Division of Pharmacology and Toxicology, College of Pharmacy, The University of Texas at Austin, Dell Pediatric Research Institute, Austin, Texas.
Cancer Res. 2020 Jun 1;80(11):2075-2082. doi: 10.1158/0008-5472.CAN-19-3066. Epub 2020 Mar 9.
Chromatin-associated architectural proteins are part of a fundamental support system for cellular DNA-dependent processes and can maintain/modulate the efficiency of DNA replication, transcription, and DNA repair. Interestingly, prognostic outcomes of many cancer types have been linked with the expression levels of several of these architectural proteins. The high mobility group box (HMGB) architectural protein family has been well studied in this regard. The differential expression levels of HMGB proteins and/or mRNAs and their implications in cancer etiology and prognosis present the potential of novel targets that can be explored to increase the efficacy of existing cancer therapies. HMGB1, the most studied member of the HMGB protein family, has pleiotropic roles in cells including an association with nucleotide excision repair, base excision repair, mismatch repair, and DNA double-strand break repair. Moreover, the HMGB proteins have been identified in regulating DNA damage responses and cell survival following treatment with DNA-damaging agents and, as such, may play roles in modulating the efficacy of chemotherapeutic drugs by modulating DNA repair pathways. Here, we discuss the functions of HMGB proteins in DNA damage processing and their potential roles in cancer etiology, prognosis, and therapeutics.
染色质相关结构蛋白是细胞 DNA 依赖性过程的基本支撑系统的一部分,能够维持/调节 DNA 复制、转录和 DNA 修复的效率。有趣的是,许多癌症类型的预后结果与几种结构蛋白的表达水平有关。在这方面,高迁移率族框 (HMGB) 结构蛋白家族已经得到了很好的研究。HMGB 蛋白和/或 mRNA 的差异表达水平及其在癌症病因学和预后中的意义为可以探索增加现有癌症治疗效果的新靶点提供了潜力。HMGB1 是 HMGB 蛋白家族中研究最多的成员,在细胞中具有多种作用,包括与核苷酸切除修复、碱基切除修复、错配修复和 DNA 双链断裂修复相关。此外,HMGB 蛋白已被确定在 DNA 损伤剂处理后调节 DNA 损伤反应和细胞存活,因此,通过调节 DNA 修复途径,可能在调节化疗药物的疗效方面发挥作用。在这里,我们讨论了 HMGB 蛋白在 DNA 损伤处理中的功能及其在癌症病因学、预后和治疗中的潜在作用。