Department of Structural Biology, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.
Mol Cell. 2009 Dec 25;36(6):1095-102. doi: 10.1016/j.molcel.2009.11.010.
In E1-E2-E3 ubiquitin (Ub) conjugation cascades, the E2 first forms a transient E2 approximately Ub covalent complex and then interacts with an E3 for Ub transfer. For cascades involving E3s in the HECT class, Ub is transferred from an associated E2 to the acceptor cysteine in the HECT domain C lobe. To gain insights into this process, we determined the crystal structure of a complex between the HECT domain of NEDD4L and the E2 UbcH5B bearing a covalently linked Ub at its active site (UbcH5B approximately Ub). Noncovalent interactions between UbcH5B and the HECT N lobe and between Ub and the HECT domain C lobe lead to an overall compact structure, with the Ub C terminus sandwiched between UbcH5B and HECT domain active sites. The structure suggests a model for E2-to-HECT Ub transfer, in which interactions between a donor Ub and an acceptor domain constrain upstream and downstream enzymes for conjugation.
在 E1-E2-E3 泛素(Ub)缀合级联反应中,E2 首先形成一个瞬时的 E2-Ub 共价复合物,然后与 E3 相互作用以进行 Ub 转移。对于涉及 HECT 类 E3 的级联反应,Ub 从相关的 E2 转移到 HECT 结构域 C 结构域中的受体半胱氨酸。为了深入了解这一过程,我们确定了 NEDD4L 的 HECT 结构域与在其活性位点带有共价连接 Ub 的 E2 UbcH5B 之间的复合物的晶体结构(UbcH5B-Ub)。UbcH5B 与 HECT N 结构域和 Ub 与 HECT 结构域 C 结构域之间的非共价相互作用导致了一个整体紧凑的结构,Ub 的 C 末端夹在 UbcH5B 和 HECT 结构域活性位点之间。该结构为 E2 到 HECT Ub 转移提出了一个模型,其中供体 Ub 和受体结构域之间的相互作用限制了上游和下游酶的共轭。