Sha Zhou, Chilakala Sujatha, Crabill George, Cheng Iteen, Xu Yan, Fishovitz Jennifer, Lee Irene
Department of Chemistry, Case Western Reserve University, Cleveland, Ohio, 44106, USA.
Department of Chemistry, Cleveland State University, Cleveland, Ohio, 44115, USA.
Chembiochem. 2020 Jul 16;21(14):2049-2059. doi: 10.1002/cbic.202000031. Epub 2020 Apr 2.
Human caseinolytic protease component X and P (hClpXP) is a heterooligomeric ATP-dependent protease. The hClpX subunit catalyzes ATP hydrolysis whereas the hClpP subunit catalyzes peptide bond cleavage. In this study, we generated a peptidyl chloromethyl ketone (dansyl-FAPAL-CMK) that inhibited the hClpP subunit through alkylation of the catalytic His122, which was detected by LC-MS. This inhibitor is composed of a peptide sequence derived from a hydrolyzed peptide product of a substrate cleaved by hClpXP. Binding of FAPAL positions the electrophilic chloromethyl ketone moiety near His122 where alkylation occurs. Dansyl FAPAL-CMK exhibits selectivity for hClpXP over other ATP-dependent proteases such as hLon and the 26S proteasome and abolishes hClpXP activity in HeLa cell lysate. Using the fluorogenic peptide substrate FR-Cleptide as reporter, we detected biphasic inhibition time courses; this supports a slow-binding, time-dependent, covalent inhibition mechanism that is often found in active-site directed affinity labels. Because this inhibitor reacts only with hClpXP but not hLon or the proteasome, it has the potential to serve as a chemical tool to help validate endogenous protein substrates of hClpXP in cell lysate, thereby benefiting investigation of the physiological functions of hClpXP in different cell types or tissue samples.
人酪蛋白水解蛋白酶X和P组分(hClpXP)是一种异源寡聚体ATP依赖性蛋白酶。hClpX亚基催化ATP水解,而hClpP亚基催化肽键裂解。在本研究中,我们生成了一种肽基氯甲基酮(丹磺酰-FAPAL-CMK),它通过催化性His122的烷基化抑制hClpP亚基,这一过程通过液相色谱-质谱检测。该抑制剂由源自hClpXP裂解的底物水解肽产物的肽序列组成。FAPAL的结合使亲电氯甲基酮部分定位在发生烷基化的His122附近。丹磺酰FAPAL-CMK对hClpXP表现出比对其他ATP依赖性蛋白酶(如hLon和26S蛋白酶体)更高的选择性,并消除HeLa细胞裂解物中的hClpXP活性。使用荧光肽底物FR-肽作为报告分子,我们检测到双相抑制时间进程;这支持了一种慢结合、时间依赖性的共价抑制机制,这种机制在活性位点导向的亲和标记中经常出现。由于这种抑制剂仅与hClpXP反应,而不与hLon或蛋白酶体反应,它有潜力作为一种化学工具,帮助验证细胞裂解物中hClpXP的内源性蛋白质底物,从而有利于研究hClpXP在不同细胞类型或组织样本中的生理功能。