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1.
【背景】大肠杆菌拓扑异构酶Ⅰ(Escherichia coli topoisomerase I,E.coli TopA)在DNA复制、转录、重组和基因表达调控等过程发挥关键作用。研究表明E.coli TopA只有结合锌离子才具有活性,然而E.coli TopA能否结合其他金属离子尤其是重金属离子,以及结合其他金属后是否具有活性,目前仍不清楚。【目的】探究大肠杆菌拓扑异构酶Ⅰ是否结合环境中常见重金属离子,研究重金属离子结合E.coli TopA蛋白后对其活性的影响。【方法】在分别添加有锌、钴、镍、镉、铁、汞、砷、铬、铅、铜离子的M9基础培养中表达、纯化出E.coli TopA蛋白,并对纯化得到的蛋白用电感耦合等离子体质谱仪进行相应金属离子含量的测定;利用表达E.coli TopA锌指结构的突变体蛋白鉴定重金属离子的结合位点;通过体外超螺旋DNA松弛实验测定不同金属结合E.coli TopA的拓扑异构酶活性;通过测定蛋白内源性荧光推测不同金属结合E.coli TopA的空间构象差异。【结果】E.coli TopA在体内除了能结合锌和铁之外,还能够结合钴、镍、镉3种离子,但是不能结合汞、砷、铬、铅、铜离子。钴、镍、镉结合形式的E.coli TopA,每个蛋白分子最多可以结合3个相应的金属离子,他们与TopA蛋白的结合位点也是位于3个锌指结构域,而且每个锌指结构域结合1个金属离子。此外,E.coli TopA结合钴、镍、镉离子后,其DNA拓扑异构酶活性并未受到影响,可能是由于钴、镍、镉离子结合形式的E.coli TopA蛋白,其空间构象与锌结合形式相比并未发生显著变化。【结论】由于DNA拓扑异构酶在维持细胞正常生理功能中发挥关键作用,研究表明E.coli TopA的功能不会受到常见重金属的干扰(不结合或者结合后活性无影响),这也有可能是大肠杆菌在进化过程中产生的对抗环境中重金属离子毒害作用的一种自我保护和耐受机制,具有重要的生理意义。  相似文献   

2.
大肠杆菌拓扑异构酶 I(E. coli TopA)属于 I 型拓扑异构酶,在DNA复制、转录、重组和基因表达调控等过程中发挥关键作用。E. coli TopA 不仅能结合锌,还可以结合铁。细胞内过量铁可与锌竞争,通过与锌指结构域结合减弱其 DNA 结合能力和改变蛋白质空间构象,从而抑制TopA拓扑异构酶活性。然而,铁结合形式TopA的氧化还原特性以及氧化还原条件对其活性的影响仍不清楚。本研究通过紫外分光光谱和体外DNA拓扑异构酶活性分析,发现体外纯化得到的铁结合形式的 TopA 呈氧化状态,能够被二硫苏糖醇和连二亚硫酸钠还原,原本氧化状态下无活性的TopA在还原条件下,可恢复其拓扑异构酶活性。当还原剂被去除后,铁结合的TopA在空气中能够重新被氧化,且其活性重新受到抑制。这说明,氧化还原条件对铁结合的 TopA 功能具有可逆调节作用。通过金属 蛋白体外结合实验进一步发现,无金属结合的TopA蛋白(apo-TopA)在无氧条件下,与 Fe2+ 和 Fe3+ 均能结合,但与Fe2+ 结合能力较弱,并且TopA结合的Fe3+ 被还原成Fe2+ 后,结合力显著下降,能够被铁螯合指示剂菲咯嗪快速捕获。此外,蛋白质内源性荧光光谱分析实验表明,铁结合的TopA在氧化还原的不同状态时,其在330 nm左右的荧光值有显著差异。这提示,氧化还原条件可能通过影响铁离子与TopA的结合状态,引起蛋白质空间构象改变,从而对TopA的拓扑异构酶活性进行调节。此研究表明,铁结合TopA的拓扑异构酶活性会受到细胞内氧化还原信号的可逆调控,也提示I型拓扑异构酶可能是细胞铁超载通过氧化损伤引起细胞功能障碍(或铁死亡)的靶点之一。  相似文献   

