[1] Nicolas CS, Amici M, Bortolotto ZA, et al. The role of JAK-STAT signaling within the CNS [J]. JAKSTAT, 2013, 2(1):e22925.
[2] Yang X, Chung D, Cepko CL. Molecular cloning of the murine JAK1 protein tyrosine kinase and its expression in the mouse central nervous system [J]. J Neurosci, 1993, 13 (7):3006-3017.
[3] Sánchez MP, Tapley P, Saini SS, et al. Multiple tyrosine protein kinases in rat hippocampal neurons: isolation of Ptk-3, a receptor expressed in proliferative zones of the developing brain [J]. Proc Natl Acad Sci USA, 1994, 91 (5):1819-1823.
[4] Bonni A, Sun Y, Nadalvicens M, et al. Regulation of gliogenesis in the central nervous system by the JAK-STAT signaling pathway[J]. Science, 1997, 278(5337):477-483.
[5] Lee CH, Tan KL, Cheah PS, et al. Potential role of JAK-STAT signaling pathway in the neurogenic-to-gliogenic shift in down syndrome Brain [J]. Neural Plasticity, 2016, 2016(11):7434191-7434202.
[6] Gauzzi MC, Velazquez L, Mckendry R, et al. Interferon-dependent activation of TYK2 requires phosphorylation of positive regulatory tyrosines by another kinase[J]. J Biol Chem, 1996, 271 (34):20494-20500.
[7] Feng J, Witthuhn BA, Matsuda T, et al. Activation of JAK2 catalytic activity requires phosphorylation of Y1007 in the kinase activation loop [J]. Mol Cell Biol, 1997, 17 (5):2497-2501.
[8] Fujitani Y, Hibi M, Fukada T, et al. An alternative pathway for STAT activation that is mediated by the direct interaction between JAK and STAT[J]. Oncogene, 1997, 14(7):751-761.
[9] Frank SJ, Gilliland G, Kraft AS, et al. Interaction of the growth hormone receptor cytoplasmic domain with the JAK2 tyrosine kinase[J]. Endocrinology, 1994,135(5):2228-2239.
[10]Duhé RJ, Farrar WL.Structural and mechanistic aspects of Janus kinases: how the two-faced god wields a double-edged sword [J]. J Interferon Cytokine Res, 1998,18 (1):1-15.
[11]Quelle FW, Sato N, Witthuhn BA, et al. JAK2 associates with the beta c chain of the receptor for granulocyte-macrophage colony-stimulating factor, and its activation requiresthe membrane-proximal region [J]. Mol Cellr Biol,1994,14(7):4335-4341.
[12]Lai CF, Ripperger J, Morella KK, et al. Separate signaling mechanisms are involved in the control of STAT protein activation and gene regulation via the interleukin 6 response element by the box 3 motif of gp130 [J]. J Biol Chem, 1995, 270 (25):14847-14850.
[13]Rawlings JS, Kristin M, Rosler, et al. The JAK/STAT signaling pathway[J]. J Cell Sci, 2004,117 (8):1281-1283.
[14]Defraja C, Conti L, Magrassi L, et al. Members of the JAK/STAT proteins are expressed and regulated during development in the mammalian forebrain[J]. J Neurosci Res, 1998,54(3):320-330.
[15]Kim YH, Chung JI, Woo HG, et al. Differential regulation of proliferation and differentiation in neural precursor cells by the JAK pathway[J]. Stem Cells, 2010, 28(10): 1816-182.
[16]Defraja C, Conti L, Govoni S, et al. STAT signalling in the mature and aging brain[J]. Int J Dev Neurosci, 2000,18(4-5):439-446.
[17]Yao B, Jin P. Unlocking epigenetic codes in neurogenesis[J]. Genes Dev, 2014,28(12):1253-1271.
[18]Yoshimatsu T, Kawaguchi D, Oishi K, et al. Non-cell-autonomous action of STAT3 in maintenance of neural precursor cells in the mouse neocortex[J]. Development, 2006,133(13):2553-2563.
[19]Jebbett NJ, Hamilton JW, Rand MD, et al. Low level Methylmercury enhances CNTF-evoked STAT3 signaling and glial differentiation in cultured cortical progenitor cells [J]. Neurotoxicology, 2013,38(4): 91-100.
[20]Nakanishi M, Niidome T, Matsuda S, et al. Microglia-derived interleukin-6 and leukaemia inhibitory factor promote astrocytic differentiation of neural stem/progenitor cells[J]. Eur J Neurosci, 2010, 25 (3):649-658.
[21]Kohyama J, Kojima T, Takatsuka E, et al. Epigenetic regulation of neural cell differentiation plasticity in the adult mammalian brain[J]. Proc Natl Acad Sci USA, 2008, 105(46):18012-18017.
[22]Bauer S. Cytokine control of adult neural stem cells chronic versus acute exposure[J]. Ann NY Acad Sci, 2009,1153(1):48-56.
