The role of m6A modification in the biological functions and diseases

Роль модификации m6A в биологических функциях и заболеваниях
Zhi Nie, Xiulin Jiang, Baiyang Liu, Lincan Duan, Qiuxia Xiong, Zhixian Jin, Cuiping Yang, Yongbin Chen
2021-02-20

Cancer progressionRNA demethylasesRNA methyltransferasesm6A RNA modificationm6A-binding proteins
-methyladenosine (m6A) is the most prevalent, abundant and conserved internal cotranscriptional modification in eukaryotic RNAs, especially within higher eukaryotic cells. m6A modification is modified by the m6A methyltransferases, or writers, such as METTL3/14/16, RBM15/15B, ZC3H3, VIRMA, CBLL1, WTAP, and KIAA1429, and, removed by the demethylases, or erasers, including FTO and ALKBH5. It is recognized by m6A-binding proteins YTHDF1/2/3, YTHDC1/2 IGF2BP1/2/3 and HNRNPA2B1, also known as "readers". Recent studies have shown that m6A RNA modification plays essential role in both physiological and pathological conditions, especially in the initiation and progression of different types of human cancers. In this review, we discuss how m6A RNA methylation influences both the physiological and pathological progressions of hematopoietic, central nervous and reproductive systems. We will mainly focus on recent progress in identifying the biological functions and the underlying molecular mechanisms of m6A RNA methylation, its regulators and downstream target genes, during cancer progression in above systems. We propose that m6A RNA methylation process offer potential targets for cancer therapy in the future.
1
Recent evidence links m6A dysregulation to the initiation and progression of multiple human cancers through effects on downstream target genes and molecular pathways.
2
The m6A regulatory process represents a potential source of future therapeutic targets for cancer treatment.
3
m6A RNA modification regulates physiological and pathological processes in hematopoietic, central nervous, and reproductive systems.
4
m6A is a prevalent and conserved internal cotranscriptional RNA modification in eukaryotic cells.
5
m6A regulation involves writers, erasers, and reader proteins that collectively control RNA methylation-dependent functions.

m6A RNA methylation (N6-methyladenosine modification in eukaryotic RNAs)

The biological functions and underlying molecular mechanisms of m6A RNA methylation, its regulators, and downstream target genes in physiological and pathological processes, especially cancer progression

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2021-02-20
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Authors
Zhi Nie
Xiulin Jiang
Baiyang Liu
Lincan Duan
Qiuxia Xiong
Zhixian Jin
Cuiping Yang
Yongbin Chen
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