Oweis Walaa, Padala Prasanth, Hassouna Fouad, Cohen-Kfir Einav, Gibbs Dalton R, Todd Emily A, Berndsen Christopher E, Wiener Reuven
Department of Biochemistry and Molecular Biology, Institute for Medical Research Israel-Canada, Hebrew University-Hadassah Medical School, Jerusalem 91120, Israel.
Department of Chemistry and Biochemistry, James Madison University, Harrisonburg, VA 22807, USA.
Cell Rep. 2016 Sep 20;16(12):3113-3120. doi: 10.1016/j.celrep.2016.08.067.
Modification of proteins by ubiquitin or ubiquitin-like proteins (UBLs) is a critical cellular process implicated in a variety of cellular states and outcomes. A prerequisite for target protein modification by a UBL is the activation of the latter by activating enzymes (E1s). Here, we present the crystal structure of the non-canonical homodimeric E1, UBA5, in complex with its cognate UBL, UFM1, and supporting biochemical experiments. We find that UBA5 binds to UFM1 via a trans-binding mechanism in which UFM1 interacts with distinct sites in both subunits of the UBA5 dimer. This binding mechanism requires a region C-terminal to the adenylation domain that brings UFM1 to the active site of the adjacent UBA5 subunit. We also find that transfer of UFM1 from UBA5 to the E2, UFC1, occurs via a trans mechanism, thereby requiring a homodimer of UBA5. These findings explicitly elucidate the role of UBA5 dimerization in UFM1 activation.
泛素或类泛素蛋白(UBLs)对蛋白质的修饰是一个关键的细胞过程,涉及多种细胞状态和结果。UBL对靶蛋白进行修饰的一个前提条件是其被激活酶(E1s)激活。在此,我们展示了非经典同源二聚体E1——UBA5与其同源UBL——UFM1形成复合物的晶体结构,并辅以生化实验。我们发现,UBA5通过一种反式结合机制与UFM1结合,其中UFM1与UBA5二聚体两个亚基中的不同位点相互作用。这种结合机制需要腺苷化结构域C端的一个区域,该区域将UFM1带到相邻UBA5亚基的活性位点。我们还发现,UFM1从UBA5转移到E2——UFC1是通过反式机制发生的,因此需要UBA5形成同源二聚体。这些发现明确阐明了UBA5二聚化在UFM1激活中的作用。