931 resultados para SDS - PAGE


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用~(35)S-Met在照光下与豌豆完整叶绿体保温,显示新合成的标记的RubisCO大亚基与结合蛋白形成一复合物,经ATP处理后解离为结合蛋白亚基,同时释放出的标记的RubisCO大亚基参与了RubisCO的装配。豌豆叶片提取液经热处理,硫酸铵分部,DEAE-Sepharose fast flow和Sephacryl S-300柱层析在ND-PAGE,SDS-PAGE上显示为一条带,估计纯度达90%以上,得率比以前报道的高12倍。纯化的结合蛋白表面巯基数经测定为12±1个,总巯基数为36±1个。远紫外CD

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Outer membrane proteins (OMPs) of bacteria are key molecules interacting with the host environment. Flavobacterium columnare, a pathogen-causing columnaris disease of fish worldwide, was studied in order to understand the composition of its OMPs. The sarcosine-insoluble membrane fraction of the OMPs was analysed using sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) in combination with reverse-phase high-performance liquid chromatography-tandem mass spectrometry (RP-HPLC MS/MS). Thirty-six proteins were identified, including proteins involved in cell wall/membrane biogenesis, specific transport of various nutrients and in essential metabolism. The present study is the first report on the OMPs of F. columnare, and may serve as the basis for understanding the pathogenesis of the bacterium.

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The aim of the present study was to purify the common native carp growth hormone (ncGH), produce monoclonal antibodies (mAbs) to common native carp growth hormone (ncGH), and further enhance the sensitivity of enzyme-linked immunosorbent assays (ELISA) for ncGH. Additionally, we investigated changes in serum ncGH levels in carps raised in different environmental conditions. The recombinant grass carp (Ctenopharyngodon idella) growth hormone was purified and used as antigen to immunize the rabbit. The natural ncGH was isolated from the pituitaries of common carp. SDS-PAGE and Western blot utilizing the polyclonal anti-rgcGH antibody confirmed the purification of ncGH from pituitaries. Purified ncGH was then used as an immunogen in the B lymphocyte hybridoma technique. A total of 14 hybridoma cell lines (FMU-cGH 1-14) were established that were able to stably secrete mAbs against ncGH. Among them, eight clones (FMU-cGH1-6, 12 and 13) were successfully used for Western blot while nine clones (FMU-cGH 1-7, 9 and 10) were used in fluorescent staining and immunohistochemistry. Epitope mapping by competitive ELISA demonstrated that these mAbs recognized five different epitopes. A sensitive sandwich ELISA for detection of ncGH was developed using FMU-cGH12 as the coating mAb and FMU-cGH6 as the enzyme labeled mAb. This detection system was found to be highly stable and sensitive, with detection levels of 70 pg/mL. Additionally, we found that serum ncGH levels in restricted food group and in the net cage group increased 6.9-and 5.8-fold, respectively, when compared to controls, demonstrating differences in the GH stress response in common carp under different living conditions.

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A rhabdovirus associated with a lethal hemorrhagic disease in cultured turbot Scophthalm us maximus Linnaeus was isolated. The virus induced typical cytopathogenic effects (CPE) in 9 of 15 fish cell lines examined and was then propagated and isolated from infected carp leucocyte cells (CLC). Electron microscopy observations revealed that the negatively stained virions had a typical bullet-shaped morphology with one rounded end and one flat base end. The bullet-shaped morphology was more obvious and clear in ultrathin sections of infected cells. Experimental infections also indicated that the S. maximus rhabdovirus (SMRV) was not only a viral pathogen for cultured turbot, but also had the ability to infect other fish species, such as freshwater grass carp. A partial nucleotide sequence of the SMRV polymerase gene was determined by RT-PCR using 2 pairs of degenerate primers designed according to the conserved sequences of rhabdovirus polymerase genes. Homology analysis, amino acid sequence alignment, and phylogenetic relationship analysis of the partial SMRV polymerase sequence indicated that SMRV was genetically distinct from other rhabdoviruses. Sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) analysis of the purified SMRV revealed 5 major structural proteins, and their molecular masses were estimated to be about 250, 58, 47, 42, and 28 kDa. Significant serological reactivity differences were also observed between SMRV and its nearest neighbor, spring viremia of carp virus (SVCV). The data suggest that SMRV is likely a novel fish rhabdovirus, although it is closely related to rhabdoviruses in the genus Vesiculovirus.