3.
YacG蛋白是一种能够抑制大肠杆菌促旋酶(E.coli gyrase)活性的内源性小分子蛋白质,仅由65 个氨基酸残基组成。核磁共振(NMR)研究发现,YacG结构中含有1个Cys-X2-Cys-X15-Cys-X3-Cys序列的锌指结构域,然而其作用并不清楚。本研究发现,在添加外源锌或者铁的M9基础培养基中,表达并纯化得到分别含有锌和铁的YacG蛋白,而在同时添加铁和L-半胱氨酸的M9基础培养基中可以纯化得到含有铁硫簇的蛋白质。这表明,YacG不仅是一个锌指蛋白,也是铁结合或铁硫簇结合蛋白。定点突变实验发现,YacG锌指结构中的4个半胱氨酸残基突变后,其结合的锌、铁、铁硫簇的含量都显著下降。这提示,锌结合、铁结合以及铁硫簇结合的位点均位于锌指结构域中的4个半胱氨酸残基。体内YacG过表达实验显示,用IPTG在大肠杆菌体内诱导表达野生型YacG蛋白会导致其生长明显受到抑制,而过表达突变体蛋白(YacG-C12/28S)对其生长的抑制作用将会减弱。体外实验进一步发现,锌结合、铁结合以及铁硫簇结合形式的YacG蛋白对E.coli gyrase促DNA螺旋活性的抑制作用没有明显差别,但是锌指结构突变体蛋白(YacG-C12/28S)对gyrase活性的抑制作用显著减弱。这说明,完整的锌指结构对YacG抑制gyrase活性的功能具有重要作用。此研究有可能为gyrase抑制剂类抗生素药物的研发提供有用的线索。  相似文献   

4.
木犀草素对金黄色葡萄球菌的抑菌活性及其机制   总被引:10,自引:0,他引:10  
王倩  谢明杰 《微生物学报》2010,50(9):1180-1184
【目的】研究木犀草素对金黄色葡萄球菌的抑制活性及其机制。【方法】利用2,3,5-氯化三苯基四氮唑(TTC)染色,细胞膜渗透性测定,SDS-PAGE蛋白谱变化,4′,6-二脒基-2-苯基吲哚(DAPI)荧光染色法等对木犀草素的抑菌活性及其机制进行研究。【结果】木犀草素能影响金黄色葡萄球菌细胞膜的通透性,木犀草素作用16h,菌体可溶性蛋白总量减少64.54%,DNA含量减少48.44%,RNA含量减少39.35%,木犀草素的浓度为1.6mg/mL时,拓扑异构酶I和II的活性可完全被抑制。【结论】木犀草素有明显的抑菌活性,其抑菌机制主要是通过抑制DNA拓扑异构酶的活性,进而影响菌体核酸及蛋白质的合成来实现的。  相似文献   

5.
结核分枝杆菌(Mycobaterium tuberculosis)是结核病的病原菌,每年导致数百万人死亡.对于分枝杆菌基本生物学特性的研究有助于新的药物及治疗手段的研发.耻垢分枝杆菌(M.smegmatis)是分枝杆菌属中的一种非致病菌,与结核分枝杆菌亲缘关系较近,是实验室常用的研究分枝杆菌的模式菌种.分枝杆菌主要编码三种染色质蛋白,类组蛋白HU、Lsr2和宿主整合因子IHF.为研究IHF在染色体包装中的作用,我们在大肠杆菌中表达、纯化了耻垢分枝杆菌IHF蛋白(MsIHF),并对其影响DNA拓扑结构的性质进行了系统分析.体外研究的结果表明,MsIHF以同二聚体的形式存在,其对负超螺旋DNA具有一定的结合偏好性,同时,该蛋白可以有效地固定DNA负超螺旋.进一步的研究表明,MsIHF可以调控拓扑异构酶的活性.MsIHF的结合明显地抑制拓扑异构酶Ⅰ的松弛活性,而与此相反,该蛋白可以轻微地促进旋转酶引入DNA负超螺旋的能力.以上结果提示,MsIHF可能通过调控拓扑异构酶的活性影响染色体DNA的结构,进而调控其包装.  相似文献   

