968 resultados para Protease NS3 HCV


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A novel kinin-releasing and fibrin (ogen)olytic enzyme termed jerdonase was purified to homogeneity from the venom of Trimeresurus jerdonii by DEAE Sephadex A-50 anion exchange, Sephadex G-100 (superfine) gel filtration and reverse-phase high performance liquid chromatography (RP-HPLC). Jerdonase migrated as a single band with an approximate molecular weight of 55 kD under the reduced conditions and 53 kD under the non-reduced conditions. The enzyme was a glycoprotein containing 35.8% neutral carbohydrate. The N-terminal amino acid sequence of jerdonase was determined to be IIGGDECNINEHPFLVALYDA, which showed high sequence identity to other snake venom serine proteases. Jerdonase catalyzed the hydrolysis of BAEE, S-2238 and S-2302, which was inhibited by phenymethylsulfonyl fluoride (PMSF), but not affected by ethylenediaminetetraacetic acid (EDTA). Jerdonase preferentially cleaved the Aalpha-chain of human fibrinogen with lower activity towards Bbeta-chain. Moreover, the enzyme hydrolyzed bovine low-molecular-mass kininogen and releasing bradykinin. In conclusion, all results indicated that jerdonase was a multifunctional venom serine protease.

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The trypsin-like serine protease (Tryp_SPc) family is ubiquitous in animals and plays diverse roles, especially in the digestive system, in different phyla. In the mosquito, some Tryp_SPc proteases make important contributions to the digestion of the bloo

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By Sephadex G-50 gel filtration, cation-exchange CM-Sephadex C-25 chromatography and reversed phase high-performance liquid chromatography (HPLC), a novel serine protease inhibitor named bungaruskunin was purified and characterized from venom of Bungarus fasciatus. Its cDNA was also cloned from the cDNA library of B. fasciatus venomous glands. The predicted precursor is composed of 83 amino acid (aa) residues including a 24-aa signal peptide and a 59-aa mature bungaruskunin. Bungaruskunin showed maximal similarity (64%) with the predicted serine protease inhibitor blackelin deduced from the cDNA sequence of the red-bellied black snake Pseudechis porphyriacus. Bungaruskunin is a Kunitz protease inhibitor with a conserved Kunitz domain and could exert inhibitory activity against trypsin, chymotrypsin, and elastase. By screening the cDNA library, two new B chains of beta-bungarotoxin are also identified. The overall structures of bungaruskunin and beta -bungarotoxin B chains are similar; especially they have highly conserved signal peptide sequences. These findings strongly suggest that snake Kunitz/BPTI protease inhibitors and neurotoxic homologs may have originated from a common ancestor. (c) 2007 Elsevier Inc. All rights reserved.

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选用无各型肝炎病毒感染、体质良好的6只食蟹猴、3只恒河猴和3只熊猴,按人感染HCV的主要途径——输血,经静脉输注含HCV的中国献血员血浆,观察临床一般指标,血清ALT,抗HCV各种抗体和HCV-RNA,肝组织普通病理,超微病理。从肝组织中找病毒颗粒及免疫组化查HCV NS3抗原,观察14周,结果9例猕猴出现不同程度的肝炎症状,12例血清ALT升高,2例出现黄疸;5例抗HCVC22 IgG抗体阳性,4例抗HCV E2-24 IgG抗体阳性,10例抗HCV C33c IgG抗体阳性,2例抗HCVNS4-40 IgG抗体阳性,11例抗HCV NS5-A IgG抗体阳性,无1例抗HCVNS5-B IgG抗体阳性;9例HCV-RNA阳性。6例肝活检或肝小部切除作肝组织普通光镜镜检,5例肝细胞气球样变,点状坏死及少许纤维组织增生。另一例相应损害较重,呈碎片坏死,界板破坏,纤维组织增生明显,汇管区炎性细胞浸润,超微病理除普通炎症所具有的特征外,以滑面内质网大量增生扩张为其主要特征,3例从内质网里看到约30nm的类病毒颗粒。免疫组化显示3只动物肝组织内HCVNS3抗原阳性,以膜型为主少量周边型及散在胞浆内分布,因此我们认为已...

