Chen Zhangming, Hu Jie, Ying Songcheng, Xu Aman
Department of General Surgery, The Fourth Affiliated Hospital of Anhui Medical University, Hefei, Anhui 230001, P.R. China.
Department of Immunology, School of Basic Medical Sciences, Anhui Medical University, Hefei, Anhui 230032, P.R. China.
Oncol Lett. 2021 Jun;21(6):451. doi: 10.3892/ol.2021.12712. Epub 2021 Apr 8.
Human sterile alpha motif and HD-domain-containing protein 1 (SAMHD1) has been identified as a GTP or dGTP-dependent deoxynucleotide triphosphohydrolase (dNTPase) and acts as an antiviral factor against certain retroviruses and DNA viruses. Genetic mutation in SAMHD1 causes the inflammatory Aicardi-Goutières Syndrome and abnormal intracellular deoxyribonucleoside triphosphates (dNTPs) pool. At present, the role of SAMHD1 in numerous types of cancer, such as chronic lymphocytic leukemia, lung cancer and colorectal cancer, is highly studied. Furthermore, it has been found that methylation, acetylation and phosphorylation are involved in the regulation of SAMHD1 expression, and that genetic mutations can cause changes in its activities, including dNTPase activity, long interspersed element type 1 (LINE-1) suppression and DNA damage repair, which could lead to uncontrolled cell cycle progression and cancer development. In addition, SAMHD1 has been reported to have a negative regulatory role in the chemosensitivity to anticancer drugs through its dNTPase activity. The present review aimed to summarize the regulation of SAMHD1 expression in cancer and its function in tumor growth and chemotherapy sensitivity, and discussed controversial points and future directions.
人类含 sterile alpha 基序和 HD 结构域蛋白 1(SAMHD1)已被鉴定为一种 GTP 或 dGTP 依赖性脱氧核苷酸三磷酸水解酶(dNTPase),并作为针对某些逆转录病毒和 DNA 病毒的抗病毒因子发挥作用。SAMHD1 的基因突变会导致炎症性 Aicardi-Goutières 综合征以及细胞内脱氧核苷三磷酸(dNTP)池异常。目前,SAMHD1 在多种类型癌症(如慢性淋巴细胞白血病、肺癌和结直肠癌)中的作用受到了广泛研究。此外,已发现甲基化、乙酰化和磷酸化参与了 SAMHD1 表达的调控,并且基因突变可导致其活性发生变化,包括 dNTPase 活性、长散在核元件 1 型(LINE-1)抑制和 DNA 损伤修复,这可能导致细胞周期失控进展和癌症发展。此外,据报道 SAMHD1 通过其 dNTPase 活性在对抗癌药物的化学敏感性中具有负调控作用。本综述旨在总结 SAMHD1 在癌症中的表达调控及其在肿瘤生长和化疗敏感性中的作用,并讨论了争议点和未来方向。