METTL14 facilitates global genome repair and suppresses skin tumorigenesis.

Yang, Zizhao; Yang, Seungwon; Cui, Yan-Hong; Wei, Jiangbo; Shah, Palak; Park, Gayoung; Cui, Xiaolong; He, Chuan et al. · Proc Natl Acad Sci U S A · 2021

basic_science · Level V

Where this comes from

Abstract

Global genome repair (GGR), a subpathway of nucleotide excision repair, corrects bulky helix-distorting DNA lesions across the whole genome and is essential for preventing mutagenesis and skin cancer. Here, we show that METTL14 (methyltransferase-like 14), a critical component of the N<sup>6</sup>-methyladenosine (m<sup>6</sup>A) RNA methyltransferase complex, promotes GGR through regulating m<sup>6</sup>A mRNA methylation-mediated DDB2 translation and suppresses ultraviolet B (UVB) radiation-induced skin tumorigenesis. UVB irradiation down-regulates METTL14 protein through NBR1-dependent selective autophagy. METTL14 knockdown decreases GGR and DDB2 abundance. Conversely, overexpression of wild-type METTL14 but not its enzymatically inactive mutant increases GGR and DDB2 abundance. METTL14 knockdown decreases m<sup>6</sup>A methylation and translation of the DDB2 transcripts. Adding DDB2 reverses the GGR repair defect in METTL14 knockdown cells, indicating that METTL14 facilitates GGR through regulating DDB2 m<sup>6</sup>A methylation and translation. Similarly, knockdown of YTHDF1, an m<sup>6</sup>A reader promoting translation of m<sup>6</sup>A-modified transcripts, decreases DDB2 protein levels. Both METTL14 and YTHDF1 bind to the DDB2 transcript. In mice, skin-specific heterozygous METTL14 deletion increases UVB-induced skin tumorigenesis. Furthermore, METTL14 as well as DDB2 is down-regulated in human and mouse skin tumors and by chronic UVB irradiation in mouse skin, and METTL14 level is associated with the DDB2 level, suggesting a tumor-suppressive role of METTL14 in UVB-associated skin tumorigenesis in association with DDB2 regulation. Taken together, these findings demonstrate that METTL14 is a target for selective autophagy and acts as a critical epitranscriptomic mechanism to regulate GGR and suppress UVB-induced skin tumorigenesis.

Medical subject headings