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从2份受丙型肝炎病毒(HCV)感染的献血员血清(CX1、CX2)、第一代感染HCV猕猴血清(CX3)、第二代感染HCV猕猴血清(CX4)中提取RNA, 用自行设计的HCV 5^非编码区和核心区C5^NTR-C区引物进行逆转录PCR, 经扩增克隆并序列分析, 结果显示: CX1 cDNA全长779bp, CX2 cDNA 778bp, CX3 cDNA 776bp, CX4 cDNA 777bp。CX1株和CX4株均在5^NTR nt-216有一C的插入, CX3和CX4区nt385-387处的3个碱基缺失; CX1株与CX2、CX3、CX4比较同源性分别为98.07%、96.15%、95.25%; CX2与CX3、CX4的同源性分别为96.28%、95.76%; CX3与CX4的同源性为97.56%。

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Polybrominated diphenyl ethers (PBDEs) are used extensively as flame-retardants and are ubiquitous in the environment and in wildlife and human tissue. Recent studies have shown that PBDEs induce neurotoxic effects in vivo and apoptosis in vitro. However, the signaling mechanisms responsible for these events are still unclear. In this study, we investigated the action of a commercial mixture of PBDEs (pentabrominated diphenyl ether, DE-71) on a human neuroblastoma cell line, SK-N-SH. A cell viability test showed a dose-dependent increase in lactate dehydrogenase leakage and 3-(4,5-dimethylthia-zol-2-yl)-2,5-diphenyl-tetrazolium bromide reduction. Cell apoptosis was observed through morphological examination, and DNA degradation in the cell cycle and cell apoptosis were demonstrated using flow cytometry and DNA laddering. The formation of reactive oxygen species was not observed, but DE-71 was found to significantly induce caspase-3, -8, and -9 activity, which suggests that apoptosis is not induced by oxidative stress but via a caspase-dependent pathway. We further investigated the intracellular calcium ([Ca2+](i)) levels using flow cytometry and observed an increase in the intracellular Ca2+ concentration with a time-dependent trend. We also found that the N-methyl d-aspartate (NMDA) receptor antagonist MK801 (3 mu M) significantly reduced DE-71-induced cell apoptosis. The results of a Western blotting test demonstrated that DE-71 treatment increases the level of Bax translocation to the mitochondria in a dose-dependent fashion and stimulates the release of cytochrome c (Cyt c) from the mitochondria into the cytoplasm. Overall, our results indicate that DE-71 induces the apoptosis of ([Ca2+](i)) in SK-N-SH cells via Bax insertion, Cyt c release in the mitochondria, and the caspase activation pathway.

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Taenia solium metacestode, a larval pork tapeworm, is a causative agent of neurocysticercosis, one of the most common parasitic diseases in the human central nervous system. In this study, we identified a cDNA encoding for a cathepsin L-like cysteine protease from the T solium metacestode (TsCL-1) and characterized the biochemical properties of the recombinant enzyme. The cloned cDNA of 1216 bp encoded 339 amino acids with an approximate molecular weight of 37.6 kDa which containing a typical signal peptide sequence (17 amino acids), a pro-domain (106 amino acids), and a mature domain (216 amino acids). Sequence alignments of TsCL-1 showed low sequence similarity of 27.3-44.6 to cathepsin L-like cysteine proteases from other helminth parasites, but the similarity was increased to 35.9-55.0 when compared to mature domains. The bacterially expressed recombinant protein (rTsCL-1) did not show enzyme activity; however, the rTsCL-1 expressed in Pichia pastoris showed typical biochemical characteristics of cysteine proteases. It degraded human immunoglobulin G (IgG) and bovine serum albumin (BSA), but not collagen. Western blot analysis of the rTsCL-1 showed antigenicity against the sera from patients with cysticercosis, sparganosis or fascioliasis, but weak or no antigenicity against the sera from patients with paragonimiasis or clonorchiasis. (c) 2006 Published by Elsevier B.V.

