国际生殖健康/计划生育 ›› 2021, Vol. 40 ›› Issue (6): 476-480.doi: 10.12280/gjszjk.20210363
收稿日期:
2021-08-12
出版日期:
2021-11-15
发布日期:
2021-11-30
通讯作者:
张丛
E-mail:zhangxinyunlife@163.com
基金资助:
LI Hong-wanyu, YANG Jie-qiong, ZHANG Cong()
Received:
2021-08-12
Published:
2021-11-15
Online:
2021-11-30
Contact:
ZHANG Cong
E-mail:zhangxinyunlife@163.com
摘要:
子宫内膜蜕膜化是子宫内膜在排卵期后转化为分泌期至胚胎着床期间发生的持续的形态和功能变化,对妊娠的建立、维持及内膜的周期性变化至关重要。子宫内膜基质细胞的蜕膜化是其中最重要的改变。这一过程由孕酮和环磷酸腺苷信号驱动,伴随着一系列标志性分子的表达改变。微小RNA(miRNA)在基因表达的转录后调控中起着广泛并且非常重要的作用。大量研究显示,miRNA通过调控胰岛素样生长因子结合蛋白1(IGFBP1)、催乳素(PRL)、Krüppel样因子12(KLF12)和同源框基因A10(HOXA10)等基因表达,在子宫内膜蜕膜化及相关疾病发病中发挥重要的作用。现就miRNA合成酶和一些miRNA在蜕膜化中发挥的作用及其分子机制进行综述,以期为蜕膜化及其相关疾病,如反复种植失败、子宫内膜异位症和子痫前期等的诊疗提供更多的理论依据。
李洪菀菀, 杨洁琼, 张丛. 微小RNA在子宫内膜蜕膜化中的功能[J]. 国际生殖健康/计划生育, 2021, 40(6): 476-480.
LI Hong-wanyu, YANG Jie-qiong, ZHANG Cong. Research Progress on the Function of MicroRNA in Decidualization[J]. Journal of International Reproductive Health/Family Planning, 2021, 40(6): 476-480.
[1] |
王斌, 高明霞, 沈豪飞, 等. 间充质-上皮转化在女性生殖系统中的研究进展[J]. 国际生殖健康/计划生育杂志, 2021, 40(1):44-48. doi: 10.12280/gjszjk.20200339.
doi: 10.12280/gjszjk.20200339 |
[2] |
Ng SW, Norwitz GA, Pavlicev M, et al. Endometrial Decidualization: The Primary Driver of Pregnancy Health[J]. Int J Mol Sci, 2020, 21(11):4092. doi: 10.3390/ijms21114092.
doi: 10.3390/ijms21114092 URL |
[3] |
Jarrell J. The significance and evolution of menstruation[J]. Best Pract Res Clin Obstet Gynaecol, 2018, 50:18-26. doi: 10.1016/j.bpobgyn.2018.01.007.
doi: S1521-6934(18)30025-7 pmid: 29530426 |
[4] |
Mori MA, Ludwig RG, Garcia-Martin R, et al. Extracellular miRNAs: From Biomarkers to Mediators of Physiology and Disease[J]. Cell Metab, 2019, 30(4):656-673. doi: 10.1016/j.cmet.2019.07.011.
doi: 10.1016/j.cmet.2019.07.011 URL |
[5] |
Correia de Sousa M, Gjorgjieva M, Dolicka D, et al. Deciphering miRNAs′ Action through miRNA Editing[J]. Int J Mol Sci, 2019, 20(24):6249. doi: 10.3390/ijms20246249.
doi: 10.3390/ijms20246249 URL |
[6] |
Pu M, Chen J, Tao Z, et al. Regulatory network of miRNA on its target: coordination between transcriptional and post-transcriptional regulation of gene expression[J]. Cell Mol Life Sci, 2019, 76(3):441-451. doi: 10.1007/s00018-018-2940-7.
doi: 10.1007/s00018-018-2940-7 URL |
[7] |
Chen L, Heikkinen L, Wang C, et al. Trends in the development of miRNA bioinformatics tools[J]. Brief Bioinform, 2019, 20(5):1836-1852. doi: 10.1093/bib/bby054.
doi: 10.1093/bib/bby054 URL |
[8] |
Xiao M, Li J, Li W, et al. MicroRNAs activate gene transcription epigenetically as an enhancer trigger[J]. RNA Biol, 2017, 14(10):1326-1334. doi: 10.1080/15476286.2015.1112487.
doi: 10.1080/15476286.2015.1112487 pmid: 26853707 |
[9] |
Treiber T, Treiber N, Meister G. Regulation of microRNA biogenesis and its crosstalk with other cellular pathways[J]. Nat Rev Mol Cell Biol, 2019, 20(1):5-20. doi: 10.1038/s41580-018-0059-1.
