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Progress in research on ubiquitination in the field of reproduction |
YU Jiarui1 CONG Jing2 ZHANG Ming3 WU Xiaoke2 |
1.Heilongjiang University of Chinese Medicine, Heilongjiang Province, Harbin 150040, China;
2.the First Department of Obstetrics and Gynecology, the First Affiliated Hospital of Heilongjiang University of Chinese Medicine, Heilongjiang Province, Harbin 150040, China;
3.Department of Infection Control Management, Wang Jing Hospital of China Academy of Chinese Medical Sciences, Beijing 100102, China |
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Abstract Ubiquitin is a highly evolutionarily conserved small protein found in most eukaryotic cells. Ubiquitin can form a three-step cascade through ubiquitin-activating enzyme E1, ubiquitin-binding enzyme E2, and ubiquitin-binding enzyme E3, respectively, and bind to the target protein, ubiquitinates the target protein, then passes through the ubiquitin-proteasome degradation pathway. The ubiquitinated target protein is broken down into smaller polypeptides and amino acids. Ubiquitination can affect the transcriptional activity of estrogen and progesterone receptors and participate in processes in the reproductive field such as oocyte, spermatogenesis and embryonic development. This article reviews recent research in the field of ubiquitination and reproduction, explores the role of ubiquitination in reproduction is of great significance for further mastering the development of germ cells and early embryo development, and provides a theoretical basis for the treatment of infertility and perfecting the reproductive system.
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[1] Zattas D,Hochstrasser M. Ubiquitin-dependent protein degradation at the yeast endoplasmic reticulum and nuclear envelope [J]. Crit Revi Biochem Mol Biol,2015,50(1):1-17.
[2] Hershko A,Ciechanover A. The Ubiquitin System for Protein Degradation [J]. Annu Rev Biochem,1992,61(1):761-807.
[3] Van NS,Vierstra RD. Multiubiquitin chains linked through lysine 48 are abundant in vivo and are competent intermediates in the ubiquitin proteolytic pathway [J]. J Biol Chem,1993,268(33):24766-24773.
[4] Dana U,Parker SJ,Nasveschuk CG,et al. Largazole and Its Derivatives Selectively Inhibit Ubiquitin Activating Enzyme(E1) [J]. PLoS One,2012,7(1):e29208.
[5] Stewart MD,Ritterhoff T,Klevit RE,et al. E2 enzymes:more than just middle men [J]. Cell Res,2016,26(4):423-440.
[6] Pruneda JN,Smith FD,Daurie A,et al. E2~Ub conjugates regulate the kinase activity of\r,Shigella\r,effector OspG during pathogenesis [J]. EMBO J,2014,33(5):437-449.
[7] Smit J,Sixma TK. RBR E3-ligases at work [J]. EMBO Rep,2014,15(2):142-154.
[8] 田烨,赵涵,陈子江.Cullin蛋白在生殖系统中的研究进展[J].中国医学科学院学报,2013,35(1):125-129.
[9] Ayyub C. Cullin-5 and cullin-2 play a role in the development of neuromuscular junction and the female germ line of Drosophila [J]. J Genet,2011,90(2):239-249.
[10] Perissi V,Aggarwal A,Glass C K,et al. A Corepressor/Coactivator Exchange Complex Required for Transcriptional Activation by Nuclear Receptors and Other Regulated Transcription Factors [J]. Cell,2004,116(4):511-526.
[11] Verma S,Ismail A,Gao X,et al. The Ubiquitin-Conjugating Enzyme UBCH7 Acts as a Coactivator for Steroid Hormone Receptors [J]. Mol Cell Biol,2004,24(19):8716-8726.
[12] Tan M,Li H,Sun Y. Endothelial deletion of Sag/Rbx2/Roc2 E3ubiquitin ligase causes embryonic lethality and blocks tumorangiogenesis [J]. Oncogene,2014,33(44):5211-5220.
[13] 金一枚,孙斯曼,闫菽灵,等.F-BOX蛋白家族在生殖领域的研究进展[J].国际生殖健康/计划生育杂志,2018, 37(5):43-46.
[14] 吴比,孙兆贵.泛素羧基末端水解酶在生殖细胞发生及受精过程中的作用[J].生殖与避孕,2014,34(12):1004-1008,1014.
