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1.
Src是非受体型酪氨酸激酶家族成员之一,通过广泛的信号转导通路参与HP感染、胃癌细胞粘附、受体调节、增殖和血管形成等。近年来研究表明,Src在胃癌组织中异常表达或活性增高,与胃癌的发生发展密切相关。因此,研究Src和胃癌的关系有着重要意义。目前,针对Src的靶向抑制剂已经进入临床试验。大量研究发现,Src抑制剂包括Dasatinib、AZD0530、Sunitinib等对胃癌有抑制作用,这将为胃癌的治疗开辟新的治疗途径。  相似文献   

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真核细胞核转录因子Rel/NF·κB家族广泛存在于从昆虫至人类细胞中,参与细胞的分化、发育、凋亡、黏附及炎症反应。通常NF·κB与其抑制蛋白IκB结合以无活性的方式滞留于胞浆,当多种外部信号作用于细胞时,活化的NF·κB进入细胞核内发挥其功能。目前,对NF·κB激活的信号传导机制已基本明确,IκB激酶(IκB Kinase,IKK)在其中起重要作用,本文综述了近年来对IKK结构、功能及其调控的最新进展。  相似文献   

4.
植物蛋白激酶研究进展   总被引:3,自引:0,他引:3  
蛋白激酶是一类磷酸转移酶,其在细胞信号转导过程中起到较为重要作用.目前,在不同植物中分离了各种蛋白激酶基因.相关研究报道表明,这一类蛋白酶基因参与了植物的抗逆性、生长发育以及信号转导等一系列生命活动进程.着重从植物蛋白激酶分类、结构及其功能研究几个方面进行综述.  相似文献   

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植物促分裂原活化蛋白(NAP)激酶   总被引:2,自引:0,他引:2  
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朱秋菊  衡欢  侯筱宇 《生物技术世界》2014,(11):156-157,159
脚手架蛋白PSD-95通过募集多种蛋白质在包括缺血性脑中风在内的多种神经系统疾病中具有重要的作用。Src蛋白激酶家族是膜相关非受体酪氨酸蛋白激酶中最大的家族,该家族激酶含有与突触后致密蛋白PSD-95相结合的结构域。Src激酶是其家族中主要成员之一,在脑组织中表达丰富。脑缺血/再灌注引起缺血敏感区Src激酶活性的显著增强。之前的研究表明,Src激酶参与调节PSD-95酪氨酸磷酸化。本实验主要通过GST-pull down实验体外鉴定Src与PSD-95之间的直接结合。  相似文献   

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细胞内信号传递与转录调控的研究进展   总被引:3,自引:0,他引:3  
综合近年来有关细胞内信号传递与转录调控的研究进展,总结出3个细胞内信号传递系统-MAP激酶途径、JAK/STAT途径和NK-kB途径,细胞外信号分别通过以上3种途径,在细胞核、细胞膜、细胞浆中激活转录因子,调控基因表达,其中可逆性磷酸化对转录因子活性的调节起着重要的作用。  相似文献   

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Src和Abl家族激酶属于非受体型酪氨酸激酶(Nonreceptor tyrosine kinase,NRTK)家族重要成员,广泛存在于各种细胞中,参与细胞内信号传递并调节细胞生理过程,它们在维持细胞、组织和器官稳态功能中发挥着至关重要的作用。研究表明,Src和Abl家族激酶通过多种机制参与病原微生物的感染(如与病原微生物的脯氨酸基序-PXXP互作)。因此,从Src和Abl家族激酶角度出发探究病原微生物感染机制逐渐成为一个热点。本文就Src和Abl家族激酶的结构特点以及参与病原微生物感染的研究报道进行综述,以期为病原微生物感染的致病机制、防控和药物研发提供参考。  相似文献   