doi: 10.1038/s41580-018-0059-1 |
[10] |
Loke H, Rainczuk K, Dimitriadis E. MicroRNA Biogenesis Machinery Is Dysregulated in the Endometrium of Infertile Women Suggesting a Role in Receptivity and Infertility[J]. J Histochem Cytochem, 2019, 67(8):589-599. doi: 10.1369/0022155419854064.
doi: 10.1369/0022155419854064 URL |
[11] |
Estella C, Herrer I, Moreno-Moya JM, et al. miRNA signature and Dicer requirement during human endometrial stromal decidualization in vitro[J]. PLoS One, 2012, 7(7):e41080. doi: 10.1371/journal.pone.0041080.
doi: 10.1371/journal.pone.0041080 URL |
[12] |
Zhang C, Long X, Ding Y, et al. Expression of DROSHA in the Uterus of Mice in Early Pregnancy and Its Potential Significance During Embryo Implantation[J]. Reprod Sci, 2016, 23(2):154-162. doi: 10.1177/1933719115584444.
doi: 10.1177/1933719115584444 URL |
[13] |
Hu SJ, Ren G, Liu JL, et al. MicroRNA expression and regulation in mouse uterus during embryo implantation[J]. J Biol Chem, 2008, 283(34):23473-23484. doi: 10.1074/jbc.M800406200.
doi: 10.1074/jbc.M800406200 URL |
[14] |
Yan Q, Yan G, Zhang C, et al. miR-21 reverses impaired decidualization through modulation of KLF12 and NR4A1 expression in human endometrial stromal cells[J]. Biol Reprod, 2019, 100(5):1395-1405. doi: 10.1093/biolre/ioz026.
doi: 10.1093/biolre/ioz026 URL |
[15] |
Lv C, Yu WX, Wang Y, et al. MiR-21 in extracellular vesicles contributes to the growth of fertilized eggs and embryo development in mice[J]. Biosci Rep, 2018, 38(4):BSR20180036. doi: 10.1042/BSR20180036.
doi: 10.1042/BSR20180036 |
[16] |
Su L, Liu R, Cheng W, et al. Expression patterns of microRNAs in porcine endometrium and their potential roles in embryo implantation and placentation[J]. PLoS One, 2014, 9(2):e87867. doi: 10.1371/journal.pone.0087867.
doi: 10.1371/journal.pone.0087867 URL |
[17] |
Zhang Q, Zhang H, Jiang Y, et al. MicroRNA-181a is involved in the regulation of human endometrial stromal cell decidualization by inhibiting Krüppel-like factor 12[J]. Reprod Biol Endocrinol, 2015, 13:23. doi: 10.1186/s12958-015-0019-y.
doi: 10.1186/s12958-015-0019-y URL |
[18] |
Wijaya JC, Khanabdali R, Georgiou HM, et al. Ageing in human parturition: impetus of the gestation clock in the decidua[J]. Biol Reprod, 2020, 103(4):695-710. doi: 10.1093/biolre/ioaa113.
doi: 10.1093/biolre/ioaa113 URL |
[19] |
Zhao F, Guo Y, Shi Z, et al. hsa_circ_001946 elevates HOXA10 expression and promotes the development of endometrial receptivity via sponging miR-135b[J]. Diagn Pathol, 2021, 16(1):44. doi: 10.1186/s13000-021-01104-4.
doi: 10.1186/s13000-021-01104-4 URL |
[20] |
Riyanti A, Febri RR, Zakirah SC, et al. Suppressing HOXA-10 Gene Expression by MicroRNA 135b During the Window of Implantation in Infertile Women[J]. J Reprod Infertil, 2020, 21(3):217-221.
pmid: 32685419 |
[21] |
Wang Z, Liu Y, Liu J, et al. ATF3 deficiency impairs the proliferative-secretory phase transition and decidualization in RIF patients[J]. Cell Death Dis, 2021, 12(4):387. doi: 10.1038/s41419-021-03679-8.
doi: 10.1038/s41419-021-03679-8 URL |
[22] |
Petracco R, Dias A, Taylor H, et al. Evaluation of miR-135a/b expression in endometriosis lesions[J]. Biomed Rep, 2019, 11(4):181-187. doi: 10.3892/br.2019.1237.
doi: 10.3892/br.2019.1237 |
[23] |
Sirohi VK, Gupta K, Kapoor R, et al. MicroRNA-145 targets Smad1 in endometrial stromal cells and regulates decidualization in rat[J]. J Mol Med(Berl), 2019, 97(4):509-522. doi: 10.1007/s00109-019-01744-6.
