结合E2,并首先通过静电相互作用识别带正电的螺旋。另外,来自具有E1催化半胱氨酸的域的可移动环有助于E2结合。实验中观察到的UFD在连接该结构域与酶的其余部分的连接子周围的铰链周围的运动很明显,表明Uba1的硫代酯化功能依赖于构象。但是,这种机制显然不同于其他E1酶。

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