首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 125 毫秒
1.
微丝相关新基因hHBrk1的克隆及功能鉴定   总被引:4,自引:0,他引:4  
微丝相关新基因hHBrk1被克隆 .hHBrk1基因位于 3p2 5 3 2 4 1区 ,由 3个外显子和 2个内含子组成 .Northern印迹杂交结果表明hHBrk1基因有 2个转录本 ,在人体 12种组织中均有表达 ,尤以心肌和骨骼肌为著 .hHBRK1蛋白含 75个氨基酸 ,分子量约 9kD ,与动植物界相关蛋白的同源性达 98%~ 35 % .hHBRK1蛋白定位于细胞浆 ,在细胞运动的最前沿富集 ;在有丝分裂期 ,hHBRK1蛋白定位于细胞膜皮质区和缢缩环 .实验结果提示 ,hHBRK1蛋白可能通过调控F 肌动蛋白的聚合而参与调控细胞运动、分化等基础生命活动 .  相似文献   

2.
微丝相关蛋白HSPC300/hHBRK1与肌球蛋白Ⅵ相互作用的鉴定   总被引:1,自引:1,他引:0  
为鉴定微丝相关蛋白HSPC300/hHBRK1在肝脏组织的功能,采用GST pull-down结合质 谱技术,检测该蛋白在肝脏中的结合蛋白,结果提示,肌球蛋白Ⅵ与HSPC300/hHBRK1共沉降,Western 印迹杂交证实了质谱的结果.构建HSPC300/hHBRK1原核表达载体,诱导并获得了His-hHBRK1融合蛋白.利用免疫共沉淀证实hHBRK1与肌球蛋白Ⅵ存在相互作用,激光共聚焦检测显示hHBRK1与肌球蛋白Ⅵ在肺癌95D细胞的胞浆共定位,提示其相互作用可能是直接结合.肌球蛋白Ⅵ参与细胞迁移、高尔基分泌泡的运输和维持高尔基体稳定性等作用.hHBRK1与肌球蛋白Ⅵ相互作用,为微丝相关蛋白HSPC300/hHBRK1参与细胞迁移和胞内物质运输提供了进一步佐证.  相似文献   

3.
微丝相关新蛋白hHBRK1相互作用蛋白质的鉴定   总被引:3,自引:2,他引:1  
为了鉴定hHBRK1的相互作用蛋白,通过DNA重组构建重组表达质粒pGEXhHBRK1,并以谷胱甘肽Sepharose4B亲合层析法,获得纯化的重组融合蛋白GSThHBRK1.以小鼠心肌组织为研究对象,采用GSTpulldown技术结合Western印迹法,证实hHBRK1与小鼠心肌肌钙蛋白TEa亚型(EacTnT)相互作用.结果提示,hHBRK1与EacTnT结合,可能参与心肌微丝的聚合,为小鼠cTnT众多的剪接体,提供了一种可能的功能定位.  相似文献   

4.
微丝骨架在细胞的生命活动中具有重要的功能,而其动态的解聚聚合特性是其实现功能的前提. 丝束蛋白(fimbrin/plastin)做为微丝结合蛋白质,是微丝骨架的重要调控因子之一,含有2个肌动蛋白结合结构域,目前对其结合微丝的机制并不清楚. 本文以烟草丝束蛋白的肌动蛋白结合结构域2(NtFAbd2) 为研究对象,通过原核细胞表达纯化NtFAbd2,利用体外沉淀法分析发现,NtFAbd2能够与微丝结合;利用激光共聚焦扫描显微镜分析发现,在烟草BY-2悬浮细胞内,NtAbd2-GFP与微丝共分布,这些结果为深入分析植物丝束蛋白的作用机制提供了新的数据.  相似文献   

5.
皮动蛋白(cortactin)是一种含有特殊重复序列结构域的微丝肌动蛋白结合蛋白,它直接参与了细胞皮层(cortex)微丝细胞骨架的组建。它又是细胞内Src类酪氨酸蛋白激酶的主要底物之一,代表了一类高度保守的胞内皮层信号蛋白质家族。近几年来,对于细胞运动分子机制的研究取得很大进展,利用组织培养细胞进行的体外实验证明。皮动蛋白能够活化微丝相关蛋白2/3复合物(actin related protein 2/3 complex,Arp2/3 complex),调控皮层微丝细胞骨架的组装,在细胞运动过程中具有重要作用。  相似文献   

