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1.
中国明对虾溶菌酶基因克隆、重组表达与性质分析   总被引:2,自引:0,他引:2  
溶菌酶是机体先天免疫系统中一个重要的效应分子, 参与机体多种免疫反应, 在溶菌过程中形成一个水解体系, 破坏和消除侵入体内的病原, 从而实现机体的免疫防御。从中国明对虾中克隆得到了溶菌酶基因(称为FcLyz基因), 该基因全长709 bp, 其完整的阅读框为477 bp, 编码158个氨基酸, 前18个氨基酸(-1~-18)为信号肽, 成熟肽由140个氨基酸组成(1-140aa), 其分子量为16.2 kD。经SMART分析,该基因具有1个溶菌酶1(LYZ1)结构域(19-130aa)。半定量RT-PCR分析结果表明溶菌酶虽在多种组织中有较低水平的组成性表达, 但在细菌诱导的血细胞、心脏、肝胰腺和鳃等多种组织中表达上调。将中国明对虾溶菌酶基因的成熟肽亚克隆进原核表达载体pET-30a (+)中, 转化大肠杆菌BL21(DE3), 再进行诱导表达和亲和纯化, 得到了纯化的重组溶菌酶, 并进行了抑菌活性检测。结果表明, 重组对虾溶菌酶对革兰氏阳性菌的抑菌能力较强, 最小抑菌浓度达到3.43 mmol/L, 但对革兰氏阴性菌抑制作用较小。上述结果表明, 该溶菌酶作为一种重要的免疫效应分子, 参与了对虾的免疫防御反应。  相似文献   

2.
中国明对虾溶菌酶基因克隆、重组表达与性质分析   总被引:1,自引:0,他引:1  
溶菌酶是机体先天免疫系统中一个重要的效应分子, 参与机体多种免疫反应, 在溶菌过程中形成一个水解体系, 破坏和消除侵入体内的病原, 从而实现机体的免疫防御。从中国明对虾中克隆得到了溶菌酶基因(称为FcLyz基因), 该基因全长709 bp, 其完整的阅读框为477 bp, 编码158个氨基酸, 前18个氨基酸(-1~-18)为信号肽, 成熟肽由140个氨基酸组成(1-140aa), 其分子量为16.2 kD。经SMART分析,该基因具有1个溶菌酶1(LYZ1)结构域(19-130aa)。半定量RT-PCR分析结果表明溶菌酶虽在多种组织中有较低水平的组成性表达, 但在细菌诱导的血细胞、心脏、肝胰腺和鳃等多种组织中表达上调。将中国明对虾溶菌酶基因的成熟肽亚克隆进原核表达载体pET-30a (+)中, 转化大肠杆菌BL21(DE3), 再进行诱导表达和亲和纯化, 得到了纯化的重组溶菌酶, 并进行了抑菌活性检测。结果表明, 重组对虾溶菌酶对革兰氏阳性菌的抑菌能力较强, 最小抑菌浓度达到3.43 mmol/L, 但对革兰氏阴性菌抑制作用较小。上述结果表明, 该溶菌酶作为一种重要的免疫效应分子, 参与了对虾的免疫防御反应。  相似文献   

3.
在双壳类软体动物牡蛎体内,溶菌酶(Lysozyme)在实现宿主免疫防御,破坏和消除侵入体内的病原中发挥着重要的作用.根据GenBank已有的太平洋牡蛎溶菌酶的全长cDNA序列(GenBank:AB179775),通过RT-PCR技术,从太平洋牡蛎(Crassostrea gigas)中克隆得到溶菌酶(简称为CgLys)基因的开放阅读框(open reading frame,ORF)序列.生物信息软件分析表明,其ORF为414 bp,编码137个氨基酸(aa),前20个aa为信号肽,成熟肽由117个aa组成,其分子量为13.2 kD.通过构建分子系统发育树对其同源性进行分析比较,初步推断该CgLys属于i型溶菌酶.将该CgLys基因的成熟肽亚克隆进原核表达载体pET-32a(+)中,构建重组质粒pET32a(+)-CgLys,再转化至大肠杆菌BL21(DE3)pLysS.该基因工程菌经IPTG诱导发酵后,成功高效地表达了重组CgLys蛋白,其分子质量约为18 kD.该重组CgLya蛋白主要存在于细菌裂解液的上清液中,即以可溶性蛋白形式存在.上述结果将显著简化后续的蛋白纯化过程,为今后扩大规模生产牡蛎溶菌酶提供参考.  相似文献   