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Co-infection of two viruses has been observed in mandarin fish (Siniperca chuatsi), but the two viruses have not been characterized. In this study, a rhabdovirus has been isolated from the co-infected two viruses extracted from the diseased mandarin fish, and its morphological structure and partial biochemical and biophysical characteristics have been observed and analyzed. The isolated rhabdovirus has a typical bullet shape, and is therefore called S. chttatsi rhabdovirus (SCRV). And, the isolated rhabdovirus produced a higher titer (10(8.5) TCID50 ml(-1)) than did the co-infecting viruses (10(6.5) TCID50 ml(-1)). Subsequently, the viral genome RNA was extracted, and used as template to clone the complete nucleoprotein (N) gene by RT-PCR amplification. Cloning and sequencing of the SCRV N protein revealed 42%-31% amino acid identities to that of trout rhabdovirus 903/87 and the rhabdoviruses in genus Vesiculovirus. SDS-PAGE separation of the isolated SCRV and other two rhabdoviruses also revealed obvious polypeptide profile difference. Moreover, the anti-SCRV N protein antibody was prepared, and the anti-SCRV N protein antibody only could recognize the SCRV N protein, whereas no antigenicity was detected in other two rhabdoviruses. The data suggested that the SCRV should be a rhabdovirus member related to the genus Vesiculovirus in the Rhabdoviridae. (c) 2006 Elsevier B.V. All rights reserved.

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Continuous gradient elution chromatography (CGEC) was employed to purify and separate enzymes and polysaccharides from the sap of Rhus vernicifera Chinese lacquer tree. There are three different molecules with laccase enzyme activity. Two are enzymes of each other (L1, and L2), whereas the third (RL) is an entirely separate entity. Two polysaccharides (GP1 and GP2) were also found. The Rhus laccase (RL), and isoenzymes L1 and L2, have peak molecular masses of 109,100, 120,000, 103,000 respectively; each has four copper atoms per molecule, and the pI values were 8.2, 8.6, and 9.1, respectively. The structure of the laccases was studied by Fourier-transform infrared (FT-IR) and Matrix-assisted laser desorption/ionization time-of flight (MALDI-TOF) mass spectrometry. The typical amide I (1646 cm(-1)) and amide II (1545 cm(-1)) bands were observed. The results from MALDI-TOF were similar to those from CGEC, but the molecular mass from the MALDI-TOF was significantly different from that obtained from sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE). (c) 2006 Elsevier B.V. All rights reserved.

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Transferrin (TF) polymorphism was investigated in a color variety of goldfish (Carassius auratus), and its molecular basis analyzed. Three TF variants (A(1), A(2) and B-1) were identified from an inbred strain of the goldfish, of which A(1) and B-1 displayed a large electrophoretic difference on both native and SDS-PAGE gels. The TF cDNAs corresponding to variants A(1) and B-1 were cloned and sequenced from A(1)A(1), A(1)B(1) and B1B1 individuals, and their deduced amino acid sequences were analyzed. Substantial amino acid variation occurred between variants A(1) and B-1, with significant differences in peptide length, theoretical molecular weight (Mw) and isoelectric point (pI). No potential glycosylation sites were observed in the two amino acid sequences, which excluded the possibility that carbohydrate difference might cause electrophoretic variation among the TF variants. Further analysis suggested that the distinct electrophoretic mobility of the two variants A(1) and B-1 by SDS-PAGE resulted from their Mw difference, while the difference by the native PAGE could be explained by their pI variation. Furthermore, genomic DNA fragments containing the transferrin alleles were amplified and subjected to RFLP analysis in A(1)A(1), A(1)B(1) and B1B1 individuals. The data revealed characteristic banding patterns for each TF genotype, and demonstrated that the TF alleles A(1) and B-1 could be used as a co-dominant marker system. The initial work relating to the goldfish TF variants will benefit the understanding of the evolutionary and functional significance of TF polymorphism in fish.