doi: 10.1007/s00109-019-01744-6 |
[24] |
Revel A, Achache H, Stevens J, et al. MicroRNAs are associated with human embryo implantation defects[J]. Hum Reprod, 2011, 26(10):2830-2840. doi: 10.1093/humrep/der255.
doi: 10.1093/humrep/der255 URL |
[25] |
Bashti O, Noruzinia M, Garshasbi M, et al. miR-31 and miR-145 as Potential Non-Invasive Regulatory Biomarkers in Patients with Endometriosis[J]. Cell J, 2018, 20(1):84-89. doi: 10.22074/cellj.2018.4915.
doi: 10.22074/cellj.2018.4915 |
[26] |
Graham A, Holbert J, Nothnick WB. miR-181b-5p Modulates Cell Migratory Proteins, Tissue Inhibitor of Metalloproteinase 3, and Annexin A2 During In Vitro Decidualization in a Human Endometrial Stromal Cell Line[J]. Reprod Sci, 2017, 24(9):1264-1274. doi: 10.1177/1933719116682877.
doi: 10.1177/1933719116682877 URL |
[27] |
Wang XB, Qi QR, Wu KL, et al. Role of osteopontin in decidualization and pregnancy success[J]. Reproduction, 2018, 155(5):423-432. doi: 10.1530/REP-17-0782.
doi: 10.1530/REP-17-0782 URL |
[28] |
Qian K, Hu L, Chen H, et al. Hsa-miR-222 is involved in differentiation of endometrial stromal cells in vitro[J]. Endocrinology, 2009, 150(10):4734-4743. doi: 10.1210/en.2008-1629.
doi: 10.1210/en.2008-1629 pmid: 19589872 |
[29] |
Lee JY, Ahn EH, Kim JO, et al. Associations between microRNA (miR-25, miR-32, miR-125, and miR-222) polymorphisms and recurrent implantation failure in Korean women[J]. Hum Genomics, 2019, 13(1):68. doi: 10.1186/s40246-019-0246-y.
doi: 10.1186/s40246-019-0246-y URL |
[30] |
Tochigi H, Kajihara T, Mizuno Y, et al. Loss of miR-542-3p enhances IGFBP-1 expression in decidualizing human endometrial stromal cells[J]. Sci Rep, 2017, 7:40001. doi: 10.1038/srep40001.
doi: 10.1038/srep40001 pmid: 28051155 |
[31] |
Kimura M, Kajihara T, Mizuno Y, et al. Loss of high-mobility group N5 contributes to the promotion of human endometrial stromal cell decidualization[J]. Reprod Med Biol, 2018, 17(4):493-499. doi: 10.1002/rmb2.12226.
doi: 10.1002/rmb2.12226 URL |
[32] |
Qu X, Fang Y, Zhuang S, et al. Micro-RNA miR-542-3p suppresses decidualization by targeting ILK pathways in human endometrial stromal cells[J]. Sci Rep, 2021, 11(1):7186. doi: 10.1038/s41598-021-85295-2.
doi: 10.1038/s41598-021-85295-2 URL |
[33] |
Yang Q, Zhang X, Shi Y, et al. Increased Expression of NDRG3 in Mouse Uterus During Embryo Implantation and in Mouse Endometrial Stromal Cells During In Vitro Decidualization[J]. Reprod Sci, 2018, 25(8):1197-1207. doi: 10.1177/1933719117737843.
doi: 10.1177/1933719117737843 URL |
[34] |
Pei T, Liu C, Liu T, et al. miR-194-3p Represses the Progesterone Receptor and Decidualization in Eutopic Endometrium From Women With Endometriosis[J]. Endocrinology, 2018, 159(7):2554-2562. doi: 10.1210/en.2018-00374.
doi: 10.1210/en.2018-00374 URL |
[35] |
Zhou M, Fu J, Xiao L, et al. miR-196a overexpression activates the MEK/ERK signal and represses the progesterone receptor and decidualization in eutopic endometrium from women with endometriosis[J]. Hum Reprod, 2016, 31(11):2598-2608. doi: 10.1093/humrep/dew223.
doi: 10.1093/humrep/dew223 URL |
[36] |
Chakrabarty A, Tranguch S, Daikoku T, et al. MicroRNA regulation of cyclooxygenase-2 during embryo implantation[J]. Proc Natl Acad Sci U S A, 2007, 104(38):15144-15149. doi: 10.1073/pnas.0705917104.
doi: 10.1073/pnas.0705917104 pmid: 17848513 |
[37] |
Sztachelska M, Ponikwicka-Tyszko D, Sokolowska G, et al. Oxytocin antagonism reverses the effects of high oestrogen levels and oxytocin on decidualization and cyclooxygenase activity in endometrial tissues[J]. Reprod Biomed Online, 2019, 39(5):737-744. doi: 10.1016/j.rbmo.2019.06.002.