6.
【目的】将地衣芽孢杆菌(Bacilluslicheniformis)E7氨肽酶基因pepN克隆到大肠杆菌(Escherichia coli) BL21中,实现氨肽酶Ec PepN的异源表达,研究重组酶的酶学性质及其与碱性蛋白酶协同作用,高效水解大豆蛋白和酪蛋白,产生小分子活性肽和游离氨基酸。【方法】以地衣芽孢杆菌E7基因组DNA为模板,将氨肽酶基因pepN克隆到载体pET28a中,构建重组表达载体pET28-pepN,转化到大肠杆菌BL21感受态细胞中,经DNA测序验证,获得重组菌E. coli BL21/pET28-pepN。利用镍离子亲和层析柱对重组酶进行分离纯化,研究纯酶的pH和温度稳定性、半衰期和NaCl的耐受性等酶学性质。以商品化氨肽酶与碱性蛋白酶协同作用为对照,重组酶Ec PepN与碱性蛋白酶协同水解大豆蛋白和酪蛋白,测定水解产物中小分子活性肽和游离氨基酸的组成。【结果】Ec PepN在大肠杆菌BL21中可溶性表达,SDS-PAGE分析表明纯化的重组酶在52kDa左右显示单一条带。在7种测定底物中,Ec PepN的最适底物为Ala-pNA。在最适条件(pH 9.0和50°C...  相似文献   

7.
【目的】ZntR是一种金属调控蛋白,可催化锌外排基因的转录激活,防止细胞内二价Zn离子过量,但其对细菌生理功能的影响目前尚不清楚。【方法】本研究构建了嗜水气单胞菌ATCC7966(Aeromonas hydrophila,A.h)的zntR缺失株及补救株,对菌株的生物被膜形成能力、溶血活性、运动能力和响应金属离子胁迫等生理表型进行评估。【结果】敲除zntR基因的菌株对锌和铬离子胁迫敏感、对钴离子胁迫耐受,并且生物被膜形成能力下降、运动能力增强,这些表型在其补救菌株中均能得到恢复。进一步利用DIA定量蛋白质组学技术比较野生株和zntR缺失株的蛋白表达差异,发现ZntR还可能参与双组分系统、细菌的趋化性等代谢通路的调控。【结论】该研究结果可为今后深入探讨zntR转录因子参与细菌生理功能的调控机制提供理论依据。  相似文献   

8.
【目的】研究锌离子缺乏对肺炎链球菌的影响,找到其适应性生长机制。【方法】以肺炎链球菌为模型,利用加锌和不加锌的培养基对细菌进行培养,收集细胞蛋白,采用双向凝胶电泳,结合金属亲和层析和质谱技术鉴定差异表达蛋白,进而通过生物信息学分析蛋白质相互关系,从中找到细菌适应锌离子匮乏条件的关键代谢通路和蛋白。【结果】测定了在限制培养条件下肺炎链球菌的最适生长浓度,建立了锌离子调控蛋白双向凝胶电泳图谱,鉴定到了96个差异表达蛋白斑点,共67个差异蛋白,其中32个表达下调,35个表达上调,锌离子调控蛋白的作用可能主要体现在糖代谢、核酸代谢、氧化还原作用、辅助蛋白质翻译、合成及折叠等方面。建立了锌结合蛋白的差异表达图谱,鉴定到了10个差异表达蛋白斑点,共7个差异蛋白,其中1个表达下调,6个表达上调。锌离子结合蛋白的作用可能主要体现在应对压力、蛋白质折叠和转运、氨基酸代谢等方面。【结论】肺炎链球菌主要通过调控碳水化合物代谢和核酸代谢等多个代谢通路来应对宿主锌金属离子匮乏的环境,从而使自身能够存活并对宿主形成感染。本研究为揭示细菌在宿主环境,特别是金属离子匮乏条件下的适应性生长机制提供理论基础。  相似文献   

