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1.
hhLIM是LIM蛋白家族成员之一,该蛋白质含有两个LIM结构域,在基因表达调节、细胞骨架组构及细胞肥大过程中发挥重要作用.构建hhLIM不同LIM结构域的突变体,探讨其两个LIM结构域在与actin相互结合中的作用及其可能机制.GST-pull down和hhLIM及其突变体与actin细胞定位关系的免疫荧光分析结果表明,C端的LIM结构域2是hhLIM与actin结合所必需的,该结构域中的两个Cys置换为Ser后可使hhLIM结合actin的功能完全丧失,N端的LIM结构域1突变使hhLIM结合actin的能力下降.F-actin交联实验结果显示,hhLIM通过LIM结构域2与actin直接结合并起到交联F-actin的作用.结果表明,LIM结构域2在hhLIM与actin相互作用及调节actin细胞骨架组构中起决定性作用.  相似文献   

2.
目的:探讨SM22αC端功能域肽段与细胞骨架F-actin聚合的关系,明确SM22α在血管平滑肌细胞(VSMC)骨架重构中的作用。方法:构建GST-SM22αC端功能域融合蛋白原核表达质粒pGEX3X-SM22α,诱导E coli高效表达可溶性GST-SM22α融合蛋白,制备抗SM22α抗体,VSMC蛋白分步提取及Western blot检测F-actin/G-actin中SM22α的含量变化,GST-pull down分析和免疫共沉淀检测SM22α与actin的相互作用,细胞免疫双荧光染色观察SM22α和actin在VSMC中的定位关系。结果:所构建的pGEX3X-SM22α原核表达质粒,在0.5mmol/LIPTG,30℃诱导6h条件下,表达可溶性GST-SM22α融合蛋白的水平最高,用纯化的融合蛋白免疫新西兰白兔获得的抗血清效价为1∶16。免疫双荧光染色和蛋白分步提取分析结果表明,在VSMC再分析过程中,SM22α与F-actin共定位,GSTpull down分析和免疫共沉淀结果均显示,SM22α通过C端功能域与F-actin相互作用而参与细胞骨架的重构;但是,SM22α与G-actin的结合能力较弱。结论:本研究重组得到的SM22αC端功能域具有与F-actin结合的活性,SM22α通过该区域与actin相互作用而参与细胞骨架重构。  相似文献   

3.
肌动蛋白解聚因-子/丝切蛋白:肌动蛋白重塑蛋白质家系   总被引:2,自引:0,他引:2  
肌动蛋白解聚因子/丝切蛋白(actin depolymerizing factor/cofilin,ADF/cofilin)是肌动蛋白结合蛋白(actin—binding protein)家系。迄今为止,可以在所有的真核细胞中检测到ADF/cofilin。它们调节(纤)丝状肌动蛋白细胞骨架(F—actin eytoskeleton),影响细胞的各种生理功能。不同的生物有不同的ADF/cofilin,但其功能基本相似。ADF/cofilin可以使(纤)丝状肌动蛋白(F—actin)解聚合,而且这种解聚合活性是可逆的,ADF/cofilin切割F-actin并且能提高球状肌动蛋白(G—actin)离开纤维突出端(pointedend)的能力,其作用受很多因素调控。  相似文献   

4.
唐静  朱晓玲  张磊 《生物磁学》2013,(3):578-581
凝溶胶蛋白(gelsolin,GSN)是一种在机体内普遍存在的,对细胞结构和代谢功能具有多种调节作用的蛋白。GSN作为凝溶胶蛋白超家族的成员之一,是一种重要的肌动蛋白(actin)结合蛋白,可通过切断、封闭肌动蛋白丝,或使actin聚集成核等方式来调控actin的结构与代谢功能.GSN不仅能在重组的肌动蛋白细丝(F-actin)中发挥作用,而且在细胞运动、细胞凋亡等细胞活动中也发挥着重要的作用。GSN有血浆型(plasma gelsolin,pGSN)和细胞质型(cytoplasmic gelsolin,cGSN)两种亚型,它们在淀粉样变性、炎症、癌症、心血管疾病、阿茨海默病(AD)及肾脏疾病中都起着重要的作用,GSN可能成为多种疾病的一个新的生物标记物或者治疗靶点。本文将就GSN与相关疾病的关系的研究进展做一综述。  相似文献   