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Extracellular polymeric substances (EPS) from four filamentous cyanobacteria Microcoleus vaginatus, Scytonema javanicum, Phormidium tenue and Nostoc sp. and a coccoid single-cell green alga Desmococcus olivaceus that had been separated from desert algal crusts of Tegger desert of China, were investigated for their chemical composition, structure,and physical properties. The EPS contained 7.5-50.3% protein (in polymers ranging from 14 to more than 200 kD, SDS-PAGE) and 16.2-46.5% carbohydrate (110-460 kD, GFC). 6-12 kinds of monosaccharides, including 2-O-methyl rhamnose, 2-O-methyl glucose, and N-acetyl glucosamine were found. The main carbohydrate chains from M. vaginatus and S. javanicum consisted mainly of equal proportion of Man, Gal and Glc, that from P. tenue consisted mainly of arabinose, glucose and rhamnose. Arabinose was present in pyranose form, mainly alpha-L 1 --> 3 linked, with branches on C4 of almost half of the units. Glucose was responsible for the terminal units, in addition of having some units as beta1 --> 3 and some as beta1 --> 4 linked. Rhamnose was mainly 1 --> 3 linked with branches on C2 on half of the units. The carbohydrate polymer from D. olivaceus was composed mainly of beta1 --> 4 linked xylose, galactose and glucose. The galactose part was present both in beta-pyranose and -furanose forms. Arabinose in alpha-L-furanose form was mainly present as 1 --> 2 and 1 --> 2, 5 linked units, rhamnose only as alpha 1 --> 3 and xylose as beta 1 --> 4. The backbone of the polysaccharide from Nostoc sp. was composed of beta-1 --> 4 linked xylose, galactose and glucose. Most of the glucose was branched on position C6, terminal glucose and 2-O-methyl glucose units are also present. The relationship between structure, physical properties and potential biological function is discussed. (C) 2003 Elsevier Ltd. All rights reserved.

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Penaeid shrimp is the natural host of White Spot Syndrome Virus (WSSV) that can cause high mortality in the infected hosts. Attempts to obtain sufficient amounts of purified intact WSSV for characterization have been unsuccessful. Using crayfish, Cambarus clarkii as a proliferation system, a large amount of infectious WSSV was reproduced and intact WSSV viral particles were purified with a new isolation medium by ultra-centrifugation. Purified WSSV particles were very sensitive to organic solvents and the detergent, Triton X-100. The size of the rod-shape, somewhat elliptical, intact WSSV was 110-130 x 260-350 mm with a long, tail-like envelope extension. The naked viral nucleocapsid was about 80 x 350 nm, and it possessed 15 spiral and cylindrical helices composed of 14 globular capsomers along its long axis, and a 'ring' structure at one terminus. Distinct WSSV genome DNA patterns were obtained when the purified genomic dsDNA of WSSV was digested with five different restriction enzymes (HindIII, XhoI, B(BamHI, SalI, and SacI). In addition, at least 13 major and distinct protein bands could be observed when purified intact WSSV viruses were separated by SDS-PAGE followed by Coomassie Brilliant R-250 staining. The estimated molecular weights of these proteins were 190, 84, 75, 69, 68, 58, 52, 44, 28, 27.5, 23, 19, and 16 kD, respectively. Both the 44 and 190 kD proteins were easily removed if the hemolymph from the: WSSV infected crayfish was transiently treated with 1%, Triton X-100 before it was subjected to gradient centrifugation, indicating that both of them are located on the surface of the viral envelope. These characteristics are consistent with WSSV isolated from the penaeid shrimp. (C) 2001 Elsevier Science B.V. All rights reserved.