4.
溶菌酶是先天免疫系统中对抗细菌病原体感染的一种关键蛋白.本研究从七鳃鳗中克隆g型溶菌酶基因. 其酶基因cDNA为701 bp(GenBank 序列号KP204854),开放阅读框为555 bp,编码由184个氨基酸组成的多肽,理论分子质量为20.24 kD,等电点为5.48,含有1个半胱氨酸残基,无信号肽.实时荧光定量PCR分析表明,七鳃鳗g型溶菌酶基因在各组织中广泛表达,其中在肠中表达量最高.脂多糖(LPS)体内刺激七鳃鳗后发现,溶菌酶在口腔腺和头肾表达量显著升高.以溶壁微球菌和哈维弧菌为底物检测重组g型溶菌酶的活性时,均表现出抗菌活性,最适pH为7.5,最适温度为35℃.扫描电镜分析表明,重组酶能够使溶壁微球菌破裂.以上结果均表明,g型溶菌酶在七鳃鳗的先天免疫系统防御病菌感染中起到重要作用.  相似文献   

5.
斑节对虾溶菌酶基因克隆及序列分析   总被引:11,自引:1,他引:10  
参考对虾溶菌酶基因和类溶菌酶基因及其他多种生物的溶菌酶基因序列 ,设计并合成引物。运用RT PCR技术 ,从斑节对虾血细胞总RNA中扩增获得特异性片段。所获片段回收纯化后克隆到pGEM TEasyVector系统的T载体上。重组子的序列分析表明 ,所克隆的斑节对虾溶菌酶基因片段长 6 5 8bp ,包括溶菌酶基因开放阅读框 (ORF)4 77bp和 3′端非编码区的 181bp。 4 77bpORF共编码 15 8个氨基酸 ,包括溶菌酶成熟肽 14 0个氨基酸残基和信号肽 18个氨基酸残基。斑节对虾溶菌酶成熟肽推测分子量为 16 ,32kd ,等电点为 8 78。与南美白对虾溶菌酶基因的碱基序列及推测氨基酸序列比较 ,同源性分别为 89 5 %和 93 0 % ;与日本对虾类溶菌酶基因的同源性分别为 84 0 %和91 0 %。进一步的序列分析表明 ,斑节对虾溶菌酶氨基酸序列与多种类群生物的c 型溶菌酶氨基酸序列具有较高的同源性 ,并具有与c 型溶菌酶相同的活性位点氨基酸残基Glu51和Asp68,且与活性位点相邻的序列高度保守。斑节对虾溶菌酶氨基酸序列还具有与c 型溶菌酶相同的结构氨基酸——— 8个半胱氨酸残基。因而可认为所克隆的斑节对虾溶菌酶基因属c 型溶菌酶基因。  相似文献   

6.
LYZL4是本实验室克隆的一种c型人溶菌酶基因,根据毕赤酵母密码子偏爱性对LYZL4基因进行优化设计,优化后的基因克隆至具有乙醇氧化酶启动子(AOX1)的pPIC9K载体中。通过电转化方法整合到甲醇营养型毕赤酵母表达菌株GS115基因组上,再利用不同浓度梯度的G418抗性YPD固体培养基筛选高拷贝转化子,经摇瓶发酵后,其上清液在SDS-PAGE胶上14.4 kDa处出现明显的蛋白条带,该蛋白条带经质谱鉴定证实是人LYZL4蛋白。以人溶菌酶(164 071U/mg)作为标准品,使用艳红微球菌作为底物,通过比色法测定重组LYZL4溶菌酶蛋白的活性,结果显示重组人溶菌酶LYZL4蛋白具有明显的溶菌活性,其酶活力可达38893U/ml。  相似文献   

