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Protein kinase C regulates neurite outgrowth in spinal cord neurons

蛋白激酶C调节脊髓神经元突起的生长(英文)
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摘要 Objective The functional roles of protein kinase C (PKC) in the neurite outgrowth and nerve regeneration remain controversial. The present study was aimed to investigate the role of PKC in neurite outgrowth, by studying their regulatory effects on neurite elongation in spinal cord neurons in vitro. Methods The anterior-horn neurons of spinal cord from embryonic day 14 (E14) Sprague-Dawley (SD) rats were dissociated, purified and cultured in the serum-containing medium. The ratio of membrane-PKC (mPKC) activity to cytoplasm-PKC (cPKC) activity (m/c-PKC) was studied at different time points during culture. Results Between 3-11 d of culture, the change of m/c-PKC activity ratio and PKC-βⅡ expression in the neurite were both significantly correlated with neurite outgrowth (r=0.95, P 〈 0.01; r=0.73, P 〈 0.01, respectively). Moreover, PMA, an activator of PKC, induced a dramatic elevation in the m/c-PKC activity ratio, accompanied with the increase in neurite length (r=-0.99, P 〈 0.01). In contrast, GF 109203X, an inhibitor of PKC, significantly inhibited neurite elongation, which could not be reversed by PMA. Conclusion PKC activity may be important in regulating neurite outgrowth in spinal cord neurons, and βⅡ isoform of PKC probably plays a major role in this process. 目的关于蛋白激酶C(PKC)在神经元突起生长和神经再生中的作用,目前仍存有争议。本研究主要观察PKC对离体培养的脊髓神经元生长的调节作用,旨在阐明PKC对突起生长的调节作用。方法分离纯化胎龄14天(E14)的SD胎鼠的脊髓前角神经元,进行原代培养,并检测不同时相点膜/浆PKC活性(m/c-PKCactivity)的比值。结果神经元培养3-11d期间,神经元内m/c-PKC比值以及PKC-βII在突起中的表达水平均与突起生长呈显著相关关系(r=0.95,P<0.01;r=0.73,P<0.01)。此外,PKC激动剂PMA能显著提高m/c-PKC比值,且与神经突起的生长一致(r=0.99,P<0.01)。而PKC抑制剂GF109203X则能显著抑制突起生长,且不被PMA作用所逆转。结论PKC的活性在脊髓神经元突起生长调节中具有重要作用,其中βII亚型可能扮演重要角色。
出处 《Neuroscience Bulletin》 SCIE CAS CSCD 2010年第2期117-125,共9页 神经科学通报(英文版)
基金 supported by the National Natural Science Foundation of China (No. 39570373)
关键词 protein kinase C spinal cord neurons neurite outgrowth in vitro 蛋白激酶C 脊髓神经元 突起生长 离体
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  • 1Aigner L, Caroni P. Depletion of 43-kD growth-associated protein in primary sensory neurons leads to diminished formation and spreading of growth cones. J Cell Biol 1993, 123: 417-429.
  • 2Benowitz LI, Routtenberg A. GAP-43: an intrinsic determinant of neuronal development and plasticity. Trends Neurosci 1997, 20(2): 84-91.
  • 3Bonsall J, Rehder V. Regulation of chick dorsal root ganglion growth corn filopodia by protein kinase C. Brain Res 1999, 839: 120-132.
  • 4Camu W, Henderson CE. Purification of embryonic rat motoneurons by panning on a monoclonal antibody to the low-affinity NGF receptor. J Neurosci Methods 1992, 44: 59-70.
  • 5Campenot RB, Walji AH, Draker DD. Effects of sphingosine, staurosporine, and phorbol ester on neurites of rat sympathetic neurons growing in compartmented cultures. J Neurosci 1991, 11: 1126-1139.
  • 6Campenot RB, Draker DD, Sanger DL. Evidence that protein kinase C activities involved in regulating neurite growth are localized to distal neurites. J Neurochem 1994, 63: 868-878.
  • 7Casabona G. Intracellular signal modulation: a pivotal role for protein kinase C. Prog Neuro Psychopharmacol Biol Psychiatry 1997, 21: 407-425.
  • 8Dent EW, Meiri KF. GAP-43 phosphorylation is dynamically regulated in individual growth cones. J Neurobiol 1992, 23: 1037- 1053.
  • 9Disatnik MH, Rando TA. Integrin-mediated muscle cell spreading: the role of protein kinase C in outside-in and inside-out signaling and evidence of integrin cross-talk. J Biol Chem 1999, 274: 32486-32492.
  • 10Eble DM, Strait JB, Govindarajan G, Lou J, Byron KL, Samarel AM. Endothelin-induced cardiac myocyte hypertrophy: role for focal adhesion kinase. Am J Physiol 2000, 278: H1695-H1707.

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