doi: S1472-6483(19)30589-9 pmid: 31548121 |
[38] |
Yang Y, Xie Y, Wu M, et al. Expression of mmu-miR-96 in the endometrium during early pregnancy and its regulatory effects on stromal cell apoptosis via Bcl2[J]. Mol Med Rep, 2017, 15(4):1547-1554. doi: 10.3892/mmr.2017.6212.
doi: 10.3892/mmr.2017.6212 URL |
[39] |
Zhang Q, Ni T, Dang Y, et al. MiR-148a-3p may contribute to flawed decidualization in recurrent implantation failure by modulating HOXC8[J]. J Assist Reprod Genet, 2020, 37(10):2535-2544. doi: 10.1007/s10815-020-01900-9.
doi: 10.1007/s10815-020-01900-9 URL |
[40] |
Soni UK, Chadchan SB, Gupta RK, et al. miRNA-149 targets PARP-2 in endometrial epithelial and stromal cells to regulate the trophoblast attachment process[J]. Mol Hum Reprod, 2021, 27(6):gaab039. doi: 10.1093/molehr/gaab039.
doi: 10.1093/molehr/gaab039 URL |
[1] | 苗贺瑱, 刘佳佳, 闫宇, 马国霞, 王晓慧. 一例罕见的宫颈子宫内膜异位症[J]. 国际生殖健康/计划生育杂志, 2024, 43(6): 475-478. |
[2] | 饶慧, 卢娇兰, 周欢, 李雄. 子宫内膜中肾样腺癌累及宫颈管间质一例[J]. 国际生殖健康/计划生育杂志, 2024, 43(5): 410-414. |
[3] | 谢娱新, 王瑞雪, 陈梦娜, 储继军. 膜联蛋白A家族在母胎界面及不良妊娠中的作用[J]. 国际生殖健康/计划生育杂志, 2024, 43(5): 430-434. |
[4] | 吴春蕾, 赵晓丽, 邱韵桓, 王宝娟, 董融, 李凯茜, 夏天. 结合基因芯片与单细胞转录组鉴定反复种植失败患者子宫内膜的细胞间通讯[J]. 国际生殖健康/计划生育杂志, 2024, 43(4): 265-273. |
[5] | 吴宇轩, 孟子凡, 董丽, 季慧. 宫腔镜子宫内膜息肉手术后冻融胚胎移植时机对妊娠结局的影响[J]. 国际生殖健康/计划生育杂志, 2024, 43(4): 274-278. |
[6] | 王晶, 王晓慧. 子宫内膜小细胞神经内分泌癌一例并文献复习[J]. 国际生殖健康/计划生育杂志, 2024, 43(3): 212-215. |
[7] | 姜乐然, 张园, 王琳, 刁飞扬. 人类子宫内膜的单细胞组学研究进展[J]. 国际生殖健康/计划生育杂志, 2024, 43(3): 216-221. |
[8] | 梁越, 董杰, 肖西峰, 王晓红. miR-202在生殖调控中的研究进展[J]. 国际生殖健康/计划生育杂志, 2024, 43(3): 228-233. |
[9] | 高朝阳, 章宁晴, 陈琼华, 吴荣锋. 环状RNA在子宫内膜异位症不孕患者卵泡颗粒细胞中的作用[J]. 国际生殖健康/计划生育杂志, 2024, 43(3): 243-248. |
[10] | 王芳, 万桃, 杨永秀. 2型糖尿病相关子宫内膜癌与肠道菌群相关性的研究进展[J]. 国际生殖健康/计划生育杂志, 2024, 43(3): 249-253. |
[11] | 叶霖, 侯志金, 孟昱时. 西罗莫司在生殖领域的研究进展[J]. 国际生殖健康/计划生育杂志, 2024, 43(2): 132-137. |
[12] | 闻鑫, 赵晓丽, 栾祖乾, 夏天. 母胎界面免疫代谢微环境调节胚胎着床的研究进展[J]. 国际生殖健康/计划生育杂志, 2024, 43(2): 138-143. |
[13] | 楚漫微, 陈欢欢, 王倩, 王祎玟, 李丹, 杨淑珺, 张翠莲. miR-20a在妇科常见恶性肿瘤中的作用机制[J]. 国际生殖健康/计划生育杂志, 2024, 43(2): 172-176. |
[14] | 任缘, 孟昱时. 薄型子宫内膜的病理生理特征和治疗的研究进展[J]. 国际生殖健康/计划生育杂志, 2024, 43(1): 58-62. |
[15] | 王洁, 马翔. 尿酸与女性生殖系统疾病及妊娠结局的相关性[J]. 国际生殖健康/计划生育杂志, 2024, 43(1): 63-67. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||