7.
依据已报道的地鳖虫成熟肽cDNA序列设计引物,通过RT-PCR法从地鳖虫(Eupolyphage sinensis Walker)中克隆得到675 bp地鳖虫纤溶活性蛋白 (fibrinolytic protein,EFP)成熟肽编码序列.将此片段克隆到表达载体pPICZα-A中,转化毕赤酵母GS115,甲醇诱导表达得到重组表达蛋白,经SDS-PAGE电泳和活性鉴定,表明重组EFP在毕赤酵母中均获得表达,重组表达蛋白相对分子质量为28.2 kD,表达产物分子质量与理论分子质量相符.重组蛋白在毕赤酵母中以分泌形式表达,具有纤溶活性.  相似文献   

8.
应用基因工程技术制备了3种奥利亚罗非鱼C型溶菌酶的重组蛋白,并应用比浊法比较了它们与草鱼C型溶菌酶、G型溶菌酶和斑节对虾C型溶菌酶重组蛋白对无乳链球菌、嗜水气单胞菌等8种细菌的溶菌作用.研究发现,6种重组溶菌酶对这8种菌均具有溶菌活性,但是溶菌活力强弱不一.其中罗非鱼C3溶菌酶对革兰氏阳性菌无乳链球菌的溶菌作用最强,草鱼C型与G型溶菌酶次之;所有重组溶菌酶对革兰氏阴性菌铜绿假单胞菌均具较强的溶菌活性.与斑节对虾C型溶菌酶、草鱼C型与G型溶菌酶相比,罗非鱼的C型溶菌酶对嗜水气单胞菌具有较强的溶菌作用,且以C1的溶菌活性最强.本研究结果可为选择具较强溶菌活力的溶菌酶应用于养殖生产提供依据,并可为应用转基因技术培育抗病品种提供靶基因.  相似文献   

9.
原核重组表达的凡纳滨对虾(Litopenaeus vannamei)溶菌酶蛋白主要以包涵体形式存在, 经变性和复性处理后活性仍较差。研究将凡纳滨对虾溶菌酶基因(Lvlyz基因)克隆至毕赤酵母分泌型表达载体pPIC9K中, 电击转化毕赤酵母GS115细胞, 经组氨酸营养缺陷培养基筛选和PCR检测获得转化子。对其进行连续甲醇诱导表达, 利用SDS-PAGE和C端携带的6×His标签,对发酵液上清进行Western blot检测, 结果表明19.3 kD左右的条带即是重组表达的溶菌酶蛋白。用溶壁微球菌平板抑菌法鉴定表达产物具有较强的抑菌能力。研究首次利用毕赤酵母真核表达系统实现对虾溶菌酶基因的可溶性表达, 并且表达产物的活性良好。    相似文献   

10.
目的:从酮古龙酸菌Y25中扩增细胞色素c基因,在大肠杆菌中表达、成熟并进行生物活性分析。方法:从酮古龙酸菌Y25基因组中PCR扩增细胞色素c基因,构建pET22b表达载体;从大肠杆菌BL21(DE3)中扩增细胞色素c成熟基因簇ccmABCDEFGH,连接到带有山梨糖脱氢酶组成型启动子的pBBR1MCS2-P200载体中;将构建的2个质粒共转化大肠杆菌BL21(DE3),经IPTG诱导表达后进行血红素染色检测;通过氧化还原光谱法对Ni柱亲和纯化的重组蛋白进行活性分析。结果:扩增得到1404 bp的细胞色素c基因及6481 bp的ccmABCDEFGH基因簇;重组菌株经IPTG诱导表达后行SDS-PAGE分析,可见相对分子质量为50×103的表达条带;血红素染色显示重组蛋白结合有血红素;经氧化还原光谱扫描,显示亲和层析纯化得到的目的蛋白有细胞色素c特征吸收峰。结论:从酮古龙酸菌Y25中扩增得到了细胞色素c基因,在大肠杆菌中进行了表达和成熟,表达蛋白具有细胞色素c生物活性。  相似文献   

