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S 期特异性下调人脑甲基鸟嘌呤 DNA 甲基转移酶(MGMT)及其与神经胶质瘤细胞中 PCNA 和 p21 蛋白的偶然相互作用。

S-phase Specific Downregulation of Human O-Methylguanine DNA Methyltransferase (MGMT) and its Serendipitous Interactions with PCNA and p21 Proteins in Glioma Cells.

机构信息

Department of Biomedical Sciences, School of Pharmacy, Texas Tech University Health Sciences Center, 1406 S. Coulter Drive, Amarillo, TX 79106, USA.

Department of Biomedical Sciences, School of Pharmacy, Texas Tech University Health Sciences Center, 1406 S. Coulter Drive, Amarillo, TX 79106, USA.

出版信息

Neoplasia. 2018 Apr;20(4):305-323. doi: 10.1016/j.neo.2018.01.010. Epub 2018 Mar 3.

Abstract

Whether the antimutagenic DNA repair protein MGMT works solo in human cells and if it has other cellular functions is not known. Here, we show that human MGMT associates with PCNA and in turn, with the cell cycle inhibitor, p21 in glioblastoma and other cancer cell lines. MGMT protein was shown to harbor a nearly perfect PCNA-Interacting Protein (PIP box) motif. Isogenic p53-null H1299 cells were engineered to express the p21 protein by two different procedures. Reciprocal immunoprecipitation/western blotting, Far-western blotting, and confocal microscopy confirmed the specific association of MGMT with PCNA and the ability of p21 to strongly disrupt the MGMT-PCNA complexes in tumor cells. Alkylation DNA damage resulted in a greater colocalization of MGMT and PCNA proteins, particularly in HCT116 cells deficient in p21 expression. p21 expression in isogenic cell lines directly correlated with markedly higher levels of MGMT mRNA, protein, activity and greater resistance to alkylating agents. In other experiments, four glioblastoma cell lines synchronized at the G1/S phase using either double thymidine or thymidine-mimosine blocks and subsequent cycling consistently showed a loss of MGMT protein at mid- to late S-phase, irrespective of the cell line, suggesting such a downregulation is fundamental to cell cycle control. MGMT protein was also specifically degraded in extracts from S-phase cells and evidence strongly suggested the involvement of PCNA-dependent CRL4 ubiquitin-ligase in the reaction. Overall, these data provide the first evidence for non-repair functions of MGMT in cell cycle and highlight the involvement of PCNA in MGMT downregulation, with p21 attenuating the process.

摘要

是否抗突变 DNA 修复蛋白 MGMT 在人类细胞中独立发挥作用,以及它是否具有其他细胞功能尚不清楚。在这里,我们表明人类 MGMT 与 PCNA 结合,进而与细胞周期抑制剂 p21 在神经胶质瘤和其他癌细胞系中结合。MGMT 蛋白被证明含有几乎完美的 PCNA 相互作用蛋白(PIP 盒)基序。通过两种不同的程序,对 p53 缺失的同基因 H1299 细胞进行工程改造以表达 p21 蛋白。相互免疫沉淀/蛋白质印迹、远 Western 印迹和共聚焦显微镜证实了 MGMT 与 PCNA 的特异性结合,以及 p21 强烈破坏肿瘤细胞中 MGMT-PCNA 复合物的能力。烷基化 DNA 损伤导致 MGMT 和 PCNA 蛋白的更大共定位,特别是在缺乏 p21 表达的 HCT116 细胞中。同基因细胞系中 p21 的表达与 MGMT mRNA、蛋白质、活性的显著升高以及对烷化剂的更高抗性直接相关。在其他实验中,使用双胸苷或胸苷-假尿嘧啶核苷阻断物将四个神经胶质瘤细胞系同步到 G1/S 期,随后循环一致地在中到晚期 S 期失去 MGMT 蛋白,无论细胞系如何,这表明这种下调是细胞周期控制的基础。MGMT 蛋白也在 S 期细胞提取物中特异性降解,并且强有力的证据表明 PCNA 依赖性 CRL4 泛素连接酶参与了该反应。总体而言,这些数据首次提供了 MGMT 在细胞周期中非修复功能的证据,并强调了 PCNA 在 MGMT 下调中的作用,p21 减弱了该过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c81c/5909491/66799190f0dd/gr1.jpg

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