METTL3-mediated m6A methylation regulates granulosa cells autophagy during follicular atresia in pig ovaries.
暂无分享,去创建一个
D. Shi | Yan-xun Wang | F. Lu | Z. Ruan | Zhengda Li | Jun Zhang | Yun Feng | Canqiang Lu
[1] S. N. Sachdeva,et al. Role of autophagy in follicular development and maintenance of primordial follicular pool in the ovary , 2021, Journal of cellular physiology.
[2] Wei Li,et al. N6-methyladenosine Demethylase FTO Induces the Dysfunctions of Ovarian Granulosa Cells by Upregulating Flotillin 2 , 2021, Reproductive Sciences.
[3] Xue Li,et al. Role and mechanisms of autophagy in lung metabolism and repair , 2021, Cellular and Molecular Life Sciences.
[4] Jin-hai Tang,et al. HIF-1α-induced expression of m6A reader YTHDF1 drives hypoxia-induced autophagy and malignancy of hepatocellular carcinoma by promoting ATG2A and ATG14 translation , 2021, Signal Transduction and Targeted Therapy.
[5] Cuiping Yang,et al. The role of m6A modification in the biological functions and diseases , 2021, Signal Transduction and Targeted Therapy.
[6] Yunhai Zhang,et al. METTL3-mediated m6A methylation negatively modulates autophagy to support porcine blastocyst development‡ , 2021, Biology of Reproduction.
[7] Xuehong Zhang,et al. Decreased expression of m6A demethylase FTO in ovarian aging , 2020, Archives of Gynecology and Obstetrics.
[8] Wei Yang,et al. Altered m6A modification is involved in up‐regulated expression of FOXO3 in luteinized granulosa cells of non‐obese polycystic ovary syndrome patients , 2020, Journal of cellular and molecular medicine.
[9] Yunhai Zhang,et al. Identification and functional annotation of m6A methylation modification in granulosa cells during antral follicle development in pigs. , 2020, Animal reproduction science.
[10] Wenjie Shu,et al. Oocyte competence is maintained by m6A methyltransferase KIAA1429-mediated RNA metabolism during mouse follicular development , 2020, Cell Death & Differentiation.
[11] Peng R. Chen,et al. SFPQ Is an FTO-Binding Protein that Facilitates the Demethylation Substrate Preference. , 2020, Cell chemical biology.
[12] D. Bartel,et al. m6A modification of a 3′ UTR site reduces RME1 mRNA levels to promote meiosis , 2019, Nature Communications.
[13] Nam-Hyung Kim,et al. Functional roles of hnRNPA2/B1 regulated by METTL3 in mammalian embryonic development , 2019, Scientific Reports.
[14] Guohui Wan,et al. RNA N6-methyladenosine demethylase FTO promotes breast tumor progression through inhibiting BNIP3 , 2019, Molecular Cancer.
[15] Ruhua Zhang,et al. YTHDF2 suppresses cell proliferation and growth via destabilizing the EGFR mRNA in hepatocellular carcinoma. , 2019, Cancer letters.
[16] S. Mei,et al. Autophagy in Ovarian Follicular Development and Atresia , 2019, International journal of biological sciences.
[17] Honglin Liu,et al. MicroRNAs in ovarian follicular atresia and granulosa cell apoptosis , 2019, Reproductive Biology and Endocrinology.
[18] Z. Du,et al. Reduced nucleic acid methylation impairs meiotic maturation and developmental potency of pig oocytes. , 2018, Theriogenology.
[19] J. Keijer,et al. Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis , 2018, Biology of Reproduction.
[20] Xi C. He,et al. Suppression of m6A reader Ythdf2 promotes hematopoietic stem cell expansion , 2018, Cell Research.
[21] J. Cui,et al. m6A RNA modification controls autophagy through upregulating ULK1 protein abundance , 2018, Cell Research.
[22] Honglin Liu,et al. Initiation of follicular atresia: gene networks during early atresia in pig ovaries. , 2018, Reproduction.
[23] I. Ganley,et al. The mammalian ULK1 complex and autophagy initiation , 2017, Essays in biochemistry.
[24] M. Shen,et al. Protective mechanism of FSH against oxidative damage in mouse ovarian granulosa cells by repressing autophagy , 2017, Autophagy.
[25] Yanping Ren,et al. Bone morphogenetic protein 1 is expressed in porcine ovarian follicles and promotes oocyte maturation and early embryonic development , 2016, The Journal of veterinary medical science.
[26] Ligang Wu,et al. YTHDF2 destabilizes m6A-containing RNA through direct recruitment of the CCR4–NOT deadenylase complex , 2016, Nature Communications.
[27] Qiang Wang,et al. Structural basis of N6-adenosine methylation by the METTL3–METTL14 complex , 2016, Nature.
[28] K. Shokat,et al. Discovery and structure of a new inhibitor scaffold of the autophagy initiating kinase ULK1. , 2015, Bioorganic & medicinal chemistry.
[29] H. Chae,et al. ER Stress and Autophagy. , 2015, Current molecular medicine.
[30] R. Krisher,et al. Oocyte environment: follicular fluid and cumulus cells are critical for oocyte health. , 2015, Fertility and sterility.
[31] Zhike Lu,et al. m6A-dependent regulation of messenger RNA stability , 2013, Nature.
[32] M. Hułas-Stasiak,et al. Follicular atresia in the prepubertal spiny mouse (Acomys cahirinus) ovary , 2011, Apoptosis.
[33] M. L. Escobar,et al. Combined apoptosis and autophagy, the process that eliminates the oocytes of atretic follicles in immature rats , 2008, Apoptosis.
[34] J. Borlak,et al. Lectin-like oxidized low-density lipoprotein receptor-1-mediated autophagy in human granulosa cells as an alternative of programmed cell death. , 2006, Endocrinology.
[35] M. Mayes,et al. The influence of cumulus-oocyte complex morphology and meiotic inhibitors on the kinetics of nuclear maturation in cattle. , 2001, Theriogenology.
[36] A. Hsueh,et al. Regulation of ovarian follicle atresia. , 1997, Annual review of physiology.
[37] H. Elsässer,et al. Monodansylcadaverine (MDC) is a specific in vivo marker for autophagic vacuoles. , 1995, European journal of cell biology.