9.
彭爱凤  张荣珍  徐岩 《微生物学报》2023,63(9):3602-3615
【目的】将酿酒酵母(Saccharomyces cerevisiae)和毕赤亚库德里亚夫泽维(Pichia kudriavzevii)来源的双碱性氨基酸内肽酶基因sckex2和pkkex2克隆到大肠杆菌(Escherichia coli)BL21中,实现双碱性氨基酸内肽酶的异源表达,研究重组酶的酶学性质及其与碱性蛋白酶的协同高效水解大豆蛋白释放出小分子活性肽的作用。【方法】按照大肠杆菌的密码子偏好性,对S.cerevisiae和P.kudriavzevii的kex2基因进行优化,分析KEX2蛋白的非功能区域,对其C-末端、N-末端氨基酸进行剪切修饰获得4种突变酶基因sckex2?3、sckex2?4、pkkex2?3和pkkex2?4,构建在载体pGEX-6P-1上,转入E.coli BL21感受态细胞中,经DNA测序验证,获得重组菌株E.coli BL21/pGEX-ScKEX2?3、E.coli BL21/pGEX-ScKEX2?4、E.coli BL21/pGEX-PkKEX2?3和E.coli BL21/pGEX-PkKEX2?4。利用GST亲和层析柱和PreScission蛋...  相似文献   

10.
【目的】开发可用于在极端嗜热嗜酸模式泉古菌冰岛硫化叶菌(Sulfolobus islandicus)中进行高效表达的eCGP123(enhanced consensus green protein variant 123)荧光蛋白,并用作S.islandicus的细胞内蛋白定位工具。【方法】绿色荧光蛋白突变体eCGP123具有极高的热稳定性、耐酸性和可逆的荧光特性等。本研究主要对eCGP123的基因根据S.islandicus密码子偏好性进行优化与合成,在大肠杆菌(Escherichia coli)中表达并研究其蛋白性质;通过在eCGP123的C末端分别融合具有不同细胞内定位的蛋白(包括E.coli来源的Fts Z和S.islandicus来源的Ups E、PCNA1和SiRe_1200等),构建eCGP123及其融合蛋白的表达菌株,用激光共聚焦显微镜分析eCGP123及其融合蛋白在E.coli和S.islandicus活细胞中的亚细胞定位。【结果】我们确认了在E.coli中表达并纯化密码子优化后的e CGP123具有与野生型绿色荧光蛋白相同的吸光值和较高的热稳定性。细胞学分析显示细胞分裂相关蛋白FtsZ和Si Re_1200分别主要定位于E.coli和S.islandicus分裂细胞的中间;鞭毛组分蛋白Ups E呈点状均匀分布,可能定位于细胞膜上;DNA复制滑动夹亚基PCNA1呈区域性点状分布,暗示了DNA复制区域的位置。蛋白的亚细胞定位与预期结果基本吻合。【结论】绿色荧光蛋白e CGP123可以作为报告蛋白,应用于S.islandicus细胞的蛋白定位分析中,可作为该模式菌株中功能基因研究的重要工具,但需要进一步优化条件。  相似文献   

