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腭裂相关microRNA与信号通路的相互作用 被引量:7

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摘要 非综合征性唇腭裂是受多因素影响的先天性疾病,其发病机制仍不明确,一直是科学研究的热点。微小RNA(MicroRNA,miRNA)作为一种新型调控小分子,通过与靶基因的特定结合来调控基因的表达,继而影响信号通路的传导。研究发现,胚胎期miRNA在唇、腭等部位特异性表达,提示miRNA可能与颅面部畸形的发生有关。本文主要从腭裂相关的miRNA差异性表达,及其对信号通路的作用、
作者 王鑫 赵尔杨
出处 《口腔医学研究》 CAS CSCD 北大核心 2015年第5期528-530,共3页 Journal of Oral Science Research
基金 李嘉诚全国"重生行动"科研基金项目
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参考文献21

  • 1王国民.努力提高我国唇腭裂序列治疗的整体水平[J].中华口腔医学杂志,2004,39(5):353-355. 被引量:20
  • 2孟柳燕,J.W.Von den Hoff,边专.腭发育和腭裂形成中的局部调控因子[J].北京大学学报(医学版),2009,41(1):1-5. 被引量:2
  • 3Bartel DP. MieroRNAs; genomics, biogenesis, mechanism, and function [J]. Cell, 2004, 116(2) : 281-297.
  • 4Lewis BP, Shih IH, Jones-Rhoades MW, et al. Prediction of mammalian mieroRNA targets [J]. Cell, 2003, 115(7) 787-798.
  • 5Alvarez-Garcia I, Miska EA. MieroRNA funetions in ani- mal development and human disease [J]. Development, 2005, 132(21) : 4653-4662.
  • 6Eberhart JK, He X, Swartz ME, et al. MieroRNA Mirn140 modulates Pdgf signaling during palatogenesis [J]. Nat Gen- et, 2008, 40(3) : 290-298.
  • 7Wienholds E, Kloosterman WP, Miska E, et al. MicroRNA expression in zebrafish embryonic development [J]. Science, 2005, 309(5732) : 310-311.
  • 8Martinez-Alvarez C, Tudela C, P6rez-Miguelsanz J, et al. Medial edge epithelial eell fate during palatal fusion[J]. Dev Biol, 2000, 220(2) : 343-357.
  • 9Derynck R, Zhang YE. Smad-dependent and Smad-inde- pendent pathways in TGF-beta family signalling [J]. Na- ture, 2003, 425(6958) : 577-584.
  • 10Cui XM, Shaomi N, Chen J, et al. Overexpression of Smad2 in Tgf-beta3- null mutant mice rescues cleft palate [J]. Dev BioI, 2005, 278(1): 193-202.

二级参考文献127

  • 1胡庆,金辉喜,傅豫川.唇腭裂发病因素的logistic回归分析[J].口腔医学研究,2005,21(4):449-451. 被引量:3
  • 2Gritli-Linde A. Molecular control of secondary palate development [ J]. Dev Biol, 2007,301 (2) : 309 -326.
  • 3Ferguson MWJ. Palate development[ J]. Development, 1988,103 (Suppl) : 41 - 60.
  • 4Kaartinen V, Voncken JW, Shuler C, et al. Abnormal lung development and cleft palate in mice lacking TGF-beta 3 indicates defects of epithelialmesenchymal interaction [ J ]. Nat Genet, 1995,11 (4) : 415 - 421.
  • 5Proetzel G, Pawlowski SA, Wiles MV, et al. Transforming growth factor-beta 3 is required for secondary palate fusion [ J ]. Nat Genet, 1995,11 (4) : 409 -414.
  • 6Dudas M, Kim J, Li WY, et al. Epithelial and ectomesenchymal role of the type Ⅰ TGF-beta receptor ALK5 during facial morphogenesis and palatal fusion[J]. Dev Biol, 2006,296(2) : 298 -314.
  • 7Ding Hao, Wu Xiaoli, Bostrom H, et al. A specific requirement for PDGF-C in palate formation and PDGFR-alpha signaling [ J ]. Nat Genet, 2004,36(10) : 1111 -1116.
  • 8Xu Xun, Han Jun, Ito Y, et al. Cell autonomous requirement for Tgfbr2 in the disappearance of medial edge epithelium during palatal fusion [ J ]. Dev Biol, 2006,297( 1 ) : 238 - 248.
  • 9Rice R, Spencer-Dene B, Connor EC, et al. Disruption of Fgf10/Fgfr2b-coordinated epithelial-mesenchymal interactions causes cleft palate[ J]. J Clin Invest, 2004,113 (12) : 1692 - 1700.
  • 10Alappat SR, Zhang Zunyi, Suzuki K, et al. The cellular and molecular etiology of the cleft secondary palate in Fgf10 mutant mice[J]. Dev Biol, 2005,277( 1 ) : 102 - 113.

共引文献32

同被引文献41

  • 1Eunmi Choi,Ki-Chul Hwang.MicroRNAs as novel regulators of stem cell fate[J].World Journal of Stem Cells,2013,5(4):172-187. 被引量:8
  • 2Meng T, Shi B, Zheng Q, et al. Clinical and epidemiologic studies of nonsyndromic cleft lip and palate in china., analysis of 4268 cases [J]. Ann Plast Surg,2006,57(3) : 264-269.
  • 3Warner DR, Mukhopadhyay P, Brock G, et al. MicroRNA expression profiling of the developing routine upper lip [J]. Dev Growth Differ, 2014, 56(6) : 434-447.
  • 4Cadigan KM, Nusse R. Wnt signaling., a common theme ir animal development [J]. Genes Dev, 1997,11(24) : 3286 - 3305.
  • 5Bejsovee A. Wnt pathway activation: new relations and loca- tions [J]. Cell,2005,120(1) : 11-14.
  • 6Dale RM, Sisson BE, Topczewski J. The emerging role of Wnt/FCP signaling in organ formation [J]. Zebrafish,2009, 6(1) : 9-14.
  • 7Eberhart JK, He X, Swartz ME, et al. MicroRNA Mirn140 modulates Pdgf signaling during palatogenesis [J]. Nat Gen- et, 2008, 40(3) : 290-298.
  • 8Shin JO, Lee JM, Cho KW, et al. MiR-200h is involved in Tgf-β signaling to regulate mammalian palate development [J]. Histochem Ceil Biol, 2012, 137(1) : 67-78.
  • 9He F, Xiong W, Yu X, et al. Wntha regulates directional cell migration and cell proliferation via Rot2 - mediated nonca- nonieal pathway in mammalian palate development [J]. De- velopment, 2008,135 (23) : 3871 - 3879.
  • 10Lin C, Fisher AV, Yin Y, et al. The inductive role of Wnt-β-Catenin signaling in the formation of oral apparatus [J]. Dev Biol,2011,356(1) : 40-50.

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