9.
A型激酶锚定蛋白(A-kinase anchoring proteins,AKAPs)是一类结构不同而功能相关的蛋白家族,其主要功能是将cAMP依赖性蛋白激酶A(PKA)锚定于特定的亚细胞结构.PKA是第二信使cAMP的主要效应器,而AKAPs在靶向定位和调节PKA介导的磷酸化事件方面扮演重要角色. AKAPs更为重要的功能是与多种信号分子形成信号复合物,从时间和空间上整合cAMP-PKA和其他信号途径.本文将对AKAPs及其信号复合物的结构特点和参与细胞信号转导的功能机制及其研究现状进行概述.  相似文献   

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巨噬细胞对病原菌的吞噬以及随后的降解在机体免疫防御中起重要作用.近年来,对增强巨噬细胞吞噬能力的研究越来越被重视.弱激光具有独特的生物组织学作用特征,从而调节机体多种功能.本文重点探讨了He-Ne激光(632.8 nm)照射对巨噬细胞吞噬功能的影响及分子信号调控机理.实验结果表明,弱激光能够通过激活巨噬细胞内Sre激酶...  相似文献   

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Egg activation at fertilization in deuterostomes requires a rise in intracellular Ca2+, which is released from the egg's endoplasmic reticulum. In sea urchins, a Src Family Kinase (SpSFK1) is necessary for the PLCγ-mediated signaling event that initiates this Ca2+ release (Giusti, A.F., O'Neill, F.J., Yamasu, K., Foltz, K.R. and Jaffe, L.A., 2003. Function of a sea urchin egg Src family kinase in initiating Ca2+ release at fertilization. Dev. Biol. 256, 367-378.). Annotation of the Strongylocentrotus purpuratus genome sequence led to the identification of additional, predicted SFKs (Bradham, C.A., Foltz, D.R., Beane, W.S., Amone, M.I., Rizzo, F., Coffman, J.A., Mushegian, A., Goel, M., Morales, J., Geneviere, A.M., Lapraz, F., Robertson, A.J., Kelkar, H., Loza-Coll, M., Townley, I.K., Raisch, M., Roux, M.M., Lepage, T., Gache, C., McClay, D.R., Manning, G., 2006. The sea urchin kinome: a first look. Dev. Biol. 300, 180-193.; Roux, M.M., Townley, I.K., Raisch, M., Reade, A., Bradham, C., Humphreys, G., Gunaratne, H.J., Killian, C.E., Moy, G., Su, Y.H., Ettensohn, C.A., Wilt, F., Vacquier, V.D., Burke, R.D., Wessel, G. and Foltz, K.R., 2006. A functional genomic and proteomic perspective of sea urchin calcium signaling and egg activation. Dev. Biol. 300, 416-433.). Here, we describe the cloning and characterization of these 4 additional SFKs and test their function during the initial Ca2+ release at fertilization using the dominant-interfering microinjection method coupled with Ca2+ recording. While two of the new SFKs (SpFrk and SpSFK3) are necessary for Ca2+ release, SpSFK5 appears dispensable for early egg to embryo transition events. Interestingly, SpSFK7 may be involved in preventing precocious release of Ca2+. Binding studies indicate that only SpSFK1 is capable of direct interaction with PLCγ. Immunolocalization studies suggest that one or more SpSFK and PLCγ are localized to the egg cortex and at the site of sperm-egg interaction. Collectively, these data indicate that more than one SFK is involved in the Ca2+ release pathway at fertilization.  相似文献   