11.
Escherichia coli DNA topoisomerase I (TopA) contains a 67 kDa N‐terminal catalytic domain and a 30 kDa C‐terminal zinc‐binding region (ZD domain) which has three adjacent tetra‐cysteine zinc‐binding motifs. Previous studies have shown that E. coli TopA can bind both iron and zinc, and that iron binding in TopA results in failure to unwind the negatively supercoiled DNA. Here, we report that each E. coli TopA monomer binds one atom of iron via the first two zinc‐binding motifs in ZD domain and both the first and second zinc‐binding motifs are required for iron binding in TopA. The site‐directed mutagenesis studies further reveal that while the mutation of the third zinc‐binding motif has very little effect on TopA's activity, mutation of the first two zinc‐binding motifs in TopA greatly diminishes the topoisomerase activity in vitro and in vivo, indicating that the first two zinc‐binding motifs in TopA are crucial for its function. The DNA‐binding activity assay and intrinsic tryptophan fluorescence measurements show that iron binding in TopA may decrease the single‐stranded (ss) DNA‐binding activity of ZD domain and also change the protein structure of TopA, which subsequently modulate topoisomerase activity.  相似文献   

12.
Exposure of bovine estrogen receptor to the metal chelators EDTA and 1,10-phenanthroline results in a loss of nonspecific DNA binding, presumably because of the removal of "zinc finger" zinc. Nonspecific DNA binding, as measured by a DNA-cellulose binding assay, can be restored by dialysis of the aporeceptor against buffer containing zinc, cadmium, and cobalt but not with buffer containing copper or nickel. More detailed studies were carried out using a bacterially expressed polypeptide encompassing the DNA binding domain of the human estrogen receptor. Apopolypeptide fails to bind DNA specifically, as measured by mobility shift assay using a consensus estrogen response element hexamer containing oligonucleotide, but DNA binding was restored by dialysis of the apopolypeptide against buffer containing zinc, cadmium, and cobalt but not with buffer containing copper or nickel. Dissociation constants of zinc- and cadmium-reconstituted polypeptide for the estrogen response element hexamer (66 and 48 nM, respectively) are virtually indistinguishable from native polypeptide (Kd = 48 nM) whereas cobalt-reconstituted polypeptide has a lower affinity (Kd = 720 nM). However, native, zinc-, cadmium-, and cobalt-reconstituted polypeptides gave identical results in a methylation interference assay. Competition experiments with zinc and copper or nickel suggest that copper and nickel are able to bind to zinc finger residues but do so nonproductively. The relative affinities copper greater than cadmium greater than zinc greater than cobalt greater than nickel for the polypeptide were determined by a zinc blot competition assay. The ability of cadmium and cobalt to substitute for zinc in the zinc fingers demonstrates a structural "flexibility" in the DNA binding domain as each of these metals has slightly different ionic radii. On the other hand, subtle differences in DNA binding affinity and/or specificity could exist, which may not be detectable here. Also, the ability of metals to substitute for zinc in the DNA binding domain suggests that metal substitution in these zinc fingers in vivo may be of relevance to the toxicity and/or carcinogenicity of some of these metals.  相似文献   

13.
Escherichia coli topoisomerase I (TopA) cleaves and rejoins one strand of double-stranded DNA to relax the negatively supercoiled DNA. Structurally, TopA contains an N-terminal catalytic fragment and a C-terminal zinc-binding region that is required for relaxation of the negatively supercoiled DNA. Here we report that E. coli TopA is an iron and zinc binding protein. The UV–Vis absorption measurements and metal content analyses reveal that TopA purified from E. coli cells grown in the rich LB medium contains both iron and zinc. However, TopA purified from E. coli cells grown in the M9 minimal medium has negligible amounts of zinc or iron and no topoisomerase activity. Nevertheless, supplement of exogenous zinc or iron in E. coli cells grown in the M9 minimal medium produces the zinc- or iron-bound TopA, respectively. Whereas the zinc-bound TopA is fully active to relax the negatively supercoiled DNA, the iron-bound TopA has little or no enzyme activity. Furthermore, excess iron in the M9 minimal medium is able to compete with the zinc binding in TopA in E. coli cells and attenuate the topoisomerase activity, suggesting that E. coli TopA may be modulated by iron and zinc binding in vivo.  相似文献   