6.
细胞膜蛋白与细胞骨架蛋白相互作用研究进展   总被引:1,自引:0,他引:1  
细胞膜蛋白与胞浆骨架蛋白的相互作用对于维持细胞正常形态 ,细胞粘附与信号传导有重要作用。含有 4 .1 JEF结构域的蛋白 4 .1超家族与含有PDZ结构域的MAGUK蛋白家族能结合多种膜蛋白胞内区与胞浆蛋白 ,在膜蛋白与胞浆蛋白之间建立联系 ,对于细胞、细胞 -细胞间连接的正常结构与功能的维持有着重要作用。  相似文献   

7.
在胚胎发育过程中, 细胞运动对指导原肠期胚胎细胞的时空定位并决定其发育命运具有核心作用, 然而活体状态下原肠化过程中细胞运动的调控机制目前并不清楚. 微丝结合蛋白皮层蛋白(cortactin)是微丝核化过程的重要调控分子, 它通过激活微丝相关蛋白2/3复合物(Arp2/3 complex)促进微丝在细胞前导缘区域迅速组装, 从而直接作用于细胞运动. 为阐明斑马鱼(Danio rerio)原肠化细胞运动的分子调控机制, 本研究首先检测了皮层蛋白在斑马鱼胚胎发育过程的表达水平. Western blotting分析证明皮层蛋白在斑马鱼原肠期胚胎中大量表达; 整装胚胎抗体染色结果表明在斑马鱼原肠化过程中, 皮层蛋白主要分布于胚胎背侧胚盾区域的细胞中, 在发生活跃运动的上皮层细胞和下皮层细胞中含量较高;在亚细胞水平, 皮层蛋白和Arp2/3复合物共同定位于运动的皮层区域, 并在细胞连接处也有大量分布. 此外, 研究还发现皮层蛋白在发育中的中枢神经系统中表达量较高. 本研究结果首次表明皮层蛋白和Arp2/3复合物介导的微丝聚合参予了斑马鱼原肠化细胞运动, 并在中枢神经系统发育中扮演重要角色.  相似文献   

8.
为了探讨Bach1 (BTB and CNC homology 1)与红系衍生的核因子相关因子2(Nrf2)和γ-谷氨酰半胱氨酸合成酶(γ-GCS)的表达变化在慢性阻塞性肺疾病(COPD)中的作用和意义,用气管内注入脂多糖及熏香烟的复合刺激法建立大鼠COPD 模型.观察两组大鼠的肺组织病理学改变,测两组大鼠的肺功能指标;应用免疫组化、Western印迹、原位杂交和逆转录 聚合酶链反应(RT-PCR)等方法检测Bach1与Nrf2及γ GCS 在两组大鼠的肺组织中的表达.结果显示,COPD组的肺功能指标(FEV0.3、FEV0.3/FVC%、PEF)明显恶化;光镜下肺组织病理改变符合COPD的特征性改变;γ GCS与Nrf2 的mRNA及蛋白质表达在COPD组大鼠肺组织中明显增强;而Bach1 mRNA及蛋白质在COPD组和对照组的表达无明显差别.且核/胞浆分离技术表明,Nrf2蛋白在对照组主要表达于胞浆,胞核中表达水平较弱,在COPD组胞浆、胞核均有表达,但是在胞核中的水平明显升高;Bach1蛋白在对照组主要表达于胞核中,胞浆中无明显表达,在COPD组主要表达于胞浆,胞核中无明显表达.相关性分析表明,γ-GCS mRNA与FEV0.3、FEV0.3/FVC%、PEF均呈负相关;Nrf2蛋白表达与γ GCS mRNA呈正相关;Bach1蛋白与γ GCS mRNA呈负相关.上述结果提示,Bach1与Nrf2和γ-GCS可能均在大鼠COPD的发病中发挥作用,且Bach1和Nrf2可能通过竞争性机制调控γ-GCS的表达,影响COPD的发生和发展.  相似文献   

