Heraud-Farlow Jacki E, Chalk Alistair M, Walkley Carl R
St. Vincent's Institute.
Department of Medicine, St. Vincent's Hospital, University of Melbourne, Fitzroy.
Curr Opin Hematol. 2019 Jul;26(4):241-248. doi: 10.1097/MOH.0000000000000514.
The direct modification of RNA is now understood to be widespread, evolutionarily conserved and of consequence to cellular and organismal homeostasis. adenosine-to-inosine (A-to-I) RNA editing is one of the most common mammalian RNA modifications. Transcriptome-wide maps of the A-to-I editing exist, yet functions for the majority of editing sites remain opaque. Herein we discuss how hematology has been applied to determine physiological and malignant functions of A-to-I editing.
Functional studies have established that A-to-I editing and ADAR1, responsible for the majority of editing in blood cells, are essential for normal blood cell homeostasis. ADAR1 edits endogenous RNA and reshapes its secondary structure, preventing MDA5 from perceiving the cells own RNA as pathogenic. Roles for ADAR1 in human leukaemia, and most recently, cancer cell intrinsic and extrinsic functions of ADAR1 have been identified that highlight ADAR1 as a therapeutic target in cancer.
The studies reviewed have identified the key physiological function of ADAR1 and mechanistic basis for A-to-I editing in normal physiology and have now been extended to cancer. As our understanding of the biology and consequences of A-to-I editing evolve, it may be possible to target ADAR1 function advantageously in a number of settings.
RNA的直接修饰如今被认为广泛存在、具有进化保守性且对细胞和机体的稳态具有重要意义。腺苷到次黄苷(A-to-I)的RNA编辑是哺乳动物中最常见的RNA修饰之一。全转录组范围的A-to-I编辑图谱已经存在,但大多数编辑位点的功能仍不明确。在此,我们讨论血液学如何被用于确定A-to-I编辑的生理和恶性功能。
功能研究已证实,负责血细胞中大部分编辑的A-to-I编辑和ADAR1对正常血细胞稳态至关重要。ADAR1编辑内源性RNA并重塑其二级结构,防止MDA5将细胞自身的RNA视为病原体。已确定ADAR1在人类白血病中的作用,以及最近ADAR1在癌细胞内在和外在功能方面的作用,这些都突出了ADAR1作为癌症治疗靶点的地位。
所综述的研究已经确定了ADAR1的关键生理功能以及正常生理学中A-to-I编辑的机制基础,并且现在已经扩展到癌症领域。随着我们对A-to-I编辑的生物学和后果的理解不断发展,在许多情况下可能有利地靶向ADAR1的功能。