首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 109 毫秒
1.
通过SPSepharose,DNA纤维素和磷酸纤维素等柱层析 ,从极端嗜热古菌———芝田硫化叶菌 (Sulfolobusshibatae)中纯化得到分子量为 11.5ku的DNA结合蛋白Ssh12 .Ssh12约占细胞总蛋白的 4% .该蛋白既能与负超螺旋DNA也能与松弛DNA结合 .利用含单切刻环状DNA进行的切刻闭合分析表明 ,Ssh12在与DNA结合时能够固定负超螺旋 .这种能力在室温 ( 2 2℃ )下很弱 ,而在 3 7℃以上则大大增强 .Ssh12的细胞内含量和固定负超螺旋的能力提示 ,该蛋白对于芝田硫化叶菌染色体DNA的组织以及热稳定性起着重要作用 .  相似文献   

2.
陈绪林  R.Hong  郭荣  黄力 《中国科学C辑》2002,32(4):321-328
嗜酸热古菌——芝田硫化叶菌(Sulfolobus shibatae)合成大量7 kD DNA结合蛋白Ssh7. Southern杂交结果显示, 该菌基因组中含有两个编码Ssh7蛋白的基因, 分别命名为ssh7assh7b. 对这两个基因进行了克隆、序列测定和在大肠杆菌中的表达. 测序结果表明, 两个Ssh7多肽仅在3个氨基酸位置上有差异; 此外, ssh7assh7b的顺式调控序列也十分相似, 提示存在着维持两个基因的序列和表达都不变的选择压力. 杂交结果还显示, 与芝田硫化叶菌一样, 硫磺矿硫化叶菌(Sulfolobus solfataricus)基因组中也含有两个编码7 kD蛋白的基因. 结合其他报道, 这一结果提示编码7 kD蛋白的基因可能在硫化叶菌种间分歧形成之前发生了基因复制. 采用电泳迁移率改变试验(EMSA)分析了天然及重组Ssh7蛋白与双链DNA片段之间的相互作用. 天然和重组蛋白的EMSA行为相似, 说明Ssh7与DNA的相互作用既不受发生在天然蛋白赖氨酸残基上的甲基化的影响, 也不受两种多肽异构体之间在序列上的差异的影响. 在所采用的实验条件下, Ssh7与双链DNA片段结合时的结合位点大约为6.6 bp, 表观解离常数为(0.7~1.0)×10-7 mol/L. 此外, Ssh7与负超螺旋DNA的结合强于与线性和松弛DNA的结合.  相似文献   

3.
体细胞核移植(体细胞克隆)技术在动物生产、医药工业、治疗性克隆以及对珍稀濒危动物的拯救有重要意义,然而克隆效率低下以及克隆动物发育异常,严重制约了克隆技术的发展和应用.在体细胞核克隆中,供体核来自高度分化了的体细胞,发生在核移植后几小时内供体核的重编程,决定了克隆胚胎的发育能力.印记基因是由等位基因表观遗传修饰的不对称导致的基因表达具有亲本选择性,而DNA甲基化是调控印记的一个主要方式.印记基因Mash2在胚胎发育和器官形成过程中起着非常重要的作用.为了探求核移植过程中Mash2基因DNA 甲基化的表观重编程是否充分,利用亚硫酸氢盐测序法对出生48 h内死亡的体细胞核移植牛和正常对照牛肺脏中Mash2基因的DNA甲基化状态进行分析.结果显示,尽管位于Mash2基因启动子和第一个外显子处的CpG岛在正常牛和克隆牛中甲基化水平都不高(20.04%,5.55%),但克隆组的甲基化水平仍显著低于正常对照组 (P < 0.05).甲基化模式正常组中9N3有5种不同的形式,9N4仅1种;而克隆组9C3和9C5也分别是1种.推测Mash2基因的异常DNA甲基化很可能是导致克隆牛肺脏发育异常的一个重要原因.  相似文献   

4.
大肠杆菌周质和外膜蛋白的定位   总被引:1,自引:0,他引:1  
大肠杆菌周质和外膜蛋白发挥功能必须首先到达其特定亚细胞分区.大肠杆菌通过一系列与蛋白质分泌有关的蛋白(Sec蛋白)将周质和外膜蛋白转运至内膜.在切除了信号肽后,与周质蛋白的定位不同的是,外膜蛋白的最终定位还需要其他因子的协助.外膜蛋白的定位近来认为是以周质作为中介的.  相似文献   

5.
Rab5B类蛋白因为其编码产物的N端具有特殊结构而被认为是一类特殊的蛋白质.水稻rab5B基因Osrab5B是这类蛋白质基因在单子叶植物中的首例发现.将Osrab5B基因的编码序列按正确读码框重组到具有谷胱甘肽硫转移酶(glutathione S-transferase, GST)融合标签的pGEX-4T1表达载体中,转化大肠杆菌,获得了稳定表达目标融合蛋白的菌株,经GSTrapTM柱纯化,获得了纯化的目标融合蛋白.GTP结合试验表明,在原核细胞中表达出的GST-OsRab5B融合蛋白具有体外结合GTP的能力.  相似文献   