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本论文系统研究了长白山白眉蝮蛇蛇毒中四种具有抗栓活性及可以作为基础理论研究的工具酶的分离纯化,并进行了扩大化试验,得到了可直接用于工业生产的分离工艺流程。并采用SDS-聚丙烯酰胺凝胶电泳(SDSPAGE)、基质辅助激光解吸电离飞行时间质谱(MALDI-TOFMS)等分析手段确认了这四种酶的纯度及分子量,共获得以下几种质谱纯和电泳纯的酶A_2,其分子量为14.0kDa;三种精氨酸酯酶(AEasel、 AEase2和AEase3),它们的分子量分别为29.9kDa、27.5kDa、和28.8kDa;L-氨基酸氧化酶,其分子量为92.8 kDa;以及纤溶酶,其分子量为23.3 kDa。并对几种酶的质谱行为进行了系统研究,考察了酶的浓度等因素对多聚体多电荷离子峰形成的影响,并给出了它们的形成机理。上述酶中,我们按其分子量的大小、亚基组成以及氨基酸残基数目与文献报道的已知的酶相比较,认为L-氨基酸氧化酶、磷脂酶A_2和精氨酸酯酶2(Aease2)和精氨酸酯酶3(AEase3)是酶的新的类型。系统研究了所获得的四种酶的金属离子的含量,指出了磷脂酶A_2和纤溶酶均为Ca~(2+)离子结合蛋白,Ca~(2+)离子是酶分子活性所必需的。精氨酸酯酶和L-氨基酸氧化酶则为含Zn~(2+)酶,每个酶分子中分别含有两个和四个Zn~(2+)离子,它们仅起到稳定蛇毒酶的高级结构的作用,去除后对活性影响不大,并考察了多种金属离子对酶的活性和荧光光谱的作用。本文系统研究了四种酶的荧光光谱,用同步荧光光谱法了解了酶分子中略氨酸和色氨酸残基的微环境;用荧光淬灭方法,研究了其淬灭作用及机理,并讨论了荧光基团所处的环境。另外,还系统表征了几种酶的物理化学性质、酶学性质,得到了许多有意义的结果。

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用狂犬病毒免疫产蛋鸡,获得的免疫卵黄经水稀释脱脂-两步盐析-凝胶过滤法分离,得到的IgY经SDSPAGE分析其纯度在98%以上。纯化的 IgY 经二硫苏糖醇(DTT)还原,得到重链 (HC) 和轻链 (LC)。另外,IgY 经胃蛋白酶(pH4.0, 37℃)酶解后,得到片断抗体Fab。采用 MALDI-MS手段较准确地测定了 IgY及HC, LC, Fab的平均分子量,分别为 167250Da, 65105Da, 18660Da 和 45359Da,测量误差在 0.2%以下。研究表明,和哺乳动物的 IgGs相比,鸡卵黄 IgY的结构有两个特点:1.它的重链较长而轻链较短;2.胃蛋白酶敏解后产生 Fab而不是 F(ab')_2。对抗幽门螺杆菌 IgY 的研究表明,鸡卵黄免疫球蛋白具有良好的稳定性。在热、酸、胃蛋白酶和胰蛋白酶处理的条件下,IgY能够保留大部分抗体活性。免疫亲和捕获和 MALDI-MS手段相结合产生了免疫和质谱技术。我们在研究中发展了这一技术,提出了一个简单而有效的免疫分析方法。以干扰素-抗干扰素单抗为模型,确定了混合物中抗原蛋白质的存在,确定了抗原蛋白质上与抗体结合的大致位点。在MALDI-MS测定蛋白质分子量的实验中,采用了在线纯化蛋白质样品的新技术,简单、快速,能够提高蛋白质分子量测定的灵敏度,各种离子的信噪比和丰度得到改善。笼内金属富勒烯的有效提取对于进一步深入研究它的各种性质至关重要。采用高温高压法有效地提取了烟炱中的笼内金属富勒烯 M@C_(82) (M=Y, La, Gd, Tb),选择的提取溶剂为 1,2,4-三氯苯,金属富勒烯的产率较高,为烟炱的0.5%。