11.
Shrimp lysozyme is as an antibacterial enzyme that participates in the innate defense against the invasion of bacterial pathogens. In this study, the lysozyme gene from hemocytes of the shrimp Marsupenaeus japonicus was isolated and characterized. The M. japonicus lysozyme (MjLys) encodes a polypeptide of 158 amino acids (aa) that includes an 18 aa signal peptide. The gene fragment encoding the mature MjLys protein was subcloned into the expression vector pET-32a(+) and transformed into E. coli BL21(DE3)pLysS, and the protein was strongly expressed in insoluble inclusion bodies. Following extraction using urea, the denatured recombinant protein was refolded by on-column Ni2+ affinity chromatography or dialysis with a gradient of decreasing urea concentration. Approximately 50% of the recombinant MjLys was successfully refolded into monomeric protein using urea gradient dialysis, while 30% was salvaged using on-column refolding. Purified MjLys exhibited significant antibacterial activity against Gram-positive bacteria Micrococcus lysodeikticus and Staphylococcus aureus. This efficient over-expression and refolding method can provide the large quantities of biologically active protein required for further biochemical and structural studies and potential biotechnological applications.  相似文献   

12.
海参i型溶菌酶基因及其编码产物的结构特点   总被引:7,自引:0,他引:7  
通过RT-PCR 和 RACE PCR技术,从海参(Stichopus japonicus)体壁中克隆得到一种溶菌酶基因(GenBank:EF036468).生物信息软件分析表明,其中全长cDNA为 713 bp,5′非编码区(UTR)246 bp,3′UTR 29 bp,开放阅读框438 bp,编码145个氨基酸,包括溶菌酶成熟肽124个氨基酸和信号肽21个氨基酸.对海参溶菌酶与多种无脊椎动物的c、g和i型溶菌酶进行分析比较,发现它与i型溶菌酶有较高的同源性,并具有i型溶菌酶高度保守的2个活性位点,即Glu34和Ser50.活性位点附近具有i型溶菌酶的一段特有的氨基酸保守序列MDVGSLSCG(P/Y)(Y/F)QIK,所以推断克隆的海参溶菌酶为i型.另外,通过搜索蛋白保守结构域数据库,发现海参溶菌酶与医用水蛭失稳酶相似性最高,并且这2个酶的三级结构模型也极其相似.因此推测,海参i型溶菌酶具有双功能特性,既能作用于细菌细胞壁的糖苷键使细胞裂解,又具有失稳酶的一些生化功能,能够水解纤维蛋白,这些特点在海参自溶过程中发挥重要的作用.  相似文献   

13.
The erythropoietin (Epo) gene from Cynomolgus monkeys has been isolated from a kidney cDNA library using mixed 20-mer oligodeoxynucleotide probes. The gene encodes a 168 amino acid (aa) mature protein with a calculated Mr of 18,490 and a presumptive signal peptide of 24 aa. The Epo gene, when transfected into Chinese hamster ovary (CHO) cells, produces a glycosylated protein with an apparent Mr of 34,000. The expressed product is biologically active in vivo. The monkey gene exhibits 92% and 94% homology to the human gene at the aa and nucleotide sequence levels, respectively. When compared with the human Epo, monkey Epo has an additional 3-aa residue at the N terminus of the mature protein and a deletion of an internal lysine residue.  相似文献   

