Shen Qingya, Qiu Zhiyu, Wu Wenping, Zheng Jimin, Jia Zongchao
College of Chemistry, Beijing Normal University, Beijing 100875, China.
College of Chemistry, Beijing Normal University, Beijing 100875, China
Biol Open. 2018 Dec 14;7(12):bio037366. doi: 10.1242/bio.037366.
Phosphoenolpyruvate carboxykinase (PEPCK1) is ubiquitinated by E3 ubiquitin ligase UBR5, which was thought to be facilitated by the acetylation of Lys70, Lys71 and Lys594 in PEPCK1. Here, we made a series of UBR5 HECT domain truncation variants and, through pull-down assay, showed that the N-terminal lobe of the UBR5 HECT domain is largely responsible for interacting with PEPCK1. We mutated all three lysine residues thought to be acetylated in PEPCK1 but were surprised to observe no loss of binding to UBR5 HECT domain. Furthermore, two PEPCK1 truncation variants (74-622 aa and 10-560 aa) lacking these lysine residues were still able to bind with UBR5 and ubiquitinated in HEK293T cells. To discover the ubiquitination site(s) of PEPCK1, which is currently unknown, the Lys residues of PEPCK1 were mutated to Ala and the ubiquitination level of the PEPCK1 mutants was assessed. Results revealed at least two ubiquitination sites (Lys243 and Lys342), which represent the first time that ubiquitination sites of PEPCK1 have been identified. Our pull-down experiments further show that the lack of ubiquitination of PEPCK1 Lys243Ala and Lys342Ala mutants is not due to their binding to UBR5, which remained unchanged. Taken together, our work has provided new insights into UBR5 mediated ubiquitination of PEPCK1.
磷酸烯醇式丙酮酸羧激酶(PEPCK1)被E3泛素连接酶UBR5泛素化,人们认为PEPCK1中赖氨酸70、赖氨酸71和赖氨酸594的乙酰化促进了这一过程。在此,我们构建了一系列UBR5 HECT结构域截短变体,并通过下拉实验表明,UBR5 HECT结构域的N端叶在很大程度上负责与PEPCK1相互作用。我们对PEPCK1中所有被认为会发生乙酰化的三个赖氨酸残基进行了突变,但惊讶地发现与UBR5 HECT结构域的结合并未丧失。此外,两个缺少这些赖氨酸残基的PEPCK1截短变体(74 - 622氨基酸和10 - 560氨基酸)仍能够在HEK293T细胞中与UBR5结合并被泛素化。为了发现目前未知的PEPCK1的泛素化位点,我们将PEPCK1的赖氨酸残基突变为丙氨酸,并评估了PEPCK1突变体的泛素化水平。结果揭示了至少两个泛素化位点(赖氨酸243和赖氨酸342),这是首次鉴定出PEPCK1的泛素化位点。我们进一步通过下拉实验表明,PEPCK1赖氨酸243丙氨酸和赖氨酸342丙氨酸突变体缺乏泛素化并非由于它们与UBR5的结合,这种结合保持不变。综上所述,我们的工作为UBR5介导的PEPCK1泛素化提供了新的见解。