Muñoz-Escobar Juliana, Matta-Camacho Edna, Kozlov Guennadi, Gehring Kalle
From the Department of Biochemistry, Groupe de Recherche Axé sur la Structure des Protéines, McGill University, Montréal, Québec H3G 0B1, Canada.
From the Department of Biochemistry, Groupe de Recherche Axé sur la Structure des Protéines, McGill University, Montréal, Québec H3G 0B1, Canada
J Biol Chem. 2015 Sep 11;290(37):22841-50. doi: 10.1074/jbc.M115.672246. Epub 2015 Jul 29.
E3 ubiquitin ligases catalyze the transfer of ubiquitin from an E2-conjugating enzyme to a substrate. UBR5, homologous to the E6AP C terminus (HECT)-type E3 ligase, mediates the ubiquitination of proteins involved in translation regulation, DNA damage response, and gluconeogenesis. In addition, UBR5 functions in a ligase-independent manner by prompting protein/protein interactions without ubiquitination of the binding partner. Despite recent functional studies, the mechanisms involved in substrate recognition and selective ubiquitination of its binding partners remain elusive. The C terminus of UBR5 harbors the HECT catalytic domain and an adjacent MLLE domain. MLLE domains mediate protein/protein interactions through the binding of a conserved peptide motif, termed PAM2. Here, we characterize the binding properties of the UBR5 MLLE domain to PAM2 peptides from Paip1 and GW182. The crystal structure with a Paip1 PAM2 peptide reveals the network of hydrophobic and ionic interactions that drive binding. In addition, we identify a novel interaction of the MLLE domain with the adjacent HECT domain mediated by a PAM2-like sequence. Our results confirm the role of the MLLE domain of UBR5 in substrate recruitment and suggest a potential role in regulating UBR5 ligase activity.
E3泛素连接酶催化泛素从E2缀合酶转移至底物。UBR5与E6相关蛋白C端(HECT)型E3连接酶同源,介导参与翻译调控、DNA损伤应答和糖异生的蛋白质的泛素化。此外,UBR5以不依赖连接酶的方式发挥作用,通过促进蛋白质/蛋白质相互作用而不使结合伴侣发生泛素化。尽管近期有功能研究,但底物识别及其结合伴侣的选择性泛素化所涉及的机制仍不清楚。UBR5的C端含有HECT催化结构域和相邻的MLLE结构域。MLLE结构域通过结合一个保守的肽基序(称为PAM2)介导蛋白质/蛋白质相互作用。在此,我们表征了UBR5的MLLE结构域与来自Paip1和GW182的PAM2肽的结合特性。与Paip1 PAM2肽的晶体结构揭示了驱动结合的疏水和离子相互作用网络。此外,我们鉴定出MLLE结构域与相邻HECT结构域之间由类PAM2序列介导的新型相互作用。我们的结果证实了UBR5的MLLE结构域在底物募集方面的作用,并暗示其在调节UBR5连接酶活性方面的潜在作用。