5.
研究不同分化阶段树突状细胞(dendritic cells,DCs)重要肌动蛋白微丝结合蛋白的表达变化。人外周血经密度梯度离心和免疫磁珠法分离获得CD14+单核细胞,用细胞因子将单核细胞(monocytes,MOs)诱导分化为未成熟DCs(immature DCs,im DCs)和成熟DCs(mature DCs,m DCs)。分别提取不同分化阶段DCs的总蛋白和总RNA,实时定量PCR和蛋白质芯片检测部分细胞骨架微丝(filament actin,F-actin)结合蛋白的在基因和蛋白水平的表达变化。单核细胞经im DCs向m DCs分化的过程中,一些F-actin的单体隔离蛋白、加帽蛋白、交联蛋白、解聚蛋白和成核蛋白在基因和蛋白水平发生了不同程度的上调或下调。一些重要的F-actin结合蛋白在DCs不同分化阶段具有不同的表达水平,DCs的结构和功能受到这些蛋白的协同作用和精密调控,是细胞形态发生显著变化的结构基础,这对于深入理解DCs的免疫调节功能来说具有重要意义。  相似文献   

6.
对三种隐孢子虫(C.parvum Iowa II、C.hominis TU502和C.muris RN66)钙依赖蛋白激酶(Calcium-dependent protein kinases,CDPKs)进行生物信息学分析,探索该蛋白的结构并预测其功能,为其基因功能的研究提供一定的理论基础。通过隐孢子虫基因组数据库收集数据,获得三种隐孢子虫CDPKs蛋白的序列信息,通过生物信息学软件进行分析,预测该蛋白的理化性质、翻译后修饰位点、功能域、亚细胞定位、二级结构、亲/疏水性、抗原表位等。隐孢子虫CDPKs的蛋白性质不稳定,理论分子量从59.76 k Da到76.63 k Da,p I值为5.33~6.09,CDPKs不具有跨膜区和信号肽,不是跨膜分泌性蛋白,都具有蛋白激酶C磷酸化位点、酪氨酸激酶Ⅱ磷酸化位点、酪氨酸激酶磷酸化位点、c AMP和c GMP依赖蛋白激酶磷酸化位点、N-端糖基化位点、N-端肉豆蔻酰化位点和EF-hand钙结合域,二级结构主要以α螺旋和无规卷曲为主;CDPKs主要存在虫体细胞内,均有20多个潜在的抗原表位。在隐孢子虫中,CDPKs蛋白不仅可单独发挥作用,而且还能通过相互结合发挥其生物学效应;同时,CDPKs有望成为候选疫苗及潜在药物靶点。  相似文献   

7.
胰岛素样生长因子(insulin-like growth factor,IGF)结合蛋白(IGF-binding proteins,IGFBPs)家族包含6个与IGF有高亲和力的蛋白。该蛋白家族能够调节IGF的生物利用度,且具有调控细胞增殖分化的作用。IGFBPs蛋白分子中N端保守区的几个疏水氨基酸位点是该蛋白与IGF具有高亲和力的关键位点。近年来的研究发现,N端结构域的起始与末尾的几个保守的氨基酸位点也与结合有关。而C端不仅含有结合IGF的关键位点,而且还是IGFBPs独立于IGF分子网络作用的主要负责区域。IGFBPs除了在体内调节IGF的生物利用度之外,还具有其独立的作用,诸如细胞凋亡和细胞周期的调控。IGFBPs的细胞表面受体及信号通路等研究已经取得一定成果,但每个成员的具体作用机制还不够精确,因此该蛋白家族更多的作用还有待于进一步的探讨。  相似文献   

8.
细胞内肌动蛋白(actin)通过与actin结合蛋白(actin binding proteins,ABPs)相互作用,形成以F-actin为基础多种ABPs参与装配的高度有序的超分子聚合结构,行使各种重要生理功能。在体外聚合条件下,不存在F-actin稳定剂时纯化的actin主要通过自装配形成大尺度的聚集堆积结构;这种表观无序的结构体系由于被认为不具备细胞功能活性而受到忽视。利用激光原子力显微镜(atomic force microscope,AFM)和透射电子显微镜(transmission electron microscope,TEM)技术,对actin体外通过自装配过程形成的大尺度聚集结构进行了细致的观察和分析。研究发现,actin在体外通过自装配过程除了形成无序的蛋白堆积物之外,还能够聚合形成复杂的离散结构,包括树状分支的纤维丛、无规卷曲的纤维簇以及具有不同直径的长纤维等;这些大尺度纤维复合物明显不同于在ABPs或过量F-actin稳定剂参与下形成的由单根微丝和微丝束构成的聚合结构。表明无ABPs或F-actin稳定剂存在的情况下,体外聚合的F-actin在一定条件下可进一步聚集缠绕形成复杂的纤维结构或无序的蛋白堆积物。事实上,actin自装配过程反映了其固有的聚合热力学特性,深入探索将有助于理解ABPs在体内actin超分子聚合结构体系装配中的调控作用及其分子机制。  相似文献   