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The adenoviral early region 4 open reading frame 4 (E4orf4) death factor induces p53-independent apoptosis in many cell types and appears to kill selectively transformed cells. Here we show that expression of E4orf4 in transformed epithelial cells results in early caspase-independent membrane blebbing, associated with changes in the organization of focal adhesions and actin cytoskeleton. Evidence that E4orf4 can associate with and modulate Src family kinase activity, inhibiting Src-dependent phosphorylation of focal adhesion kinase (FAK) and paxillin while increasing phosphorylation of cortactin and some other cellular proteins, is presented. Furthermore, E4orf4 dramatically inhibited the ability of FAK and c-src to cooperate in induction of tyrosine phosphorylation of cellular substrates, suggesting that E4orf4 can interfere with the formation of a signaling complex at focal adhesion sites. Consistent with a functional role for E4orf4-Src interaction, overexpression of activated c-src dramatically potentiated E4orf4-induced membrane blebbing and apoptosis, whereas kinase dead c-src constructs inhibited E4orf4 effects on cell morphology and death. Moreover treatment of E4orf4-expressing cells with PP2, a selective Src kinase inhibitor, led to inhibition of E4orf4-dependent membrane blebbing and later to a marked decrease in E4orf4-induced nuclear condensation. Taken together, these observations indicate that expression of adenovirus 2 E4orf4 can initiate caspase-independent extranuclear manifestations of apoptosis through a modulation of Src family kinases and that these are involved in signaling E4orf4-dependent apoptosis. This study also suggests that Src family kinases are likely to play a role in the cytoplasmic execution of apoptotic programs.  相似文献   

14.
Structure and function of the receptor-like protein kinases of higher plants   总被引:25,自引:0,他引:25  
Cell surface receptors located in the plasma membrane have a prominent role in the initiation of cellular signalling. Recent evidence strongly suggests that plant cells carry cell surface receptors with intrinsic protein kinase activity. The plant receptor-like protein kinases (RLKs) are structurally related to the polypeptide growth factor receptors of animals which consist of a large extracytoplasmic domain, a single membrane spanning segment and a cytoplasmic domain of the protein kinase gene family. Most of the animal growth factor receptor protein kinases are tyrosine kinases; however, the plant RLKs all appear to be serine/threonine protein kinases. Based on structural similarities in their extracellular domains the RLKs fall into three categories: the S-domain class, related to the self-incompatibility locus glycoproteins of Brassica; the leucine-rich repeat class, containing a tandemly repeated motif that has been found in numerous proteins from a variety of eukaryotes; and a third class that has epidermal growth factor-like repeats. Distinct members of these putative receptors have been found in both monocytyledonous plants such as maize and in members of the dicotyledonous Brassicaceae. The diversity among plant RLKs, reflected in their structural and functional properties, has opened up a broad new area of investigation into cellular signalling in plants with far-reaching implications for the mechanisms by which plant cells perceive and respond to extracellular signals.  相似文献   

15.
Protein tyrosine kinases play key roles in many molecular and cellular processes in diverse living organisms. Their proper functioning is crucial for the normal growth, development, and health in humans, whereas their dysfunction can cause serious diseases, including various cancers. As such, intense studies have been performed to understand the molecular mechanisms by which the activities of protein tyrosine kinases are regulated in mammalian cells. Particularly, small molecules that can modulate the activity of tyrosine kinases are of great importance for discovering therapeutic drug candidates for numerous diseases. Notably, heme cannot only serve as a prosthetic group for hemoglobins and enzymes, but it also is a small signaling molecule that can control the activity of diverse signaling and regulatory proteins. Using a computational search, we found that a group of non-membrane spanning tyrosine kinases contains one or more CP motifs that can potentially bind to heme and mediate heme regulation. We then used experimental approaches to determine whether heme can affect the activity of any of these tyrosine kinases. We found that heme indeed affects the phosphorylation of key tyrosine residues in Jak2 and Src, and is therefore able to modulate Jak2 and Src activity. Further experiments showed that Jak2 and Src bind to heme and that the presence of heme alters the sensitivity of Jak2 and Src to trypsin digestion. These results suggest that heme actively interacts with Jak2 and Src and alters their conformation.  相似文献   