9.
人源SND1(staphylococcal nuclease domain containing 1)蛋白由N端的SN(staphylococcal nucleases)结构域和C端的TSN(Tudor-SN5)结构域组成,其中SN结构域又包含SN1~SN4四个重复的功能片段.本课题组前期研究结果表明,SND1蛋白可以通过SN结构域与G3BP(Ras-GAP SH3 domain-binding protein)蛋白相互结合,共同参与细胞应激颗粒(stress granules,SGs)的形成.SGs是真核细胞在受到氧化应激、病毒感染等外界刺激时在胞浆内形成的与RNA代谢相关的颗粒状结构.对于SGs的成分鉴定及相互作用的分析一直是学者们研究的热点.本研究中,免疫共沉淀实验结果表明,以抗SND1抗体可以共沉淀出HeLa细胞内另一个重要的应激相关人类抗原R(human antigen R,HuR)蛋白.另外,利用脂质体转染法将pcDNA3-FLAG-HuR重组质粒瞬时转染入HeLa细胞,成功过表达外源性的FLAG-HuR融合蛋白,再以抗FLAG标签抗体又可以反向共沉淀出内源性SND1蛋白,证明SND1与HuR之间存在蛋白质间的相互结合作用.细胞免疫荧光实验结果表明,当给予HeLa细胞0.5 mmol/L亚砷酸钠氧化应激时,SND1与HuR蛋白共同定位于胞浆中的SGs结构中.GST-pulldown实验结果进一步表明截短的SN结构域可以结合HuR蛋白,其中以SN1功能片段的结合能力最强,表明SND1蛋白是通过SN结构域与HuR蛋白形成应激复合物,参与SGs的胞浆组装.并不定位于SGs的TSN结构域亦可结合HuR蛋白,提示SND1-HuR的蛋白相互作用可能并不局限于SGs,具有其它方面的功能意义.  相似文献   

10.
TAT-凋亡素融合蛋白的表达及其抗肿瘤活性   总被引:1,自引:0,他引:1  
凋亡素(apoptin)由鸡贫血病毒vp3基因编码,能特异地诱导肿瘤细胞凋亡而对正常细胞 没有毒性,为了获得可转导入细胞内部的凋亡素,将人工合成的编码TAT蛋白转导结构域的DNA片段与凋亡素编码基因克隆入质粒pET-28a内,构建出表达融合蛋白TAT-apoptin的原核表达载体pET-28a-TAT-apoptin.在大肠杆菌Rosetta(DE3)中表达融合蛋白,利用IDA -Ni2+ 亲和柱纯化,葡聚糖凝胶G 25除去尿素后得到可溶的变性蛋白.纯化后的TAT apoptin加入体外培养的人脐静脉内皮细胞(HUVECs)和人肺癌Anip973细胞,对照组加入TAT-麦芽糖结合蛋白(TAT-MBP). 经免疫组化检测,转导1 h后TAT-MBP分布于以上两种细胞的胞浆和胞核,TAT-apoptin则主要分布于2种细胞的胞浆内,转导24 h后TAT-MBP的亚细胞定位没有变化,TAT-apoptin分别定位于HUVECs的胞浆和Anip973的胞核中.脱氧核糖核苷酸末端转移酶介导的缺口末端标记法(TUNEL)显示转导48 h后,TAT-MBP处理过的 HUVECs和Anip973细胞、TAT-apoptin处理过的HUVECs没有明显改变,而TAT-apoptin处理过的Anip973细胞大量凋亡.以上结果表明TAT apoptin融合蛋白在肿瘤治疗上有潜在的应用价值.  相似文献   

11.
Hahne P  Sechi A  Benesch S  Small JV 《FEBS letters》2001,492(3):215-220
Cell motility entails the extension of cytoplasmic processes, termed lamellipodia and filopodia. Extension is driven by actin polymerisation at the tips of these processes via molecular complexes that remain to be characterised. We show here that a green fluorescent protein (GFP) fusion of the Wiskott-Aldrich syndrome protein family member Scar1/WAVE1 is specifically recruited to the tips of lamellipodia in living B16F1 melanoma cells. Scar1-GFP was recruited only to protruding lamellipodia and was absent from filopodia. The localisation of Scar was facilitated by the finding that the formerly described inhibition of lamellipodia formation by ectopical expression of Scar, could be overcome by the treatment of cells with aluminium fluoride. These findings show that Scar is strategically located at sites of actin polymerisation specifically engaged in the protrusion of lamellipodia.  相似文献   