9.
竹花叶病毒卫星RNA(satBaMV)是一个长度为836个核苷酸(不包括polyA)的单链正义RNA分子,可编码一20ku的卫星蛋白(P20).satBaMV的复制和包被需依赖竹花叶病毒(BaMV).P20是核酸结合蛋白,能促进satBaMV在寄主植物的长距离移动.利用细菌双杂交系统(BTH)和pull-downassays研究了P20自身、P20与BaMV蛋白以及BaMV蛋白之间的相互作用.研究表明:P20自身的相互作用是最强的;P20与甲基转移酶(MET)和衣壳蛋白(CP)之间有明显的相互作用;三基因连锁蛋白之间亦存在强的相互作用;CP与三基因连锁蛋白之间有明显的相互作用.删减分析表明,位于P20N端包括RNA结合位点在内的15个氨基酸是P20自身相互作用所必需的.N端缺失可导致P20间相互作用消失.P20的β折叠结构也是P20间相互作用所必需.此外,P20与烟草细胞色素C还原酶和β微管蛋白之间有较强的相互作用.BaMV蛋白与P20之间的同型和异型相互作用对BaMV及其卫星RNA在寄主植物中的移动起重要作用.  相似文献   

10.
天蚕卵黄原蛋白cDNA的全碱基序列由5 720个碱基构成,一个开读框有5 334个碱基序列,编码了包括由15个氨基酸组成的信号肽在内的共1 778个氨基酸的蛋白质前体。天蚕和柞蚕卵黄原蛋白的同源性非常高,氨基酸序列达到92.6%,碱基序列达到94%。天蚕、柞蚕和家蚕的卵黄原蛋白的糖链附加位点(N-linkedg-lycosylationsite):柞蚕有4个,家蚕有5个,天蚕和家蚕相同保存着5个。在N-末端区域,天蚕和家蚕有多聚丝氨酸区域和可被胰蛋白酶识别的RSRR部位;柞蚕虽然也具有多聚丝氨酸区域,但没有可被胰蛋白酶识别的RSRR部位。在C-末端区域里,大多数昆虫从G ICG功能部位至C-末端结尾具有7个~10个半胱氨酸(Cys)。鳞翅目的4种昆虫柞蚕、天蚕、家蚕和舞毒蛾(A.pernyi,A.yam am ai,B.m ori,L.dispar)都是7个半胱氨酸。  相似文献   

11.
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13.
Rho SB  Chun T  Lee SH  Park K  Lee JH 《FEBS letters》2004,557(1-3):57-63
Thymosin beta-10 (TB10) is a small G-actin binding protein that induces depolymerization of intracellular F-actin pools by sequestering actin monomers. Previously, we demonstrated that overexpression of TB10 in ovarian tumor cells increased the rate of cell death. As an initial step to define molecular mechanism of TB10-dependent apoptotic process in ovarian tumor cells, we searched a human ovary cDNA library for a novel TB10 binding protein using a yeast two-hybrid system. The selected protein was human E-tropomodulin (E-Tmod), another component of the actin binding proteins. Subsequently, two interacting protein components were determined quantitatively. Results showed that the full-length TB10 is required to bind with E-Tmod, and the TB10 binding site on E-Tmod partially overlaps with the actin binding site on E-Tmod. Moreover, introduction of E-Tmod cDNA into a tumor cell line reversed TB10 mediated apoptosis and restored actin architectures. These results may suggest that TB10 regulates apoptotic homeostasis by not only just binding to actin but also competing or blocking the protein complex formation of E-Tmod with actin.  相似文献   

