Palla Viktoria-Varvara, Karaolanis Georgios, Katafigiotis Ioannis, Anastasiou Ioannis, Patapis Paul, Dimitroulis Dimitrios, Perrea Despoina
1 Department of Obstetrics and Gynecology, Diakonie-Klinikum Schwäbisch Hall, Schwäbisch Hall, Germany.
2 1st Department of Surgery, Vascular Unit, Laiko General Hospital, Medical School of Athens, Athens, Greece.
Tumour Biol. 2017 Mar;39(3):1010428317695931. doi: 10.1177/1010428317695931.
Double-strand breaks are among the first procedures taking place in cancer formation and progression as a result of endogenic and exogenic factors. The histone variant H2AX undergoes phosphorylation at serine 139 due to double-strand breaks, and the gamma-H2AX is formatted as a result of genomic instability. The detection of gamma-H2AX can potentially serve as a biomarker for transformation of normal tissue to premalignant and consequently to malignant tissues. gamma-H2AX has already been investigated in a variety of cancer types, including breast, lung, colon, cervix, and ovary cancers. The prognostic value of gamma-H2AX is indicated in certain cancer types, such as breast or endometrial cancer, but further investigation is needed to establish gamma-H2AX as a prognostic marker. This review outlines the role of gamma-H2AX in cell cycle, and its formation as a result of DNA damage. We investigate the role of gamma-H2AX formation in several cancer types and its correlation with other prognostic factors, and we try to find out whether it fulfills the requirements for its establishment as a classical cancer prognostic factor.
由于内源性和外源性因素,双链断裂是癌症形成和发展过程中最早发生的过程之一。组蛋白变体H2AX由于双链断裂在丝氨酸139处发生磷酸化,γ-H2AX因基因组不稳定而形成。γ-H2AX的检测有可能作为正常组织向癌前组织进而向恶性组织转变的生物标志物。γ-H2AX已经在多种癌症类型中进行了研究,包括乳腺癌、肺癌、结肠癌、宫颈癌和卵巢癌。γ-H2AX在某些癌症类型(如乳腺癌或子宫内膜癌)中具有预后价值,但需要进一步研究以确定γ-H2AX作为一种预后标志物。这篇综述概述了γ-H2AX在细胞周期中的作用及其因DNA损伤而形成的过程。我们研究了γ-H2AX在几种癌症类型中的形成作用及其与其他预后因素的相关性,并试图找出它是否满足作为经典癌症预后因素确立的要求。