6.
NDFl、IPFl和HNF4是与胰岛素基因表达有关的DNA结合蛋白,通过比较SWISSPROT蛋白质数据库中人类、小鼠、大鼠这三种核蛋白氨基酸一级序列、模体和结构域,发现其结构十分相似,根据蛋白质结构和功能的关系,推测这些DNA结合蛋白与胰岛素基因结合的核苷酸序列相似;从GenBanl(核酸数据库中获得人类、小鼠、大鼠胰岛素DNA序列,用ClustalW比较三者Promoter区的核苷酸序列,显示有一段核苷酸序列较为相似,同时搜索TRANSFAC基因转录数据库中NDFl、IPFl和NHF4蛋白核苷酸结合位点,发现核酸比对保守的部分序列与TRANSFAC数据库中这三个转录因子的DNA结合位点一致,另外一些核酸保守序列可能为其他未知DNA结合蛋白的结合位点。这种核酸序列比对设计为分子生物学实验寻找和验证胰岛素DNA结合蛋白与核苷酸的结合位点提供了简单而实用的方法。  相似文献   

7.
8.
9.
为研究DNA疫苗从细胞质到细胞核的过程,对免疫细胞中DNA疫苗的结合蛋白进行初步鉴定。 提取小鼠脾脏免疫细胞的细胞质蛋白,将细胞质蛋白分别与 DNA 疫苗 pVAX-OVA 和空载体 pVAX 共孵育,孵育后首先由琼脂糖凝胶电泳分离与DNA结合的蛋白,然后通过SDS-PAGE进行分离和纯化,最后应用质谱技术分析其蛋白组分。质谱结果初步鉴定了免疫细胞中pVAX-OVA 结合的蛋白有IQ motif containing F4 等。免疫细胞中与 pVAX 结合的蛋白有Foxl2,SUV420H2 和 gamma actin 等。Foxl2具有核定位序列,DNA结合区域和与核转运蛋白相互作用的特点,可能对DNA疫苗的进入具有促进作用。这些蛋白质是否可以影响DNA疫苗有效进入细胞核进行基因表达需要进一步研究。  相似文献   

10.
为了探索人工栽培白及的适宜条件,该研究以湖北省十堰市野生白及为对象,采用同源克隆和3'RACE技术,从白及(Bletilla striata)中获得与热激蛋白合成有关的BsHsp17.3基因,并分析BsHsp17.3基因对不同胁迫的响应。结果表明:BsHsp17.3基因开放阅读框长度为453 bp,编码150个氨基酸;蛋白的分子量为17.42 kD,等电点为6.33。进化树分析表明BsHSP17.3蛋白与同为兰科的铁皮石斛进化关系较近,同在一分支上。半定量RT-PCR分析显示BsHsp17.3基因在白及根、叶、鳞茎及花组织中的表达具有特异性,且BsHsp17.3基因在叶中的表达量较高,在鳞茎及花中不表达。实时荧光定量PCR检测显示BsHsp17.3对非生物胁迫高温、低温具有明显应答反应,20%PEG模拟干旱胁迫不诱导该基因表达,推测该基因在白及防止倒苗过程中可能发挥一定作用。  相似文献   

11.
极端嗜热古菌———芝田硫化叶菌 DNA 连接酶 (Ssh 连接酶 ) 的最适辅因子为 ATP ,在 dATP 存在时,该酶也能表现出较弱的连接活性 . ATP 或 dATP 都能够使该酶发生腺苷化,腺苷化的 Ssh 连接酶能够将腺苷基团转移至含切刻的 DNA 上 . 电泳迁移率改变实验表明, Ssh 连接酶能够结合双链 DNA ,且与含切刻及不含切刻的 DNA 结合的亲和力相同,但不结合单链 DNA. 酵母双杂交实验显示,硫磺矿硫化叶菌 ( 与芝田硫化叶菌亲缘关系很近 ) 的 DNA 连接酶,与该菌所含的 3 个增殖细胞核抗原 (PCNA) 同源蛋白中的一个 (PCNA-1) 有相互作用,而与另外 2 个同源蛋白 (PCNA-like 和 PCNA-2) 则无相互作用 . 在古菌中高度保守的 Sac10b 蛋白家族成员 Ssh10b 能够激活 Ssh 连接酶的活性,而硫化叶菌中的主要染色体蛋白——— 7 ku DNA 结合蛋白 (Ssh7) 则对该酶活性没有影响 .  相似文献   