12.
Kim H  Park M  Kim SJ  Hwang I 《The Plant cell》2005,17(3):888-902
Actin filaments are thought to play an important role in intracellular trafficking in various eukaryotic cells. However, their involvement in intracellular trafficking in plant cells has not been clearly demonstrated. Here, we investigated the roles actin filaments play in intracellular trafficking in plant cells using latrunculin B (Lat B), an inhibitor of actin filament assembly, or actin mutants that disrupt actin filaments when overexpressed. Lat B and actin2 mutant overexpression inhibited the trafficking of two vacuolar reporter proteins, sporamin:green fluorescent protein (GFP) and Arabidopsis thaliana aleurain-like protein:GFP, to the central vacuole; instead, a punctate staining pattern was observed. Colocalization experiments with various marker proteins indicated that these punctate stains corresponded to the Golgi complex. The A. thaliana vacuolar sorting receptor VSR-At, which mainly localizes to the prevacuolar compartment, also accumulated at the Golgi complex in the presence of Lat B. However, Lat B had no effect on the endoplasmic reticulum (ER) to Golgi trafficking of sialyltransferase or retrograde Golgi to ER trafficking. Lat B also failed to influence the Golgi to plasma membrane trafficking of H+-ATPase:GFP or the secretion of invertase:GFP. Based on these observations, we propose that actin filaments play a critical role in the trafficking of proteins from the Golgi complex to the central vacuole.  相似文献   

13.
The actin filament-associated protein AFAP-110 is an SH2/SH3 binding partner for Src. AFAP-110 contains several protein-binding motifs in its amino terminus and has been hypothesized to function as an adaptor molecule that could link signaling proteins to actin filaments. Recent studies using deletional mutagenesis demonstrated that AFAP-110 can alter actin filament integrity in SV40 transformed Cos-1 cells. Thus, AFAP-110 may be positioned to modulate the effects of Src upon actin filaments. In this report, we sought to determine whether (a) AFAP-110 could interact with actin filaments directly and (b) deletion mutants could affect actin filament integrity and cell shape in untransformed fibroblast cells. The data demonstrate that the carboxy terminus of AFAP-110 is both necessary and sufficient for actin filament association, in vivo and in vitro. Analysis of the carboxy terminus revealed a mean 40% similarity with other known actin-binding motifs, indicating a mechanism for binding to actin filaments. AFAP-110 can also induce lamellipodia formation. Contiguous with the alpha-helical, actin-binding motif is an alpha-helical, leucine zipper motif. Deletion of the leucine zipper motif (AFAP(Deltalzip)) followed by cellular expression enabled AFAP(Deltalzip) to alter actin filament integrity and cell shape in untransformed cells as evidenced by the induction of lamellipodia formation. We hypothesize that AFAP-110 may be an important signaling protein that can directly modulate changes in actin filament integrity and induce lamellipodia formation.  相似文献   

14.
The amino terminus of muscle tropomyosin is a major determinant for function   总被引:11,自引:0,他引:11  
The amino-terminal region of muscle tropomyosin is highly conserved among muscle and 284-residue non-muscle tropomyosins. Analysis of fusion and nonfusion striated alpha-tropomyosins and a mutant in which residues 1-9 have been deleted has shown that the amino terminus is crucial for function. The presence of 80 amino acids of a nonstructural influenza virus protein (NS1) on the amino terminus of tropomyosin allows magnesium-independent binding of tropomyosin to actin. The fusion tropomyosin inhibits the actomyosin S1 ATPase at all myosin S1 concentrations tested, indicating that the presence of the fusion peptide prevents myosin S1 from switching the actin filament from the inhibited to the potentiated state. Nonfusion tropomyosin, an unacetylated form, has no effect on the actomyosin S1 ATPase, though it regulates normally with troponin. Deletion of residues 1-9, which are believed to overlap with the carboxyl-terminal end of tropomyosin in the thin filament, results in loss of tropomyosin function. The mutant is unable to bind to actin, in the presence and absence of troponin, and it has no regulatory function. The removal of the first 9 residues of tropomyosin is much more deleterious than removal of the last 11 by carboxypeptidase digestion. We suggest that the structure of the amino-terminal region and acetylation of the initial methionine are crucial for tropomyosin function.  相似文献   