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In order to identify genes encoding the outer membrane proteins (OMPs) of the myxobacter Flavobacterium columnare G(4), the expression library of the bacterium was screened by using rabbit antisera developed against its OMPs. Positive colonies of Escherichia coli M15 containing fragments encoding the bacterial OMPs were selected for cloning the relevant genes by genomic walking methods. Two genes encoding a membrane-associated zinc metalloprotease and prolyl oligopeptidase are reported in this paper. The membrane-associated zinc metalloprotease gene (map) is 1800 bp in length, coding for 449 amino acids (aa). Despite the presence of a conserved motif HEXXH for all metalloproteases, the special HEXXH similar to 32 aa similar to E motif of the F. columnare G(4) Map and its low level of identity with other reported zinc-containing metalloproteases may imply that the membrane-associated zinc metalloprotease of F. columnare G(4) represents a new family of zincins. The gene encoding prolyl oligopeptidase (Pop), a serine proteinase, is 2352 bp in length, coding for 649 aa. Sequence homology analysis revealed that the Pop is also novel as it has <50% identity with other reported prolyl oligopeptidase family proteins. The present study represents the first to employ anti-fish bacterial OMP sera to screen genes of membrane-associated proteases of fish pathogenic bacteria, and to provide necessary information for the examination of the role of the two genes in the infection and pathogenesis of F. columnare.

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丙型肝炎病毒(Hepatitis C virus, HCV)的全基因组序列测定,曾经由于许多方面 的条件限制而难于完成。但是,其对于研究HCV 分子病毒学、流行病学、进化和致 病性却至关重要,特别是在临床应用中,不同序列的基因型决定α-干扰素治疗的不同 效果。在本研究完成之前,HCV 基因型6 仅有6 个亚型有其全基因组序列。因此, 本研究的主要目的在于,测定HCV 变异株代表基因型6 其余的11 个亚型和新亚型的 全基因组序列,并深入分析。 本研究从样品分别来自于中国、泰国,和在美国及加拿大生活的东南亚国家移民 的HCV 感染者。因为样品有限,改良传统的PCR 方法,摸索出“桥”和“岛”DNA 全序列扩增法,从每例样品100μl 血清或从100μl 血清中获得的cDNA 中测定了13 个HCV 全基因组核苷酸序列。 以来源于Genbank 的已知基因型6 的七个全长序列为参考对所测定的13 个亚型 全序列进行共同分析显示,这些全基因组核苷酸的两两比较相似率变化范围为 71.9%--82.7%,著地, 这四对序列间的相同率高于标准定义的HCV 基因亚型之间的 范围值75%-80%。为了进一步理解和证实这些亚型间的遗传相似性,本研究还测定 了代表这4 对亚型的病毒原型株的全基因序列,结果显示了相同的核苷酸水平上的变 异范围,这为HCV 基因亚型的分类提供了新的认识,亦强调了全长序列对于分类的 重要性。 从系统发育方面的分析证实,本研究所测得的13 个分离株都属于基因型6。在系 统发育树上,每个病毒株代表一个独立的枝。并形成了高度分化的HCV 基因型6 分 枝,从而清楚显示,各亚型的独立分布。本研究至此完成了基因型6 中17 个亚型的 全序列测定,而km41 和gz52557 因缺乏其临床上和流行病学上的多个感染病例的证 实,而继续保留其亚型未命名状态。结合来源于Los Alamos HCV database 的基因型6 的已知部分序列的变异株进一步分析,发现各相近亚型变异株均来自东南亚或东南亚国家移民,这提示了这些HCV 的相同感染源。 为了探讨HCV 夫妻间传播的可能性,本研究还测定了来自于泰国的两位感染 HCV 的献血员及其感染HCV 的配偶。这4 个基因序列C-0044 和C-0046 之间核苷 酸相同率为98.1%,而C-0185 和 C-0192 之间为97.8%。文献研究感染HCV 的夫妇 间的部分亚基因序列的相同率为96.3%至100%,本研究结果与此范围相符,并第一 次用全基因组序列提示了HCV 在夫妻间传播的可能性。 本研究还测定了基因型6 的另一个变异株的全基因组序列:HK6554,香港的某患 者,与上文中的GX004 一起,均为静脉吸毒者,并共同感染了HCV 和HIV-1。分析 结果还表明了一种趋势,即是在中国南方,基因亚型6e 有从以前的地方性传播方式 转为现有的流行性传播方式。这种转变可能由于静脉吸毒感染HCV 的人群的网络传 播而加快。 综上,本研究用传统PCR、简并引物结合链特异引物的方法有效地测定了共21 个病毒株的全基因序列。该方法也可用于其它分子流行病学的研究,特别在测定珍贵 的病毒序列然而样品量又受限时。本研究所测定的全基因组序列代表HCV 中最古老、 分化最多、地方性传播、又可能动物源性的基因型6 的全套17 个亚型。这有助于进 一步理解HCV 基因亚型的分类意义、更准确评价HCV 的进化和起源,亦有助于发 现HCV 新的变异株和提高临床诊断、治疗,为将来HCV 的流行及公众健康的预测、 预防和疫苗的制备奠定了坚实的分子遗传学基础。