14.
15.
Cells of Escherichia coli increase greatly the synthesis of a small primarily cytoplasmic protein as soon as the cell growth rate falls below the maximal growth rate supported by cadmium exposure, after which the mature product is exported to the periplasm. This protein was previously identified as the product of the E. coli yodA open reading frame. We now report the isolation of an E. coli mutant defective in YodA synthesis because of insertional inactivation of the corresponding gene. In experiments to test the ability of both the wild-type and yodA mutant E. coli cells to bind cadmium, we have used γ-labeled [109Cd]. Whereas the wild-type E. coli strain was able to bind metal, the yodA mutant strain failed to do so. In addition, analysis of such a mutant demonstrated that it grows at a rate distinguishable from that of the isogenic parent in the presence of cadmium ions. However, challenging cells with hydrogen peroxide and additional metals such as zinc, copper, cobalt, and nickel did not significantly affect the growth rate of the mutant. This growth phenotype was found to be the result of the loss of its ability to bind cadmium. These results suggest that the role of YodA protein might be to decrease the concentration level of cadmium ions in E. coli cells during cadmium stress by its ability to bind heavy metal.  相似文献   

16.
We report here on the isolation and primary characterization of the yohM gene of Escherichia coli. We show that yohM encodes a membrane-bound polypeptide conferring increased nickel and cobalt resistance in E. coli. yohM was specifically induced by nickel or cobalt but not by cadmium, zinc, or copper. Mutation of yohM increased the accumulation of nickel inside the cell, whereas cells harboring yohM in multicopy displayed reduced intracellular nickel content. Our data support the hypothesis that YohM is the first described efflux system for nickel and cobalt in E. coli. We propose rcnA (resistance to cobalt and nickel) as the new denomination of yohM.  相似文献   

17.
Escherichia coli DNA topoisomerase I catalyzes relaxation of negatively supercoiled DNA. The reaction proceeds through a covalent intermediate, the cleavable complex, in which the DNA is cleaved and the enzyme is linked to the DNA via a phosphotyrosine linkage. Each molecule of E. coli DNA topoisomerase I has been shown to have three tightly bound zinc(II) ions required for relaxation activity (Tse-Dinh, Y.-C., and Beran-Steed, R.K. (1988) J. Biol. Chem. 263, 15857-15859). It is shown here that Cd(II) could replace Zn(II) in reconstitution of active enzyme from apoprotein. The role of metal was analyzed by studying the partial reactions. The apoenzyme was deficient in sodium dodecyl sulfate-induced cleavage of supercoiled PM2 phage DNA. Formation of covalent complex with linear single-stranded DNA was also reduced in the absence of metal. However, the cleavage of small oligonucleotide was not affected, and the apoenzyme could religate the covalently bound oligonucleotide to another DNA molecule. Assay of noncovalent complex formation by retention of 5'-labeled DNA on filters showed that the apoenzyme was not inhibited in noncovalent binding to DNA. It is proposed that zinc(II) coordination in E. coli DNA topoisomerase I is required for the transition of the noncovalent complex with DNA to the cleavable state.  相似文献   

18.
Levels of nine heavy metals were measured in the livers and salt glands of greater scaup (Aythya marila), black duck (Anas rubripes) and mallard (A. platyrhynchos) from Raritan Bay, New Jersey to determine if the functioning avian salt gland concentrates heavy metals. Heavy metals examined were cadmium, cobalt, chromium, copper, lead, mercury, manganese, nickel and zinc. Heavy metal levels varied significantly by species and tissue for chromium, copper, lead, and manganese, and by tissue for cobalt, mercury, nickel and zinc. In comparing tissues cobalt was higher in the salt glands than in livers of all three species; chromium and nickel were higher in the salt gland than liver for mallard and black duck; and lead, manganese and zinc were higher in the liver than the salt gland in greater scaup. Generally metal levels were higher in the salt gland for mallard and black duck, and in the liver for greater scaup.  相似文献   

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