16.
Src蛋白激酶在人类多种肿瘤细胞中被激活并在肿瘤发生、发展过程中起重要作用.Src活性的调节主要包括共价修饰、异构调节,但基因突变和其他一些方式也可以调节其活性.Src共价修饰主要是磷酸化,Tyr530、Tyr419、Thr34、Thr46、Ser72、Tyr138和Tyr213等都是Src的磷酸化位点,其中Tyr530位点和Tyr419位点是Src最重要的磷酸化位点.异构调节包括SH3、SH2等区域结合的调节,分别涉及黏着斑激酶(focal adhesion kinase,FAK)、孕酮受体(progesterone receptor,PR)、雌激素受体(estrogen receptor,ER)、雄激素受体(androgen receptor,AR)、P130Cas、血小板源生长因子(the platelet-derived growth factor,PDGF)、血小板衍生生长因子受体(platelet-derived growth factor receptor,PDGFR)、表皮生长因子受体(epidermal growth factor receptor,EGFR,HER1/erb B1)、人类表皮生长因子受体2(human epidermal growth factor receptor-2,ERBB2/HER2/NEU)、胰岛素样生长因子1受体(insulin-like growth factor-1 receptor,IGF-1R)、纤维母细胞生长因子受体1(fibroblast growth factor receptor,FGFR1)、肝细胞生长因子受体(hepatocyte growth factor receptor c-Met)、人类1型T细胞白血病病毒编码的辅助蛋白p13、HIV-1毒力因子Nef和Sin.本文就Src蛋白激酶的调节机制作一简要综述.  相似文献   

17.
Nonreceptor protein tyrosine kinases of the Src family have been shown to play an important role in signal transduction as well as in regulation of microtubule protein interactions. Here we show that gamma-tubulin (gamma-Tb) in P19 embryonal carcinoma cells undergoing neuronal differentiation is phosphorylated and forms complexes with protein tyrosine kinases of the Src family, Src and Fyn. Elevated expression of both kinases during differentiation corresponded with increased level of proteins phosphorylated on tyrosine. Immunoprecipitation experiments with antibodies against Src, Fyn, gamma-tubulin, and with anti-phosphotyrosine antibody revealed that gamma-tubulin appeared in complexes with these kinases. In vitro kinase assays showed tyrosine phosphorylation of proteins in gamma-tubulin complexes isolated from differentiated cells. Pretreatment of cells with Src family selective tyrosine kinase inhibitor PP2 reduced the amount of phosphorylated gamma-tubulin in the complexes. Binding experiments with recombinant SH2 and SH3 domains of Src and Fyn kinases revealed that protein complexes containing gamma-tubulin bound to SH2 domains and that these interactions were of SH2-phosphotyrosine type. The combined data suggest that Src family kinases might have an important role in the regulation of gamma-tubulin interaction with tubulin dimers or other proteins during neurogenesis.  相似文献   

18.
Map kinases in fungal pathogens   总被引:22,自引:0,他引:22  
MAP kinases in eukaryotic cells are well known for transducing a variety of extracellular signals to regulate cell growth and differentiation. Recently, MAP kinases homologous to the yeast Fus3/Kss1 MAP kinases have been identified in several fungal pathogens and found to be important for appressorium formation, invasive hyphal growth, and fungal pathogenesis. This MAP kinase pathway also controls diverse growth or differentiation processes, including conidiation, conidial germination, and female fertility. MAP kinases homologous to yeast Slt2 and Hog1 have also been characterized in Candida albicans and Magnaporthe grisea. Mutants disrupted of the Slt2 homologues have weak cell walls, altered hyphal growth, and reduced virulence. The Hog1 homologues are dispensable for growth but are essential for regulating responses to hyperosmotic stress in C. albicans and M. grisea. Overall, recent studies have indicated that MAP kinase pathways may play important roles in regulating growth, differentiation, survival, and pathogenesis in fungal pathogens.  相似文献   

19.
Many phytochrome responses in plants are induced by red light and inhibited by far-red light. To explain the biochemical basis of these observations, it was speculated that plant phytochromes are light-regulated enzymes more than 40 years ago. The search for such an enzymatic activity has a long and rather tumultuous history. Biochemical data in the late 1980s had suggested that oat phytochrome might be a light-regulated protein kinase. The topic was the subject of intense debate, but solid experimental data backing the kinase model has been published recently. Two lines of research played a key role in this finding: the production of biologically active highly purified recombinant phytochrome and the discovery of phytochromes in prokaryotes. This review discusses the key steps of this discovery, and suggests some hypotheses for the role of protein kinase activity in photomorphogenesis.  相似文献   

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