15.
用农杆菌介导法将嵌合基因GFP-mTn(mTn是微丝结合蛋白Talin的微丝结合域,可以显示活体细胞中微丝的结构)导入蓝猪耳.经激光共聚焦显微镜观察了转基因植株的各种不同组织中融合蛋白的表达和分布情况.在叶片的表皮细胞、保卫细胞、根部的皮层细胞中有融合蛋白的不同程度表达.但仅在保卫细胞中微丝标记状况良好,显示基因表达的组织特异性.经光诱导处于开放态的气孔的保卫细胞微丝呈网状结构,在细胞内无规则分布;经黑暗诱导处于关闭态的气孔保卫细胞中微丝束沿保卫细胞纵轴排列,呈卷曲状分布,并观察到螺旋和环状的微丝结构.在转基因植株的其他部位,例如茎表皮细胞、根毛细胞和花粉粒中,未检测到目的基因的表达.本研究获得的转基因植株为研究气孔运动过程中微丝动态变化提供了有用的材料.  相似文献   

16.
用农杆菌介导法将嵌合基因GFP-mTn(mTn是微丝结合蛋白Talin的微丝结合域,可以显示活体细胞中微丝的结构)导入蓝猪耳。经激光共聚焦显微镜观察了转基因植株的各种不同组织中融合蛋白的表达和分布情况。在叶片的表皮细胞、保卫细胞、根部的皮层细胞中有融合蛋白的不同程度表达。但仅在保卫细胞中微丝标记状况良好,显示基因表达的组织特异性。经光诱导处于开放态的气孔的保卫细胞微丝呈网状结构,在细胞内无规则分布;经黑暗诱导处于关闭态的气孔保卫细胞中微丝束沿保卫细胞纵轴排列,呈卷曲状分布,并观察到螺旋和环状的微丝结构。在转基因植株的其他部位,例如茎表皮细胞、根毛细胞和花粉粒中,未检测到目的基因的表达。本研究获得的转基因植株为研究气孔运动过程中微丝动态变化提供了有用的材料。  相似文献   

17.
Here we describe the identification of a novel 37-kD actin monomer binding protein in budding yeast. This protein, which we named twinfilin, is composed of two cofilin-like regions. In our sequence database searches we also identified human, mouse, and Caenorhabditis elegans homologues of yeast twinfilin, suggesting that twinfilins form an evolutionarily conserved family of actin-binding proteins. Purified recombinant twinfilin prevents actin filament assembly by forming a 1:1 complex with actin monomers, and inhibits the nucleotide exchange reaction of actin monomers. Despite the sequence homology with the actin filament depolymerizing cofilin/actin-depolymerizing factor (ADF) proteins, our data suggests that twinfilin does not induce actin filament depolymerization. In yeast cells, a green fluorescent protein (GFP)–twinfilin fusion protein localizes primarily to cytoplasm, but also to cortical actin patches. Overexpression of the twinfilin gene (TWF1) results in depolarization of the cortical actin patches. A twf1 null mutation appears to result in increased assembly of cortical actin structures and is synthetically lethal with the yeast cofilin mutant cof1-22, shown previously to cause pronounced reduction in turnover of cortical actin filaments. Taken together, these results demonstrate that twinfilin is a novel, highly conserved actin monomer-sequestering protein involved in regulation of the cortical actin cytoskeleton.  相似文献   

18.
Actin filament pointed-end dynamics are thought to play a critical role in cell motility, yet regulation of this process remains poorly understood. We describe here a previously uncharacterized tropomodulin (Tmod) isoform, Tmod3, which is widely expressed in human tissues and is present in human microvascular endothelial cells (HMEC-1). Tmod3 is present in sufficient quantity to cap pointed ends of actin filaments, localizes to actin filament structures in HMEC-1 cells, and appears enriched in leading edge ruffles and lamellipodia. Transient overexpression of GFP-Tmod3 leads to a depolarized cell morphology and decreased cell motility. A fivefold increase in Tmod3 results in an equivalent decrease in free pointed ends in the cells. Unexpectedly, a decrease in the relative amounts of F-actin, free barbed ends, and actin-related protein 2/3 (Arp2/3) complex in lamellipodia are also observed. Conversely, decreased expression of Tmod3 by RNA interference leads to faster average cell migration, along with increases in free pointed and barbed ends in lamellipodial actin filaments. These data collectively demonstrate that capping of actin filament pointed ends by Tmod3 inhibits cell migration and reveal a novel control mechanism for regulation of actin filaments in lamellipodia.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号