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人碱性成纤维细胞生长因子(bFGF)是一种单链的具有与肝素结合能力的多肤分子,它能够调节内皮细胞及其它来源于中胚层和神经外胚层等多种细胞的生长、分化、迁移和凋亡,同时是一种重要的血管生成因子,因此具有广泛的临床应用价值。本论文就将具有多种生物学功能的碱性碱纤维细胞生长因子开发为基因工程药物所存在的一些基本问题,进行了大量细致的研究工作并获得一些具有新意的研究结果。应用现代基因工程技术分别在原核E.coli系统和真核Pichia pastoris系统件1克隆表达了人碱性碱纤维细胞生长因子,生物活性测定结果表明在毕赤酵母体系中表达的重组人碱性碱纤维细胞生长因子的活性高于E.coli中表达的bFGF的活性。筛选出高分泌型的Pichia pastoris工程菌,并建立了高效表达的方法;经过一步亲和层析既获得了电泳纯的bFGF其产量为100mg/L发酵液。SDS-PAGE电泳以及Western blOt实验都证明了其具有天然bFGF的性质,并用紫外、荧光光谱刘于毕赤酵母表达体系表达的重组人bFGF的三维结构进行了表征,用圆二色谱对其二级结构进行了表征,同时用质谱测定了其精确分子量为17931 Da.首次研究了不同价态的稀土离子与碱性碱纤维细胞生长因子相互作用引起bFGF不同的构象及活性变化,以及聚金属氧酸盐(POM)在低浓度能够刺激bFGF的活性,在高浓度抑制bFGF活性的现象。

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出血性的蝰科蛇毒中含有丰富的蛇毒金属蛋白酶,本论文就竹叶青(Trimeresurus stejnegeri)蛇毒中的蛇毒金属蛋白酶的结构与功能进行研究。我们用生物化学手段从竹叶青(T.stejnegeri)的粗毒中分离纯化得到一个二聚体的P-IIIb亚型蛇毒金属蛋白酶,命名为TSV-DM。同时,用分子生物学方法从竹叶青(T.stejnegeri)的毒腺cDNA文库中克隆得到3个P-III型的蛇毒金属蛋白酶的cDNAs序列, 其中一个编码TSV-DM蛋白前体,另两个编码P-IIIc亚型的出血性蛇毒金属蛋白酶前体,分别命名为stejnihagin-A 和 stejnihagin-B。 经过阴离子层析和肝素亲和层析两步层析方法,我们从竹叶青(T. stejnegeri)蛇毒中分离纯化得到TSV-DM蛋白质,非还原条件下SDS-PAGE电泳表观分子量约110 kDa,还原条件下约为55 kDa。活性检测表明,TSV-DM降解牛纤维蛋白原Aα链快于Bβ链,且呈剂量依赖关系。但不降解明胶,不诱导出血,不具有促凝或者抗凝活性,以及不诱导或者抑制血小板聚集。蛋白质N-末端测序表明TSV-DM的成熟蛋白N-末端封闭。利用肽指纹图谱确证了TSV-DM的编码cDNA。TSV-DM的cDNA序列编码622个氨基酸残基的蛋白前体,包括信号肽、前肽、金属蛋白酶区域、间隔区、去整合素样区域和富含半胱氨酸区域。TSV-DM与其他P-III型蛇毒金属蛋白酶的一级结构序列比对发现TSV-DM和诱导血管内皮细胞凋亡的P-IIIb亚型蛇毒金属蛋白酶具有高度的同源性。但是用人脐带静脉血管内皮细胞系ECV304细胞作为靶细胞检测TSV-DM的诱导血管内皮细胞凋亡活性发现,TSV-DM只能抑制ECV304细胞的增殖和诱导细胞形态从多角形的内皮细胞向成纤维细胞样的梭形状改变。电泳检测抽提的片断化DNA以及流式细胞仪检测TSV-DM处理的ECV304细胞的DNA含量变化均表明TSV-DM不能诱导ECV304细胞的凋亡。 Stejnihagin-A 和stejnihagin-B是用PCR方法从竹叶青(T.stejnegeri)毒腺cDNA文库中克隆得到的两个P-III型蛇毒金属蛋白酶前体的cDNAs。这两个cDNA序列均编码600个氨基酸残基的蛋白前体,包括信号肽、前肽、金属蛋白酶区域、间隔区、去整合素样区域和富含半胱氨酸区域。推导成熟肽的氨基酸序列分析结果表明,stejnihagin-A 和stejnihagin-B不仅在一级结构序列上和来源于黄绿烙铁头(Trimeresurus flavoviridis)的HR1b具有高度同源性,高达79%, 而且在他们的金属蛋白酶区域的第100个氨基酸残基位置上均有一保守的半胱氨酸残基。结合序列比对和进化树的分析,我们推测stejnihagin-A、stejnihagin-B和HR1b有可能组成一个新的P-III型蛇毒金属蛋白酶亚型,命名为P-IIIc亚型。

