Scientia Agricultura Sinica ›› 2015, Vol. 48 ›› Issue (10): 2039-2048.doi: 10.3864/j.issn.0578-1752.2015.10.016
• ANIMAL SCIENCE·VETERINARY SCIENCERE·SOURCE INSECT • Previous Articles Next Articles
QI Yun-xia1,2, LIU Xiao-fang3, ZHANG Ping3, HE Xiao-long2, XING Yu-mei3, Dalai2, Terigele2, LIU Yong-bin2, RONG Wei-heng2
| [1] Brennecke J, Hipfner D R, Stark A, Russell R B, Cohen S M. Bantam encodes a developmentally regulated microRNA that controls cell proliferation and regulates the proapoptotic gene hid in Drosophila. Cell, 2003, 113(1): 25-36.
[2] Volinia S, Calin G A, Liu C G, Ambs S, Cimmino A, Petrocca F, Visone R, Iorio M, Roldo C, Ferracin M, Prueitt R L, Yanaihara N, Lanza G, Scarpa A, Vecchione A, Negrini M, Harris C C, Croce C M. A microRNA expression signature of human solid tumors defines cancer gene targets. Proceedings of the National Academy of Sciences of the United States of America, 2006, 103(7): 2257-2261.
[3] Carleton M, Cleary M A, Linsley P S. MicroRNAs and cell cycle regulation. Cell Cycle, 2007, 6(17): 2127-2132.
[4] Foshay K M, Gallicano G I. miR-17 family miRNAs are expressed during early mammalian development and regulate stem cell differentiation. Developmental Biology, 2009, 326(2): 431-443.
[5] Lewis B P, Burge C B, Bartel D P. Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets. Cell, 2005, 120(1): 15-20.
[6] Imbar T, Galliano D, Pellicer A, Laufer N. Introduction: MicroRNAs in human reproduction: small molecules with crucial regulatory roles. Fertility and Sterility, 2014, 101(6):1514-1515.
[7] Bernstein E, Kim S Y, Carmell M A, Murchison E P, Alcorn H, Li M Z, Mills A A, Elledge S J, Anderson K V, Hannon G J. Dicer is essential For mouse development. Nature Genetics, 2003, 35(3): 215-217.
[8] Yang W J, Yang D D, Na S, Sandusky G E, Zhang Q, Zhao G. Dicer is required for embryonic angiogenesis during mouse development. The Journal of Biological Chemistry, 2005, 280(10): 9330-9335.
[9] 任刚, 杨增明. MicroRNA在雌性哺乳动物生殖中的作用. 细胞生物学杂志, 2009, 31(6): 805-810.
Ren G, Yang Z M. Role of microRNA in mammalian female reproduction. Chinese Journal of Cell Biology, 2009, 31(6): 805-810. (in Chinese)
[10] Tang F, Kaneda M, O'Carroll D, Hajkova P, Barton S C, Sun Y A, Lee C, Tarakhovsky A, Lao K, Surani M A. Maternal microRNAs are essential for mouse zygotic development. Genes & Development, 2007, 21(6): 644-648.
[11] Kanellopoulou C, Muljo S A, Kung A L, Ganesan S, Drapkin R, Jenuwein T, Livingston D M, Rajewsky K. Dicer-deficient mouse embryonic stem cells are defective in differentiation and centromeric silencing. Genes & Development, 2005, 19(4): 489-501.
[12] Murchison E P, Stein P, Xuan Z, Pan H, Zhang M Q, Schultz R M, Hannon G J. Critical roles for Dicer in the female germline. Genes & Development, 2007, 21(6): 682-693.
[13] Otsuka M, Jing Q, Georgel P, New L, Chen J, Mols J, Kang Y J, Jiang Z, Du X, Cook R, Das S C, Pattnaik A K, Beutler B, Han J. Hypersusceptibility to vesicular stomatitis virus infection in Diced-deficient mice is due to impaired miR24 and miR93 expression. Immunity, 2007, 27(1): 123-134.
[14] Otsuka M, Zheng M, Hayashi M, Lee J D, Yoshino O, Lin S, Han J. Impaired microRNA processing causes corpus luteum insufficiency and infertility in mice. The Journal of Clinical Investigation, 2008, 118(5): 1944-1954.
[15] Nagaraja A K, Andreu-Vieyra C, Franco H L, Ma L, Chen R, Han D Y, Zhu H, Agno J E, Gunaratne P H, DeMayo F J, Matzuk M M. Deletion of Dicer in somatic cells of the female reproductive tract causes sterility. Molecular Endocrinology, 2008, 22(10): 2336-2352.
[16] Sirotkin A V, Ovcharenko D, Grossmann R, Lauková M, Mlyncek M. Identification of microRNAs controlling human ovarian cell steroidogenesis via a genome-scale screen. Journal of Cellular Physiology, 2009, 219(2):415-420.
[17] 徐盛玉, 王定越, 吴德. MicroRNA及其对哺乳动物繁殖的影响. 畜牧兽医学报, 2011, 42(6): 747-753.