14.
The ActA protein of Listeria monocytogenes induces actin nucleation on the bacterial surface. The continuous process of actin filament elongation provides the driving force for bacterial propulsion in infected cells or cytoplasmic extracts. Here, by fusing the N-terminus of ActA (residues 1-234) to the omega fragment of beta-galactosidase, we present the first evidence that this domain contains all the necessary elements for actin tail formation. A detailed analysis of ActA variants, in which small fragments of the N-terminal region were deleted, allowed the identification of two critical regions. Both are required to initiate the actin polymerization process, but each has in addition a specific role to maintain the dynamics of the process. The first region (region T, amino acids 117-121) is critical for filament elongation, as shown by the absence of actin tail in a 117-121 deletion mutant or when motility assays are performed in the presence of anti-region T antibodies. The second region (region C, amino acids 21-97), is more specifically involved in maintenance of the continuity of the process, probably by F-actin binding or prevention of barbed end capping, as strongly suggested by both a deletion (21-97) leading to 'discontinuous' actin tail formation and in vitro experiments showing that a synthetic peptide covering residues 33-74 can interact with F-actin. Our results provide the first insights in the molecular dissection of the actin polymerization process induced by the N-terminal domain of ActA.  相似文献   

15.
Tropomodulin (E-Tmod) is an actin filament pointed end capping protein that maintains the length of the sarcomeric actin filaments in striated muscle. Here, we describe the identification and characterization of a novel tropomodulin isoform, skeletal tropomodulin (Sk-Tmod) from chickens. Sk-Tmod is 62% identical in amino acid sequence to the previously described chicken E-Tmod and is the product of a different gene. Sk-Tmod isoform sequences are highly conserved across vertebrates and constitute an independent group in the tropomodulin family. In vitro, chicken Sk-Tmod caps actin and tropomyosin-actin filament pointed ends to the same extent as does chicken E-Tmod. However, E- and Sk-Tmods differ in their tissue distribution; Sk-Tmod predominates in fast skeletal muscle fibers, lens, and erythrocytes, while E-Tmod is found in heart and slow skeletal muscle fibers. Additionally, their expression is developmentally regulated during chicken breast muscle differentiation with Sk-Tmod replacing E-Tmod after hatching. Finally, in skeletal muscle fibers that coexpress both Sk- and E-Tmod, they are recruited to different actin filament-containing cytoskeletal structures within the cell: myofibrils and costameres, respectively. All together, these observations support the hypothesis that vertebrates have acquired different tropomodulin isoforms that play distinct roles in vivo.  相似文献   

16.
The membrane skeleton of mature erythrocyte is formed during erythroid differentiation. Fluid shear stress is one of the main factors that promote embryonic hematopoiesis, however, its effects on erythroid differentiation and cytoskeleton remodeling are unclear. Erythrocyte tropomodulin of 41 kDa (E-Tmod41) caps the pointed end of actin filament (F-actin) and is critical for the formation of hexagonal topology of erythrocyte membrane skeleton. Our study focused on the regulation of E-Tmod41 and its role in F-actin cytoskeleton remodeling during erythroid differentiation induced by fluid shear stress. Mouse erythroleukemia (MEL) cells and embryonic erythroblasts were subjected to fluid shear stress (5 dyn/cm2) and erythroid differentiation was induced in both cells. F-actin content and E-Tmod41 expression were significantly increased in MEL cells after shearing. E-Tmod41 overexpression resulted in a significant increase in F-actin content, while the knockdown of E-Tmod41 generated the opposite result. An E-Tmod 3’UTR targeting miRNA, miR-23b-3p, was found suppressed by shear stress. When miR-23b-3p level was overexpressed / inhibited, both E-Tmod41 protein level and F-actin content were reduced / augmented. Furthermore, among the two alternative promoters of E-Tmod, PE0 (upstream of exon 0), which mainly drives the expression of E-Tmod41, was found activated by shear stress. In conclusion, our results suggest that fluid shear stress could induce erythroid differentiation and F-actin cytoskeleton remodeling. It upregulates E-Tmod41 expression through miR-23b-3p suppression and PE0 promoter activation, which, in turn, contributes to F-actin cytoskeleton remodeling.  相似文献   