[15] Mtango NR,Sutovsky M,Vandevoort CA,et al. Essential role of ubiquitin C-terminal hydrolases UCHL1 and UCHL3 in mammalian oocyte maturation [J]. J Cell Physiol,2012, 227(5):2022-2029.
[16] Gu YQ,Chen QJ,Gu Z,et al. Ubiquitin carboxyl-terminal hydrolase L1 contributes to the oocyte selective elimination in prepubertal mouse ovaries [J]. Sheng Li Xue Bao,2009,61(2):175-184.
[17] Jin Y,Yang M,Gao C,et al. Fbxo30 regulates chromosome segregation of oocyte meiosis [J]. Cell Mol Life Sci, 2019,76(11):2217-2229.
[18] Ben-Eliezer I,Pomerantz Y,Galiani D,et al. Appropriate expression of Ube2C and Ube2S controls the progression of the first meiotic division [J]. FASEB J,2015,29(11):4670-4681.
[19] Sutovsky P. Review:Sperm-oocyte interactions and their implications for bull fertility,with emphasis on the ubiquitin-proteasome system [J]. Animal,2018,12(s1):s121-s132.
[20] Lianhua D,Maoliang R,Zhi L,et al. The role of ubiquitin-proteasome pathway in spermatogenesis [J]. Hereditas,2016,38(9):791-800.
[21] Kerns K,Morales P,Sutovsky P. Regulation of Sperm Capacitation by the 26S Proteasome:An Emerging New Paradigm in Spermatology [J]. Biol Reprod,2016,94(5):117.
[22] 张国巍,蔡鸿财. 泛素-蛋白酶体系统与精子DNA损伤修复的研究进展[J].中华男科学杂志,2016,22(9):834-837.
[23] Zhang J,Su J,Hu S,et al. Correlation between ubiquitination and defects of bull spermatozoa and removal of defective spermatozoa using anti-ubiquitin antibody-coated magnetized beads [J]. Anim Reprod Sci,2018, 192:44-52.
[24] 胡七一,邓琼,张建文,等.去泛素化酶24基因在小鼠睾丸精子发生过程中的表达特征[J].中华男科学杂志,2017,23(11):963-968.
[25] 赵昍朋.泛素-蛋白酶体通路在男性生殖领域的研究进展[J].河北医科大学学报,2016,37(7):859-862.
[26] Chika H,Natsumi S,Seung-Wook S,et al. Ubiquitin-proteasome system modulates zygotic genome activation in early mouse embryos and influences full-term development [J]. J Reprod Dev,2018,64(1):65-74.
[27] Howard GC,Tansey WP. Interaction of Gcn4 with target gene chromatin is modulated by proteasome function [J]. Mol Biol Cell,2016,27(17):2735-2741.
[28] Sen R,Ferdoush J,Kaja A,et al. Fine-tuning of FACT by ubiquitin proteasome system in regulation of transcriptional elongation [J]. Mol Cell Biol,2016,36(11):1691-1703.
[29] 林杰,祁鸣.泛素化连接酶HUWE1在相关疾病中的研究进展[J].生命科学,2018,30(5):539-544.
[30] Chen LJ,Xu WM,Yang M,et al. HUWE1 plays important role in mouse preimplantation embryo development and the dysregulation is associated with poor embryo development in humans [J]. Sci Rep,2016,6(1):37928.
[31] Yi J,Lu G,Li L,et al. DNA damage-induced activation of CUL4B targets HUWE1 for proteasomal degradation [J]. Nucleic Acids Res,2015,43(9):4579-4590.
[32] Pawel G,Altmann ME,Adham IM,et al. Embryo implantation failure and other reproductive defects in Ube2q1-deficient female mice [J]. Reproduction,2013,145(1):45-56.
[33] 张孝玲,郑军.蛋白质SUMO化修饰循环通路在胚胎发育中的作用[J].国际妇产科学杂志,2017,44(6):605-609.
[34] Kobayashi M,Oshima S,Maeyashiki C,et al. The ubiquitin hybrid gene UBA52 regulates ubiquitination of ribosome and sustains embryonic development [J]. Sci Rep,2016,6:36780. |
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