14.
Yuan J  Zhou J  Hu X  Li N 《Biochemical genetics》2007,45(3-4):185-194
We report cDNA sequences for the preproghrelin gene from goose, duck, and emu. This gene is involved in stimulating the release of growth hormone in mammals and may play a similar role in avian species. The complete coding sequence of avian preproghrelin encodes a 116 amino acid (aa) protein, which is organized into three parts: the N-terminal hydrophobic signal peptide, a 26 aa peptide for mature ghrelin, and a long C-terminal polypeptide. Domain/motif structures of preproghrelin protein are highly conserved among avian species. Although the avian and mammalian homologs are not highly similar for the whole 116 aa sequence, the identity of the highly conserved “active core” sequence and the n-octanoyl modification of the serine 3 residue avian ghrelin protein with its mammalian homologs implies conserved function of ghrelin protein during evolution. Information provided in this study will be useful in further studies to determine the role the preproghrelin gene plays in the regulation of growth hormone release and body weight gain in avian species. Jing Yuan and Jianjun Zhou contributed equally to this work  相似文献   

15.
cDNA clones encoding human lysozyme were isolated from a human histiocytic cell line (U-937) and a human placenta cDNA library. The clones, ranging in size from 0.5 to 0.75 kb, were identified by direct hybridization with synthetic oligodeoxynucleotides. The nucleotide sequence coding for the entire protein was determined. The derived amino acid sequence has 100% homology with the published amino acid (aa) sequence; the leader sequence codes for 18 aa. Expression and secretion of human lysozyme in Saccharomyces cerevisiae was achieved by placing the cloned cDNA under the control of a yeast gene promoter (ADH1) and the alpha-factor peptide leader sequence.  相似文献   

16.
V A David  A H Deutch  A Sloma  D Pawlyk  A Ally  D R Durham 《Gene》1992,112(1):107-112
The gene (nprV), encoding the extracellular neutral protease, vibriolysin (NprV), of the Gram- marine microorganism, Vibrio proteolyticus, was isolated from a V. proteolyticus DNA library constructed in Escherichia coli. The recombinant E. coli produced a protease that co-migrated with purified neutral protease from V. proteolyticus on non-denaturing polyacrylamide gels, and that demonstrated enzymatic specificity towards the neutral protease substrate N-[3-(2-furyl)acryloyl]-L-alanylphenylalanine amide. The nucleotide (nt) sequence of the cloned nprV gene revealed an open reading frame encoding 609 amino acids (aa) including a putative signal peptide sequence followed by a long 'pro' sequence consisting of 172 aa. The N-terminal aa sequence of NprV purified from cultures of V. proteolyticus, identified the beginning of the mature protein within the aa sequence deduced from the nt sequence. Comparative analysis of mature NprV to the sequences of the neutral proteases from Bacillus thermoproteolyticus (thermolysin) and Bacillus stearothermophilus identified extensive regions of conserved aa homology, particularly with respect to active-site residues, zinc-binding residues, and calcium-binding sites. NprV was overproduced in Bacillus subtilis by placing the DNA encoding the 'pro' and mature enzyme downstream from a Bacillus promoter and signal sequence.  相似文献   

17.
C Croux  J L García 《Gene》1991,104(1):25-31
The lyc gene, encoding an autolytic lysozyme from Clostridium acetobutylicum ATCC824, has been cloned. The nucleotide sequence of the lyc gene has been determined and found to encode a protein of 324 amino acids (aa) with a deduced Mr of 34,939. The lyc gene is preceded by two open reading frames with unknown functions, suggesting that this gene is part of an operon. Comparison between the deduced aa sequence of the lyc gene and the directly determined N-terminal sequence of the extracellular clostridial lysozyme suggests that the enzyme is synthesized without a cleavable signal peptide. Moreover, the comparative analyses between the clostridial lysozyme and other known cell-wall lytic enzymes revealed a significant similarity with the N-terminal portion of the lysozymes of Streptomyces globisporus, the fungus Chalaropsis, the Lactobacillus bulgaricus bacteriophage mv1, and the Streptococcus pneumoniae bacteriophages of the Cp family (CPL lysozymes). In addition, the analyses showed that the C-terminal half of the clostridial lysozyme was homologous to the N-terminal domain of the muramoyl-pentapeptide-carboxypeptidase of Streptomyces albus, suggesting a role in substrate binding. The existence of five putative repeated motifs in the C-terminal region of the autolytic lysozyme suggests that this region could play a role in the recognition of the polymeric substrate.  相似文献   

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