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从采集的土壤样品中分离筛选出一株碱性蛋白酶产生菌G-41,经16S rRNA分子鉴定为芽孢杆菌属菌株。该菌株在发酵培养基中能产生较高产量的胞外碱性蛋白酶(1.7×104U/mL)。以G-41为出发菌株,对其进行重离子辐照诱变处理,获得突变株G-41-68,将该突变株再次经重离子诱变,从大量突变株中筛选出碱性蛋白酶高产菌株15Gy-54,其酶活力达到6.22×104U/mL。与出发菌株相比较,突变株G-41-68和15Gy-54的酶活力分别提高了1.58倍和2.65倍。对突变株15Gy-54的发酵条件进行了优化研究,结果表明,该菌株的碱性蛋白酶活力得到进一步提高,达到7.18×104U/mL,其最适发酵条件为:培养基(g/100mL)为胰蛋白胨1、酵母膏0.5、乳糖5、Na2HPO4·12H2O0.4、KH2PO40.03、Na2CO30.1、MgSO40.0481(4×10-3mol/L)、pH8.0,培养温度41℃,振荡培养时间42-48h。实验结果表明,重离子辐照诱变技术是一种非常有效的微生物诱变育种新技术。

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Vibrio harveyi is an important marine pathogen that can infect a number of aquaculture species. V. harveyi degQ (degQ(Vh)), the gene encoding a DegQ homologue, was cloned from T4, a pathogenic V. harveyi strain isolated from diseased fish. DegQ(Vh) was closely related to the HtrA family members identified in other Vibrio species and could complement the temperature-sensitive phenotype of an Escherichia coli strain defective in degP. Expression of degQVh in T4 was modulated by temperature, possibly through the sigma(E)-like factor. Enzymatic analyses demonstrated that the recombinant DegQVh protein expressed in and purified from E. coli was an active serine protease whose activity required the integrity of the catalytic site and the PDZ domains. The optimal temperature and pH of the recombinant DegQVh protein were 50 C and pH 8.0. A vaccination study indicated that the purified recombinant DegQVh was a protective immunogen that could confer protection upon fish against infection by V. harveyi. In order to improve the efficiency of DegQVh as a vaccine, a genetic construct in the form of the plasmid pAQ1 was built, in which the DNA encoding the processed DegQVh protein was fused with the DNA encoding the secretion region of AgaV, an extracellular beta-agarase. The E.coli strain harboring pAQ1 could express and secrete the chimeric DegQVh protein into the culture supernatant. Vaccination of fish with viable E. coli expressing chimeric degQ(Vh) significantly (P < 0.001) enhanced the survival of fish against V. harveyi challenge, which was possibly due to the relatively prolonged exposure of the immune system to the recombinant antigen produced constitutively, albeit at a gradually decreasing level, by the carrier strain.

