Liu Jin, Nussinov Ruth
Basic Science Program, SAIC-Frederick, Inc., Center for Cancer Research Nanobiology Program, NCI-Frederick, Frederick, Maryland, USA.
PLoS Comput Biol. 2009 Oct;5(10):e1000527. doi: 10.1371/journal.pcbi.1000527. Epub 2009 Oct 2.
In cullin-RING E3 ubiquitin ligases, substrate binding proteins, such as VHL-box, SOCS-box or the F-box proteins, recruit substrates for ubiquitination, accurately positioning and orienting the substrates for ubiquitin transfer. Yet, how the E3 machinery precisely positions the substrate is unknown. Here, we simulated nine substrate binding proteins: Skp2, Fbw7, beta-TrCP1, Cdc4, Fbs1, TIR1, pVHL, SOCS2, and SOCS4, in the unbound form and bound to Skp1, ASK1 or Elongin C. All nine proteins have two domains: one binds to the substrate; the other to E3 ligase modules Skp1/ASK1/Elongin C. We discovered that in all cases the flexible inter-domain linker serves as a hinge, rotating the substrate binding domain, optimally and accurately positioning it for ubiquitin transfer. We observed a conserved proline in the linker of all nine proteins. In all cases, the prolines pucker substantially and the pucker is associated with the backbone rotation toward the E2/ubiquitin. We further observed that the linker flexibility could be regulated allosterically by binding events associated with either domain. We conclude that the flexible linker in the substrate binding proteins orients the substrate for the ubiquitin transfer. Our findings provide a mechanism for ubiquitination and polyubiquitination, illustrating that these processes are under conformational control.
在泛素连接酶E3中,底物结合蛋白,如VHL结构域、SOCS结构域或F盒蛋白,招募底物进行泛素化,精确地定位并定向底物以便进行泛素转移。然而,E3机制如何精确地定位底物尚不清楚。在此,我们模拟了九种底物结合蛋白:Skp2、Fbw7、β-TrCP1、Cdc4、Fbs1、TIR1、pVHL、SOCS2和SOCS4,它们处于未结合状态以及与Skp1、ASK1或延伸蛋白C结合的状态。所有这九种蛋白都有两个结构域:一个与底物结合;另一个与E-3连接酶模块Skp1/ASK1/延伸蛋白C结合。我们发现,在所有情况下,灵活的结构域间连接子充当铰链,旋转底物结合结构域,以最佳且精确的方式将其定位以便进行泛素转移。我们在所有九种蛋白的连接子中观察到一个保守的脯氨酸。在所有情况下,脯氨酸都有明显的皱曲,且这种皱曲与主链向E2/泛素的旋转相关。我们进一步观察到,连接子的灵活性可以通过与任一结构域相关的结合事件进行变构调节。我们得出结论,底物结合蛋白中的灵活连接子为泛素转移定向底物。我们的发现提供了一种泛素化和多聚泛素化的机制,说明这些过程受构象控制。