Xu S Y, Wang D Y, Wu D. Effects of microRNA on the mammalian reproduction. Acta Veterinaria et Zootechnica Sinica, 2011, 42(6): 747-753. (in Chinese)
[18] Miles J R, McDaneld T G, Wiedmann R T, Cushman R A, Echternkamp S E, Vallet J L, Smith T P. MicroRNA expression profile in bovine cumulus-oocyte complexes: possible role of let-7 and miR-106a in the development of bovine oocytes. Animal Reproduction Science, 2012, 130(1-2):16-26.
[19] Kim V N. Small RNAs just got bigger: Piwi-interacting RNAs (piRNAs) in mammalian testes. Genes & Development, 2006, 20(15):1993-1997.
[20] Chen C Z, Li L, Lodish H F, Bartel D P. MicroRNAs modulate hematopoietic lineage differentiation. Science, 2004, 303(5654): 83-86.
[21] Chen J F, Mandel E M, Thomson J M, Wu Q, Callis T E, Hammond S M, Conlon F L, Wang D Z. The role of microRNA-1 and microRNA- 133 in skeletal muscle proliferation and differentiation. Nature Genetics, 2006, 38(2): 228-233.
[22] Mishima Y, Stahlhut C, Giraldez A J. miR-1-2 gets to the heart of the matter. Cell, 2007, 129(2): 247-249.
[23] Plasterk R H. MicroRNAs in animal development. Cell, 2006, 124(5):877-881.
[24] Yang H, Kong W, He L, Zhao J J, O'Donnell J D, Wang J, Wenham R M, Coppola D, Kruk PA, Nicosia S V, Cheng J Q. MicroRNA expression profiling in human ovarian cancer: miR-214 induces cell survival and cisplatin resistance by targeting PTEN. Cancer Research, 2008, 68(2): 425-433.
[25] 周莹, 朱英哲, 张素华, 王红梅, 王树玉, 杨晓葵. 卵巢早衰 microRNA 的差异表达及其作用. 中国优生与遗传杂志, 2011, 19(5): 20-22.
Zhou Y, Zhu Y Z, Zhang S H, Wang H M, Wang S Y, Yang X K. MicroRNA expression profiles in premature ovarian failure patients and its potential regulate functions. Chinese Journal of Birth Health & Heredity, 2011, 19(5): 20-22. (in Chinese)
[26] Tesfaye D, Worku D, Rings F, Phatsara C, Tholen E, Schellander K, Hoelker M. Identification and expression profiling of microRNAs during bovine oocyte maturation using heterologous approach. Molecular Reproduction and Development, 2009, 76(7): 665-677.
[27] Bachelot A, Monget P, Imbert-Bolloré P, Coshigano K, Kopchick J J, Kelly P A, Binart N. Growth hormone is required for ovarian follicular growth. Endocrinology, 2002, 143(10): 4104-4112.
[28] Mao J, Smith M F, Rucker E B, Wu G M, McCauley T C, Cantley T C, Prather R S, Didion B A, Day B N. Effect of epidermal growth factor and insulin-like growth factor I on porcine preantral follicular growth, antrum formation, and stimulation of granulosal cell proliferation and suppression of apoptosis in vitro. Journal of Animal Science, 2004, 82(7): 1967-1975.
[29] Beg M A, Bergfelt D R, Kot K, Ginther O J. Follicle selection in cattle: dynamics of follicular fluid factors during development of follicle dominance. Biology of Reproduction, 2002, 66(1): 120-126.
[30] Gregoraszczuk E ?, Ptak A, Wojciechowicz T, Nowak K. Action of IGF-I on expression of the long form of the leptin receptor (ObRb) in the prepubertal period and throughout the estrous cycle in the mature pig ovary. Journal of Reproduction and Development, 2007, 53(2): 289-295.
[31] Fang Q, Wang Y X, Zhou Y. Insulin-like growth factor binding protein 1 and human embryonic development during 6-10 gestational weeks. Chinese Medical Journal, 2004, 117(4): 488-491.
[32] Rhoads M L, Meyer J P, Kolath S J, Lamberson W R, Lucy M C. Growth hormone receptor, insulin-like growth factor (IGF)-1, and IGF-binding protein-2 expression in the reproductive tissues of early postpartum dairy cows. Journal of Dairy Science, 2008, 91(5): 1802-1813.
[33] 庞朋沙, 过倩萍, 伍会健. 细胞内 AhR 信号转导通路的机制研 究. 现代生物医学进展, 2010, 10(13): 2567-2570.
Pang P S, Guo Q P, Wu H J. Biological role of AhR signaling pathway. Progress in Modern Biomedicine, 2010, 10(13): 2567-2570. (in Chinese)
[34] 李淑晶, 刘文栋, 伍会健. 二英对雌激素受体的干扰作用. 生命科学, 2008, 20(5): 764-767.
Li S J, Liu W D, Wu H J. Interference of estrogen receptor by dioxin. Chinese Bulletin of Life Sciences, 2008, 20(5): 764-767. (in Chinese) |
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