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Vibrio harveyi is an important marine pathogen that can infect a number of aquaculture species. V. harveyi degQ (degQ(Vh)), the gene encoding a DegQ homologue, was cloned from T4, a pathogenic V. harveyi strain isolated from diseased fish. DegQ(Vh) was closely related to the HtrA family members identified in other Vibrio species and could complement the temperature-sensitive phenotype of an Escherichia coli strain defective in degP. Expression of degQVh in T4 was modulated by temperature, possibly through the sigma(E)-like factor. Enzymatic analyses demonstrated that the recombinant DegQVh protein expressed in and purified from E. coli was an active serine protease whose activity required the integrity of the catalytic site and the PDZ domains. The optimal temperature and pH of the recombinant DegQVh protein were 50 C and pH 8.0. A vaccination study indicated that the purified recombinant DegQVh was a protective immunogen that could confer protection upon fish against infection by V. harveyi. In order to improve the efficiency of DegQVh as a vaccine, a genetic construct in the form of the plasmid pAQ1 was built, in which the DNA encoding the processed DegQVh protein was fused with the DNA encoding the secretion region of AgaV, an extracellular beta-agarase. The E.coli strain harboring pAQ1 could express and secrete the chimeric DegQVh protein into the culture supernatant. Vaccination of fish with viable E. coli expressing chimeric degQ(Vh) significantly (P < 0.001) enhanced the survival of fish against V. harveyi challenge, which was possibly due to the relatively prolonged exposure of the immune system to the recombinant antigen produced constitutively, albeit at a gradually decreasing level, by the carrier strain.

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Clip domain serine protease (cSP), characterized by conserved clip domains, is a new serine protease family identified mainly in arthropod, and plays important roles in development and immunity. In the present study, the full-length cDNA of a cSP (designated EscSP) was cloned from Chinese mitten crab Eriocheir sinensis by expressed sequence tags (ESTs) and PCR techniques. The 1380 bp EscSP cDNA contained a 1152 bp open reading frame (ORF) encoding a putative cSP of 383 amino acids, a 5'-untranslated region (UTR) of 54 bp, and a 3'-UTR of 174 bp. Multiple sequence alignment presented twelve conserved cysteine residues and a canonical catalytic triad (His(185), Asp(235) and Ser(332)) critical for the fundamental structure and function of EscSP. Two types of cSP domains, the clip domain and tryp_spc domain, were identified in the deduced amino acids sequence of EscSP. The conservation characteristics and similarities with previously known cSPs indicated that EscSP was a member of the large cSP family. The mRNA expression of EscSP in different tissues and the temporal expression in haemocytes challenged by Listonella anguillarum were measured by real-time RT-PCR. EscSP mRNA transcripts could be detected in all examined tissues, and were higher expressed in muscle than that in hepatopancreas. gill, gonad, haemocytes and heart. The EscSP mRNA expression in haemocytes was up-regulated after L anguillarum challenge and peaked at 2 h (4.96 fold, P < 0.05) and 12 h (9.90 fold, P < 0.05). Its expression pattern was similar to prophenoloxidase (EsproPO), one of the components of crab proPO system found in our previous report. These results implied that EscSP was involved in the processes of host-pathogen interaction probably as one of the proPO system members. (C) 2009 Elsevier Ltd. All rights reserved.