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两栖类动物的皮肤是其得以生存的重要器官,它担负着许多生理功能,如呼吸、水份调节、温度控制、排泄、繁殖、抵抗微生物、防御天敌等。存在于两栖动物皮肤分泌物中的生物活性成分已成为研究热点。目前,己分离鉴定出许多具有各种生物活性的蛋白质及多肤。通过三步分离纯化过程:DEAE-SephadexA-50离子交换,SephadeX075凝胶过滤,和DEAE-SephadexA-50离子交换层析,我们从大蹼铃蟾(Bombinamaxima)皮肤匀浆物中分离得到纯化的大蹼铃蟾皮肤白蛋白(Bm-A-skin)。SDS-PAGE电泳表明,该蛋白为单链蛋白质,在还原状态下表观分子量为67kDa。非还原状态下至少存在三条带,分子量分别为50,55和110kDa。经N-端氨基酸序列分析,其序列均相同,故该蛋白在SDS存在下有同分异构体及多聚体形式。根据所测得的N端氨基酸序列及内肤序列设计引物,通过筛选已构建的大蹼铃蟾皮肤cDNA文库,获得了编码该蛋白的全长cDNA。经序列分析发现该蛋白由三个保守的血清白蛋白结构域组成,并且同人血清白蛋白及牛血清白蛋白的序列相似度分别为39%和38%。随后,我们从血清中也分离纯化到血清白蛋白(BmA-serum),并通过RT-PCR,从大蹼铃蟾肝脏中扩增得到其全长cDNA序列。对由cDNA序列推导的两个大蹼铃蟾白蛋白的氨基酸序列进行比较,发现二者基本相同,只有两个氨基酸的差异,即BmA-skin的Gly417,Ser569,在BmA-serum中均为Asn。造成这两个氨基酸差异的只有一个碱基的突变,即编码BmA-skinGly417,Ser569密码子的第二位碱基A在BmA-serum中变为G。另外,从肝脏获得的BmA-serum的cDNA3'非翻译区还有8个碱基的插入。经扫描光谱分析,BmA-skin含有大量的血红素b,含量为0.95moFinol蛋白,而BmA-serum中含量较少,为0.05mol/mol蛋白。经schiff试剂染色发现,BmA-skin及BmA-serum均为非糖蛋白质。两者均具有抑制trypsin水解小肚底物的活性,但对其它丝氨酸蛋白酶的活性则无抑制,如thrombin、chyomotryPSin、elastase及substilisin。利用表面等离子共振技术研究BmA-skin及BmA-serum与trysin的相互作用,分别得到它们与trrpsin结合的动力学常数,解离平衡常数KD为两者均通过由一对二硫键cys53-Cys62形成的一个暴露的活性位点环,以1:1分子摩尔比同tryrsin形成稳定的非共价结合的复合物,其反应活性位点为Arg58(P1)-His59(P1')。利用免疫组织化学方法研究发现,BmA-skin广泛地分布于成年大蹼铃蟾上皮细胞的细胞膜及真皮的疏松结缔组织层。表明其在蛙皮肤的生理功能中发挥重要作用,如水及代谢物质交换,渗透压的维持,皮肤呼吸等。另外,我们还从非洲爪蟾(xenopus勿即is)的血清及皮肤中分离到其68扔a的血清白蛋白,经初步鉴定也具有trtPsin抑制活性,但其抑制机制与B.maxima白蛋白不同,还有待于进一步研究。通过MTT法研究发现,BmA-skin对人T淋巴细胞H9、C8166及hemin处理的红白血病细胞K562具有细胞毒活性。三种细胞经BmA-skin处理72h,CC50A片段化,细胞核形态变化及流式细胞仪分析,结果显示,BmA-skin具有选择性诱导细胞调亡的特性。而BmA-serum对三种细胞均无毒性作用,单独的hemin对三种细胞的,胜也很弱。实验结果表明,BmA-skin结合的血红素b可能对其细胞毒及诱导细胞调亡的活性具有较大的贡献。用Cy3标记的BmA-skin与Hg和C8166细胞保温后,发现其进入细胞内发挥作用,这可能是其诱导细胞调亡机制之一。

