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2006年01月06日

【期刊论文】Cyclic AMP Promotes Neuronal Survival by Phosphorylation of Glycogen Synthase Kinase 3β

黎明涛, MINGTAO LI, , XIAOMIN WANG, MARY KAY MEINTZER, TRACEY LAESSIG, MORRIS J. BIRNBAUM, AND KIM A. HEIDENREICH*

MOLECULAR AND CELLULAR BIOLOGY, Dec. 2000, p. 9356~9363,-0001,():

-1年11月30日

摘要

Agents that elevate intracellular cyclic AMP (cAMP) levels promote neuronal survival in a manner independent of neurotrophic factors. Inhibitors of phosphatidylinositol 3 kinase and dominant-inactive mutants of the protein kinase Akt do not block the survival effects of cAMP, suggesting that another signaling pathway is involved. In this report, we demonstrate that elevation of intracellular cAMP levels in rat cerebellar granule neurons leads to phosphorylation and inhibition of glycogen synthase kinase 3b (GSK-3b). The increased phosphorylation of GSK-3b by protein kinase A (PKA) occurs at serine 9, the same site phosphorylated by Akt. Purified PKA is able to phosphorylate recombinant GSK-3b in vitro. Inhibitors of GSK-3 block apoptosis in these neurons, and transfection of neurons with a GSK-3b mutant that cannot be phosphorylated interferes with the prosurvival effects of cAMP. These data suggest that activated PKA directly phosphorylates GSK-3b and inhibits its apoptotic activity in neurons.

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2006年01月06日

【期刊论文】Enhanced anti-angiogenic effect of a deletion mutant of plasminogen kringle 5 on neovascularization†

黎明涛, Weibin Cai, Jianfang Ma, Chaoyang Li, Zhonghan Yang, Xia Yang, Wei Liu, Zuguo Liu, Mintao Li, Guoquan Gao*, † Weibin Cai and Jianfang Ma are co-first-authors.

,-0001,():

-1年11月30日

摘要

Kringle 5 (K5), a proteolytic fragment of plasminogen, has been proved to be an angiogenic inhibitor. Previously, we have evaluated the effect of K5 on the vascular leakage and neovascularization in a rat model of oxygen-induced retinopathy. In this study, we expressed K5 and a deletion mutant of K5 (K5 mutant) in a prokaryocyte expression system and purified them by affinity chromatography. K5 mutant was generated by deleting 11 amino acids from K5 while retaining the three disulfide bonds. The anti-angiogenic activity of intact K5 and K5 mutant were compared in endothelial cells and retinal neovascularization rat model. K5 mutant inhibited the proliferation of primary human retinal capillary endothelial cells (HRCEC) in a concentration-dependent manner, with an apparent EC50 of approximate 35nmol/L, which is twofold more potent than intact K5. In the even higher concentration range, K5 mutant did not inhibit pericytes from the same origin of HRCEC, which suggested an endothelial cell-specific inhibition. K5 mutant had no effect on normal liver cells and Bel7402 hepatoma cells even at high concentration range either. Intravitreal injection of the K5 and mutant in the oxygen-induced retinopathy rat model both resulted in significantly fewer neovascular tufts and nonperfusion area than controls with PBS injection, as shown by fluorescein angiography. Furthermore, K5 mutant exhibited more strong inhibition effect on neovascularization than intact K5 by quantification of vascular cells. These results suggest that this K5 deletion mutant is a more potent angiogenic inhibitor than intact K5 and may have therapeutic potential in the treatment of those disorders with neovascularization, such as solid tumor, diabetic retinopathy, age-related macular degeneration, rheumatoid arthritis, and hyperplasia of prostate.

plasminogen kringle 5 • angiogenic inhibitors • mutation • pathologic neovascularization

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2006年01月06日

【期刊论文】Inactivation of the Myocyte Enhancer Factor-2 Repressor Histone Deacetylase-5 by Endogenous Ca2+/Calmodulin-dependent Kinase II Promotes Depolarization-mediated Cerebellar Granule Neuron Survival*