[23]Diego GN, Beatriz VA, Noemí PB, et al. Interleukin-15 regulates proliferation and self-renewal of adult neural stem cells[J]. Mol Biol Cell, 2011, 22 (12):1960-1970.
[24]Garza JC, Guo M, Zhang W, et al. Leptin increases adult hippocampal neurogenesis in vivo and in vitro[J]. J Biol Chem, 2008, 283 (26):18238-18247.
[25]Nicolas CS, Peineau S, Amici M, et al. The JAK/STAT pathway is involved in synaptic plasticity[J]. Neuron, 2012, 73 (2):374-390.
[26]Peng H, Whitney N, Wu Y, et al. HIV-1-infected and/or immune-activated macrophage-secreted TNF-alpha affects human fetal cortical neural progenitor cell proliferation and differentiation[J]. Glia, 2010, 56 (8):903-916.
[27]Li Q, Qin LH, Luan LJ, et al. Influence of neuregulin on neuronal apoptosis and expressions of STAT3 and GFAP following cerebral ischemic reperfusion injury in rats[J]. Acta Anatomica Sinica,2008,39(6):820-825.(in Chinese)
李琴,秦丽华,栾丽菊,等.神经调节素对大鼠脑缺血再灌注损伤细胞凋亡和STAT3及GFAP表达的影响[J].解剖学报,2008,39(6):820-825.
[28]Chen E, Xu D, Lan X, et al. A Novel Role of the STAT3 Pathway in Brain Inflammation-induced Human Neural Progenitor Cell Differentiation[J]. Curr Mol Med, 2013,13(9): 1474-1484.
[29]Ito H, Nakajima A, Nomoto H, et al. Neurotrophins facilitate neuronal differentiation of cultured neural stem cells via induction of mRNA expression of basic helix-loop-helix transcription factors Mash1 and Math1[J]. J Neurosci Res, 2003,71(5):648-658.
[30]Fukuda S, Taga T. Cell fate determination regulated by a transcriptional signal network in the developing mouse brain [J]. Anat Sci Int, 2015, 80 (1):12-18.
[31]Nakashima K, Wiese S, Yanagisawa M, et al. Developmental requirement of gp130 signaling in neuronal survival and astrocyte differentiation[J]. J Neurosci, 1999, 19(13):5429-5434.
[32]Freed CR, Greene PE, Breeze RE, et al. Transplantation of embryonic dopamine neurons for severe Parkinson’s disease[J]. N Engl J Med, 2001, 344(10): 710-719.
[33]Zhu P, Hata R, Cao F, et al. Ramified microglial cells promote astrogliogenesis and maintenance of neural stem cells through activation of STAT3 function[J]. Faseb J, 2008, 22(11):3866-3877.
[34]Smith RP, Lerchhaner JK, Pardinas JR, et al. Transcriptional profiling of intrinsic PNS factors in the postnatal mouse[J]. Mol Cell Neurosci, 2011,46 (1):32-44.
[35]Benito C, Davis CM, Gomezsanchez JA, et al. STAT3 controls the long-term survival and phenotype of repair schwann cells during nerve regeneration[J]. J Neurosci, 2017, 37(16):4255-4269.
[36]Xu JJ, Chen EY, Lu CL,et al. Effects of recombinant ciliary neurotrophic factor on STAT3 expression and tyrosine phosphorylation in the injured neurons during peripheral nerve regeneration[J]. Acta Anatomica Sinica, 2003,34(3):241-245.(in Chinese)
许家军,陈尔瑜,路长林,等. 周围神经再生时重组CNTF对受损神经元STAT3表达和酪氨酸酸化的作用[J].解剖学报,2003,34(3):241-245.
[37]Martynoga B, Drechsel D, Guillemot F. Molecular control of neurogenesis: a view from the mammalian cerebral cortex[J]. Cold Spring Harb Perspect Biol, 2012, 4 (10):759-769.
[38]Rong Y, Ren FL, Ning HX, et al. SIPAR expression pattern during development of mouse embryo detected by whole mount in situ hybridization[J]. Acta Anatomica Sinica,2006,37(2):121-124. (in Chinese)
戎煜,任芳丽,宁红秀,等. 利用原位杂交技术研究SIPAR在小鼠不同发育阶段的表达[J].解剖学报,2006,37(2):121-124.
[39]Kamakura S, Oishi K, Yoshimatsu T, et al. Hes binding to STAT3 mediates crosstalk between Notch and JAK-STAT signalling[J]. Nat Cell Biol, 2004, 6 (6):547-554.
[40]Wang T, Yuan W, Liu Y, et al. The role of the JAK-STAT pathway in neural stem cells, neural progenitor cells and reactive astrocytes after spinal cord injury[J]. Biomed Rep, 2015, 3 (2):141-146.
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