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人类内源性病毒(HERVs)是远古具有感染能力的逆转录病毒整合于人类基因组的遗迹, 大约占人类基因组的3%~8%,至少包括31个家族。它们通过不同的途径参与人类各种生理和病理活动的调节过程。大多数人类内源性病毒的基因, 由于基因的突变或部分缺失而失去了转录的能力。但有些基因依然保持完整的开放读码框, 能翻译成有功能的蛋白, 如HERV-W家族的囊膜蛋白合胞素基因, 可以被转录并翻译成有功能的蛋白质。目前合胞素的生理功能以及在各种病理过程中的作用机制仍然不清楚。国内对于合胞素的功能研究处于起步阶段,尚无商品化试剂,而且也没有合胞素抗体制备的报道。我们通过PCR扩增人合胞素基因编码区的DNA片段,将其克隆入原核表达质粒pET30a (+),转化大肠杆菌 BL21,诱导产生了合胞素-His融合蛋白。采用割胶回收的方法纯化目的蛋白, 免疫新西兰白兔, 制备了多克隆抗体。最后通过ELISA、Western-Blot和免疫组织化学等方法检测抗体的效价和特异性。我们成功表达并纯化了合胞素-His融合蛋白, SDS-PAGE分析表明融合蛋白主要以包涵体形式存在;ELISA法测定抗体效价为 1:10 000;Western-Blot和免疫组织化学结果显示所制备的抗体能特异性识别合胞素蛋白,为下一步研究合胞素的生物学功能奠定了基础。我们首次发现,合胞素能够在白血病和淋巴瘤细胞系中表达。利用我们制备的抗合胞素多克隆抗体,我们进一步检测该基因是否在白血病和淋巴瘤患者的外周血中表达,所有患者的外周血标本,均来自云南省有关医院。作为对照,我们还检测了20 名健康志愿者的外周血细胞。实验证明,合胞素基因(包括 mRNA 和蛋白)也在白血病患者的外周血细胞表达,而不表达于健康志愿者的血细胞。在30 名不同的白血病和淋巴瘤患者中,有22 名有合胞素的表达。荧光实时定量RT-PCR 的方法比较了合胞素在细胞系和白血病患者外周血中表达的相对定量,发现合胞素基因在所检测的5 种淋巴细胞系、3 种粒细胞系和1 种淋巴瘤细胞系中都有相对稳定的表达,表达水平与C8166 细胞系相比,介于0.5-2 倍之间。而在白血病患者中的表达则介于1.8-33.4 倍不等。我们的结果提示,合胞素可能与白血病的形成有关,因为该基因表达的囊膜蛋白具有很强的促细胞融合活性,含有具有免疫抑制活性的肽段,而且已发现某些与其类似的蛋白有致瘤能力。