黎明涛, Daniel A. Linseman, Christopher M. Bartley, Shoshona S. Le, Tracey A. Laessig, Ron J. Bouchard, Mary Kay Meintzer, Mingtao Li, and Kim A. Heidenreich‡

Vol. 278, No.42, Issue of October 17, pp. 41472~41481, 2003,-0001,():

-1年11月30日

摘要

Cerebellar granule neuron (CGN) survival depends on activity of the myocyte enhancer factor-2 (MEF2) transcription factors. Neuronal MEF2 activity is regulated by depolarization via a mechanism that is presently unclear. Here, we show that depolarization-mediated MEF2 activity and CGN survival are compromised by overexpression of the MEF2 repressor histone deacetylase-5 (HDAC5). Furthermore, removal of depolarization induced rapid cytoplasm-to-nuclear translocation of endogenous HDAC5. This effect was mimicked by addition of the calcium/calmodulin-dependent kinase (CaMK) inhibitor KN93 to depolarizing medium. Removal of depolarization or KN93 addition resulted in dephosphorylation of HDAC5 and its co-precipitation with MEF2D. HDAC5 nuclear translocation triggered by KN93 induced a marked loss of MEF2 activity and subsequent apoptosis. To selectively decrease CaMKII, CGNs were incubated with an antisense oligonucleotide to CaMKIIa. This antisense decreased CaMKIIa expression and induced nuclear shuttling of HDAC5 in CGNs maintained in depolarizing medium. Selectivity of the CaMKIIa antisense was demonstrated by its lack of effect on CaMKIV-mediated CREB phosphorylation. Finally, antisense to CaMKIIa induced caspase-3 activation and apoptosis, whereas a missense control oligonucleotide had no effect on CGN survival. These results indicate that depolarization-mediated calcium influx acts through CaMKII to inhibit HDAC5, thereby sustaining high MEF2 activity in CGNs maintained under depolarizing conditions.

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2006年01月06日

【期刊论文】Indirubin-3'-oxime inhibits c-Jun NH2-terminal kinase: anti-apoptotic effect in cerebellar granule neurons

黎明涛, Yuanbin Xie a, b, c, Yanling Liu a, d, Chi Ma a, Zhongmin Yuan a, Wenya Wang a, Zhenyu Zhu b, Guoquan Gao b, Xianguo Liu d, Hengxin Yuan b, Ruzhu Chen a, Shoujian Huang a, XuelanWang a, Xiaonan Zhu a, Xuemin Wang e, Zixu Mao e, Mingtao Li a, *

Neuroscience Letters 367 (2004) 355~359,-0001,():

-1年11月30日

摘要

Previous studies have demonstrated that c-Jun NH2-terminal protein kinase (JNK) plays a crucial role in neuronal apoptosis. Here, we report that indirubin-3'-oxime, a known effective inhibitor of cyclin-dependent kinases (CDKs) and glycogen synthase kinase 3-beta (GSK-3β), has a significant inhibitory effect on JNK. Kinase assay showed that indirubin-3'-oxime directly inhibited the activity of all three isoforms of JNK (JNK1, and JNK3) in vitro, with half inhibition dose (IC50) of 0.8µM, 1.4µM, and 1.0µM, respectively. In cerebellar granule neurons (CGNs), indirubin-3'-oxime blocked c-Jun phosphorylation induced by potassium withdrawal and prevented CGNs from apoptosis in a dose dependent manner. However, inhibitors of CDKs and GSK-3βwere ineffective in reducing c-Jun phosphorylation both in vitro and in vivo, suggesting that indirubin-3'-oxime prevents c-Jun phosphorylation independent of its inhibition on CDKs and GSK-3β. Our studies give further supports for JNK-targeting strategy in preventing neuronal apoptosis.

Indirubin-3', -oxime, Cerebellar granule neurons, Apoptosis, c-Jun NH2-terminal protein kinase

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2006年01月06日

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  • 黎明涛 邀请

    中山大学,广东

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