12.
In Escherichia coli, the recovery of replication following disruption by UV-induced DNA damage requires the RecF protein and occurs through a process that involves stabilization of replication fork DNA, resection of nascent DNA to allow the offending lesion to be repaired, and reestablishment of a productive replisome on the DNA. RecF forms a homodimer and contains an ATP binding cassette ATPase domain that is conserved among eukaryotic SMC (structural maintenance of chromosome) proteins, including cohesin, condensin, and Rad50. Here, we investigated the functions of RecF dimerization, ATP binding, and ATP hydrolysis in the progressive steps involved in recovering DNA synthesis following disruption by DNA damage. RecF point mutations with altered biochemical properties were constructed in the chromosome. We observed that protein dimerization, ATP binding, and ATP hydrolysis were essential for maintaining and processing the arrested replication fork, as well as for restoring DNA synthesis. In contrast, stabilization of the RecF protein dimer partially protected the DNA at the arrested fork from degradation, although overall processing and recovery remained severely impaired.  相似文献   

13.
三链DNA的形成抑制DNA结合蛋白与启动子的结合   总被引:3,自引:1,他引:3  
电泳迁移分析方法及DNaseⅠ足迹实验表明21nt脱氧寡核苷酸G3TG2T GT2G5TG2TGT(CP1)与乙肝病毒(HBV)核心启动子(Cp)片段之间三链DNA的形成有较高的特异性及稳定性.凝胶滞留实验显示, 在大鼠肝细胞核提取物体外转录系统中, CP1可特异地抑制DNA结合蛋白与Cp片段的结合, 而不能与Cp结合形成三链DNA的脱氧寡核苷酸CP3(TGTG2TG5T2GTG2TG3)对蛋白与Cp的结合并无抑制作用.这些结果表明, 三链DNA的形成有可能抑制HBV DNA的转录.  相似文献   

14.
Homologous recombination is an important pathway in the repair of DNA double-strand breaks in all organisms. In mesophiles, single-stranded DNA binding proteins (SSBs) are believed to be involved in the removal of single-stranded DNA (ssDNA) secondary structure during the presynaptic step of homologous recombination, facilitating the formation of a contiguous Rad51/RecA nucleoprotein filament. Here we report a role for the thermophilic archaeal Sulfolobus solfataricus SSB (SsoSSB) in the presynaptic step of homologous recombination. We have identified multiple quaternary structural forms of this protein in vivo and examined the activity of SsoSSB with the strand-exchange protein S. solfataricus RadA (SsoRadA). Using gel-shift analysis, we found that the two major forms of SsoSSB have different DNA binding affinities and site sizes. Biochemical examination of the monomeric form of SsoSSB suggests that it has a minor role in presynapsis and may slightly inhibit the ssDNA-dependent ATPase activity of SsoRadA. The tetrameric form of SsoSSB, however, significantly inhibits SsoRadA ssDNA-dependent ATPase activity under both saturating and subsaturating conditions. Order-of-addition experiments indicate that preincubation of tetrameric SsoSSB and SsoRadA prior to reaction initiation with ssDNA relieves the inhibition observed when SsoSSB is added either before or after SsoRadA. In addition, we demonstrate a direct interaction between SsoRadA and SsoSSB using coimmunoprecipitation. Taken together, these results suggest that a direct interaction between SsoSSB and SsoRadA may occur in vivo prior to the formation of the SsoRadA nucleoprotein filament.  相似文献   

15.
An 11.5-ku DNA binding protein, designated as Sshl2, was purified from the hyperthermophilic archaeon Sulfolobus shibatae by column chromatography in SP Sepharose, DNA cellulose and phosphocellulose. Sshl2 accounts for about 4 % of the total cellular protein. The protein is capable of binding to both negatively supercoiled and relaxed DNAs. Nick closure analysis revealed that Sshl2 constrains negative supercoils upon binding to DNA. While the ability of the protein to constrain supercoils is weak at 22℃ , it is enhanced substantially at temperatures higher than 37℃ . Both the cellular content and supercoil-constraining ability of Sshl2 suggest that the protein may play an important role in the organization and stabilization of the chromosome of S. shibatae.  相似文献   

16.
The human UV-damaged DNA binding protein (UV-DDB), a heterodimeric protein composed of 127 kDa (UV-DDB1) and 48 kDa (UV-DDB2) subunits, has been shown to be involved in DNA repair. To elucidate the in vivo function of plant UV-DDB2, we have analyzed T-DNA insertion mutants of the Arabidopsis thaliana UV-DDB2 subunit (atuv-ddb2 mutants) and AtUV-DDB2 RNAi silenced plants (atuv-ddb2 silenced plants). atuv-ddb2 mutants and atuv-ddb2 silenced plants were both viable, suggesting that AtUV-DDB2 is not essential for survival. Interestingly, both plant types showed a dwarf phenotype, implying impaired growth of the meristem. To the best of our knowledge, this is the first occasion that a dwarf phenotype has been found to be associated with a UV-DDB2 mutation in either plants or animals. The mutants also demonstrated increased sensitivity to UV irradiation, methyl methanesulfonate and hydrogen peroxide treatment, indicating that AtUV-DDB2 is also involved in DNA repair. Our results lead us to suggest that not only does AtUV-DDB2 function in DNA repair, it also has a direct or indirect influence on cell proliferation in the plant meristem. Sequence data from this article have been deposited with the EMBL/GenBank Data Libraries.  相似文献   