17.
The lymphocyte-specific phosphoprotein LSP1 associates with the cytoplasmic face of the plasma membrane and with the cytoskeleton. Mouse LSP1 protein contains 330 amino acids and contains an NH2-terminal acidic domain of approximately 177 amino acids. The COOH-terminal half of the LSP1 protein is rich in basic residues. In this paper we show that LSP1 protein which is immunoprecipitated with anti-LSP1 antibodies from NP-40-soluble lysates of the mouse B-lymphoma cell line BAL17 is associated with actin. In vitro binding experiments using recombinant LSP1 (rLSP1) protein and rabbit skeletal muscle actin show that LSP1 binds along the sides of F-actin but does not bind to G-actin. rLSP1 does not alter the initial polymerization kinetics of actin. The highly conserved COOH-terminal basic domains of mouse and human LSP1 share a significant homology with the 20-kD COOH-terminal F-actin binding fragment of caldesmon. A truncated rLSP1 protein containing the entire COOH-terminal basic domain from residue 179 to 330, but not the NH2-terminal acidic domain binds to F-actin at least as well as rLSP1. When LSP1/CAT fusion proteins are expressed in a LSP1-negative T-lymphoma cell line, only fusion proteins containing the basic COOH-terminal domain associate with the NP-40-insoluble cytoskeleton. These data show that LSP1 binds F-actin through its COOH-terminal basic domain and strongly suggest that LSP1 interacts with the cytoskeleton by direct binding to F-actin. We propose that LSP1 plays a role in mediating cytoskeleton driven responses in lymphocytes such as receptor capping, cell motility, or cell-cell interactions.  相似文献   

18.
Ena/VASP proteins influence the organization of actin filament networks within lamellipodia and filopodia of migrating cells and in actin comet tails. The molecular mechanisms by which Ena/VASP proteins control actin dynamics are unknown. We investigated how Ena/VASP proteins regulate actin polymerization at actin filament barbed ends in vitro in the presence and absence of barbed end capping proteins. Recombinant His-tagged VASP increased the rate of actin polymerization in the presence of the barbed end cappers, heterodimeric capping protein (CP), CapG, and gelsolin-actin complex. Profilin enhanced the ability of VASP to protect barbed ends from capping by CP, and this required interactions of profilin with G-actin and VASP. The VASP EVH2 domain was sufficient to protect barbed ends from capping, and the F-actin and G-actin binding motifs within EVH2 were required. Phosphorylation by protein kinase A at sites within the VASP EVH2 domain regulated anti-capping and F-actin bundling by VASP. We propose that Ena/VASP proteins associate at or near actin filament barbed ends, promote actin assembly, and restrict the access of barbed end capping proteins.  相似文献   

19.
Utrophin is a large ubiquitously expressed cytoskeletal protein that is important for maturation of vertebrate neuromuscular junctions. It is highly homologous to dystrophin, the protein defective in Duchenne and Becker muscular dystrophies. Utrophin binds to the actin cytoskeleton via an N-terminal actin-binding domain, which is related to the actin-binding domains of members of the spectrin superfamily of proteins. We have determined the actin-binding properties of this utrophin domain and investigated its binding site on F-actin. An F-actin cosedimentation assay confirmed that the domain binds more tightly to beta-F-actin than to alpha-F-actin and that the full-length utrophin domain binds more tightly to both actin isoforms than a truncated construct, lacking a characteristic utrophin N-terminal extension. Both domain constructs exist in solution as compact monomers and bind to actin as 1:1 complexes. Analysis of the products of partial proteolysis of the domain in the presence of F-actin showed that the N-terminal extension was protected by binding to actin. The actin isoform dependence of utrophin binding could reflect differences at the N-termini of the actin isoforms, thus localising the utrophin-binding site on actin. The involvement of the actin N-terminus in utrophin binding was also supported by competition binding assays using myosin subfragment S1, which also binds F-actin near its N-terminus. Cross-linking studies suggested that utrophin contacts two actin monomers in the actin filament as does myosin S1. These biochemical approaches complement our structural studies and facilitate characterisation of the actin-binding properties of the utrophin actin-binding domain.  相似文献   

20.
Human coactosin-like protein is an actin filament binding protein but does not bind to globular actin. It associates with 5-Lipoxygenase both in vivo and in vitro, playing important roles in modulating the activities of actin and 5-Lipoxygenase. Coactosin counteracts the capping activity of capping protein which inhibits the actin polymerization. We determined the crystal structures of human coactosin-like protein by multi-wavelength anomalous dispersion method. The structure showed a high level of similarity to ADF-H domain, although their amino acid sequences share low degree of homology. A few conserved hydrophobic residues that may contribute to the folding were identified. This structure suggests coactosin-like protein bind to F-actin in a different way from ADF/Cofilin family. Combined with the information from previous mutagenesis studies, the binding sites for F-actin and 5-Lipoxygenase were analyzed, respectively. These two sites are quite close, which might prevent F-actin and 5-Lipoxygenase from binding to coactosin simultaneously.  相似文献   

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