山东大学耳鼻喉眼学报 ›› 2016, Vol. 30 ›› Issue (2): 98-101.doi: 10.6040/j.issn.1673-3770.0.2015.550
王晶1,王雪松2综述,薛金梅3审校
WANG Jing1, WANG Xuesong2, XUE Jinmei
摘要: 纤毛广泛分布于机体多种类型细胞表面,在体内发挥着重要的生理作用,其长度异常必定导致纤毛功能的异常,进而导致纤毛相关疾病;纤毛长度受到多种因素如纤毛内转运机制、细胞周期、相关基因及信号通路的影响,其中信号通路包括NF-κB、Wnt、Shh、Notch、第二信使等,了解纤毛长度信号调节机制对相关疾病的诊疗具有指导意义。
中图分类号:
[1] 矫健,张罗.纤毛研究进展[J].首都医科大学学报, 2009,30(1):70-74. JIAO Jian, ZHANG Luo. Progress of study on cilia[J]. J Cap Med Univ, 2009, 30(1):70-74. [2] 曹木青,潘俊敏.纤毛及纤毛相关疾病研究进展[J].中国细胞生物学学报,2012,34(9):849-856. [3] BAI Shang-jie, JIN Shun-ji, JIANG Xianl, et al. Morphological observation of mucosa ciliary of bulla and upper respiratory tract in mice[J].延边大学医学学报,2004, 27(4):241-242. [4] Alexandre Benmerah, Bénédicte Durand, Rachel H Giles, et al. The more we know, the more we have to discover: an exciting future for understanding cilia and ciliopathies,2015, 4(1):5. [5] 曹木青.衣藻纤毛长度调控机制的研究[D].北京:清华大学,2013:14-21. [6] 刘建国,刘月辉.变应性鼻炎大鼠鼻黏膜纤毛超微结构和鼻症状变化的研究[J].临床耳鼻咽喉头颈外科杂志,2010, 24(8):365-367. LIU Jianguo, LIU Yuehui. Nasal ultrastructure ciliats and symptoms changing in rat model of allergic rhinitis[J]. Journal of Clinical Otorhinolaryngology Head and Neck Surgery, 2010, 24(8):365-367. [7] 赵建东,王彦君,王世振,等.NF-κB及其相关分子在变应性鼻炎中的作用[J].临床耳鼻咽喉头颈外科杂志,2009,23(14):668-672. [8] Michael Lattke, Alexander Magnutzki, Paul Walther, et al. Nuclear factor κB activation impairs ependymal ciliogenesis and links neuroinflammation to hydrocephalus formation[J]. The Journal of Neuroscience, 2012, 32(34):11511-11523. [9] 薛金梅,赵长青,解军,等. 变应性鼻炎鼻黏膜组织中NF-κB p50表达及其与DNA结合活性的研究[J].临床耳鼻咽喉头颈外科杂志,2010,24(11):498-501. XUE Jinmei, ZHAO Changqing, XIE Jun, et al. Expression and DNA binding activity of NF-κB p50 innasalmucosal tissue of seasonal allergic rhinitis[J]. Journal of Clinical Otorhinolaryngology Head and Neck Surgery, 2010, 24(11):498-501. [10] 薛金梅,王雪松. FGF-10和NF-κBp65在变应性鼻炎鼻黏膜中的表达及相关性研究[D].太原:山西医科大学,2013:6-18. [11] May-Simera H L, Kelley M W. Cilia, Wnt signaling, and the cytoskeleton[J].Cilia, 2012,1(1):7. [12] Wilson N F, Lefebvre P A. Regulation of flagellar assembly by glycogensynthase kinase 3 in Chlamydomonas reinhardtii[J]. Eukaryotic Cell, 2004, 3(5):1307-1319. [13] Caron A, Xu X, Lin X. Wnt/β-catenin signaling directly regulates Foxj1 expression and ciliogenesis in zebrafish Kupffers vesicle[J]. Development, 2012, 139(3):514-524. [14] Simons M, Gloy J, Ganner A, et al. Inversin, the gene product mutated in nephronophthisistype II, functions as a molecular switch between Wnt signaling pathways[J]. Nat Genet, 2005, 37(5):537-543. [15] Sfakianos J, Togawa A, Maday S, et al. Par3 functions in the biogenesis of theprimary cilium in polarized epithelial cells[J]. J Cell Biol, 2007, 179(6):1133-1140. [16] Goetz S C, Anderson K V. The primary cilium: a signalling centre during vertebrate development[J].Nat Rev Genet, 2010, 11(5):331-344. [17] Liem K F, Ashe A, He M. The IFT-A complex regulates Shh signaling through cilia structure and membrane protein trafficking[J].J Cell Biol, 2012, 197(6):789-800. [18] Marcet B, Chevalier B, Coraux C, et al. MicroRNA-based silencing of DeltaNotch signaling promotes multiple cilia formation[J]. Cell Cycle, 2011, 10(17):2858-2864. [19] Lopes S S, Lourenco R, Pacheco L, et al. Notch signalling regulates left-rightasymmetry through ciliary length control[J]. Development, 2010, 137:3625-3632. [20] Fasanol S, Brambilla R. Ras-ERK signaling in behavior: oldquestions and new perspectives[J]. Front Behav Neurosci, 2011, 5:79. [21] Majeed S A, Moloney B C, Nauli S M. Mechanisms regulating cilia growth and cilia function in endothelial cells[J]. Cell Mol Life Sci, 2012, 69(1):165-173. [22] Krejci P, Prochazkova J, Bryja V, et al. Molecular pathology of the fibroblastgrowth factor family[J]. Hum Mutat, 2009, 30(9):1245-1255. [23] Neugebauer J M, Amack J D, Peterson A G, et al. FGF signalling during embryodevelopment regulates cilia length in diverse epithelia[J]. Nature, 2009, 458(7238):652-654. [24] Low S H, Roche P A, Anderson H A, et al. Targeting of SNAP-23 and SNAP-25 in polarized epithelial cells[J]. Biol Chem, 1998, 273(6):3422-3430. [25] Ou Y, Ruan Y, Cheng M, et al. Adenylate cyclase regulates elongation of mammalianprimary cilia[J]. Exp Cell Res, 2009, 315(16):2802-2817. [26] Marquardt B, Frith D, Stabel S. Signalling from TPA to MAP kinase requires protein kinase C, raf and MEK: reconstitution of the signalling pathway in vitro[J]. Oncogene, 1994, 9(11):3213-3218. [27] Klemke M, Kramer E, Konstandin M H, et al. An MEK-cofilin signalling module controls migration of human T cells in 3D but not 2D environments[J]. EMBO J, 2010, 29(17):2915-2929. [28] Nebl G, Fischer S, Penzel R, et al. Dephosphorylation of cofilin is regulated through Ras and requires the combined activities of the Ras-effectors MEK and PI3K[J]. Cell Signal, 2004, 16(2):235-243. [29] Oleinik N V, Krupenko N I, Krupenko S A. ALDH1L1 inhibits cell motility via dephosphorylation of cofil in by PP1 and PP2A[J]. Oncogene, 2010, 29(47):6233-6244. |
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