17.
An 11.5-ku DNA binding protein, designated as Sshl2, was purified from the hyperthermophilic archaeon Sulfolobus shibatae by column chromatography in SP Sepharose, DNA cellulose and phosphocellulose. Sshl2 accounts for about 4 % of the total cellular protein. The protein is capable of binding to both negatively supercoiled and relaxed DNAs. Nick closure analysis revealed that Sshl2 constrains negative supercoils upon binding to DNA. While the ability of the protein to constrain supercoils is weak at 22℃ , it is enhanced substantially at temperatures higher than 37℃ . Both the cellular content and supercoil-constraining ability of Sshl2 suggest that the protein may play an important role in the organization and stabilization of the chromosome of S. shibatae.  相似文献   

18.
Plasmodium falciparum can invade all stages of red blood cells, while Plasmodium vivax can invade only reticulocytes. Although many P. vivax proteins have been discovered, their functions are largely unknown. Among them, P. vivax reticulocyte binding proteins (PvRBP1 and PvRBP2) recognize and bind to reticulocytes. Both proteins possess a C-terminal hydrophobic transmembrane domain, which drives adhesion to reticulocytes. PvRBP1 and PvRBP2 are large (> 326 kDa), which hinders identification of the functional domains. In this study, the complete genome information of the P. vivax RBP family was thoroughly analyzed using a prediction server with bioinformatics data to predict B-cell epitope domains. Eleven pvrbp family genes that included 2 pseudogenes and 9 full or partial length genes were selected and used to express recombinant proteins in a wheat germ cell-free system. The expressed proteins were used to evaluate the humoral immune response with vivax malaria patients and healthy individual serum samples by protein microarray. The recombinant fragments of 9 PvRBP proteins were successfully expressed; the soluble proteins ranged in molecular weight from 16 to 34 kDa. Evaluation of the humoral immune response to each recombinant PvRBP protein indicated a high antigenicity, with 38-88% sensitivity and 100% specificity. Of them, N-terminal parts of PvRBP2c (PVX_090325-1) and PvRBP2 like partial A (PVX_090330-1) elicited high antigenicity. In addition, the PvRBP2-like homologue B (PVX_116930) fragment was newly identified as high antigenicity and may be exploited as a potential antigenic candidate among the PvRBP family. The functional activity of the PvRBP family on merozoite invasion remains unknown.  相似文献   

19.
In the past decade, single-molecule force spectroscopy has provided new insights into the key interactions stabilizing folded proteins. A few recent studies probing the effects of ligand binding on mechanical protein stability have come to quite different conclusions. While some proteins seem to be stabilized considerably by a bound ligand, others appear to be unaffected. Since force acts as a vector in space, it is conceivable that mechanical stabilization by ligand binding is dependent on the direction of force application. In this study, we vary the direction of the force to investigate the effect of ligand binding on the stability of maltose binding protein (MBP). MBP consists of two lobes connected by a hinge region that move from an open to a closed conformation when the ligand maltose binds. Previous mechanical experiments, where load was applied to the N and C termini, have demonstrated that MBP is built up of four building blocks (unfoldons) that sequentially detach from the folded structure. In this study, we design the pulling direction so that force application moves the two MBP lobes apart along the hinge axis. Mechanical unfolding in this geometry proceeds via an intermediate state whose boundaries coincide with previously reported MBP unfoldons. We find that in contrast to N-C-terminal pulling experiments, the mechanical stability of MBP is increased by ligand binding when load is applied to the two lobes and force breaks the protein-ligand interactions directly. Contour length measurements indicate that MBP is forced into an open conformation before unfolding even if ligand is bound. Using mutagenesis experiments, we demonstrate that the mechanical stabilization effect is due to only a few key interactions of the protein with its ligand. This work illustrates how varying the direction of the applied force allows revealing important details about the ligand binding mechanics of a large protein.  相似文献   

20.
A recombinant blood-stage vaccine for Plasmodium vivax malaria based on the functional receptor-binding domain of PvDBP (PvRII) has been developed. A synthetic gene coding for PvRII was expressed in Escherichia coli using codon optimization. Expression level of recombinant PvRII was 10% of the total cellular proteins. Truncated PvRII products, seen when the native PvRII gene was expressed, were absent in case of synthetic gene.  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