Department of Medical Biochemistry, School of Laboratory Medicine and Medical Sciences, College of Health Sciences, University of KwaZulu-Natal, Howard Campus, Durban 4000, South Africa.
Molecular Bio-computation and Drug Design Laboratory, School of Health Sciences, University of KwaZulu-Natal, Westville Campus, Durban 4001, South Africa.
Comb Chem High Throughput Screen. 2022;25(5):831-837. doi: 10.2174/1386207324666210203175142.
Deubiquitinating enzymes (DUBs) protein family have been implicated in some deregulated pathways involved in carcinogeneses, such as cell cycle, gene expression, and DNA damage response (DDR). Zinc finger with UFM1-specific peptidase domain protein (ZUFSP) is one of the recently discovered members of the DUBs.
To identify and cross-validate the ZUFSP binding site using the bioinformatic tools, including SiteMap&Metapocket, respectively. To understand the molecular basis of complementary ZUFSP-Ub interaction and associated structural events using MD Simulation.
In this study, four binding pockets were predicted, characterized, and cross-validated based on physiochemical features such as site score, druggability score, site volume, and site size. Also, a molecular dynamics simulation technique was employed to determine the impact of ubiquitin-binding on ZUFSP.
Site 1 with a site score 1.065, Size 102, D scores 1.00, and size volume 261 was predicted to be the most druggable site. Structural studies revealed that upon ubiquitin-binding, the motional movement of ZUFSP was reduced when compared to the unbound ZUFSP. Also, the ZUFSP helical arm (ZHA) domain orient in such a way that it moves closer to the Ub; this orientation enables the formation of a UBD which is very peculiar to ZUFSP.
The impact of ubiquitin on ZUFSP movement and the characterization of its predicted druggable site can be targeted in the development of therapeutics.
去泛素化酶(DUB)蛋白家族已被牵涉到一些失调的途径中,这些途径参与致癌作用,如细胞周期、基因表达和 DNA 损伤反应(DDR)。带有 UFM1 特异性肽酶结构域的锌指蛋白(ZUFSP)是最近发现的 DUBs 成员之一。
使用生物信息学工具(包括 SiteMap&Metapocket)分别识别和交叉验证 ZUFSP 结合位点。使用 MD 模拟了解 ZUFSP-Ub 相互作用的分子基础和相关的结构事件。
在这项研究中,基于 SiteScore、DruggabilityScore、SiteVolume 和 SiteSize 等物理化学特征,预测、表征和交叉验证了四个结合口袋。还采用分子动力学模拟技术来确定泛素结合对 ZUFSP 的影响。
Site1 的 SiteScore 为 1.065、Size 为 102、D 分数为 1.00、SizeVolume 为 261,被预测为最具成药性的结合位点。结构研究表明,与未结合的 ZUFSP 相比,结合泛素后,ZUFSP 的运动移动性降低。此外,ZUFSP 的螺旋臂(ZHA)结构域的方向是向 Ub 移动,这种方向使它能够形成一个 UBD,这是 ZUFSP 特有的。
泛素对 ZUFSP 运动的影响以及其预测的成药性结合位点的特征可以作为治疗药物开发的靶点。