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Cloning and expression of Treponema pallidum (Nichols) antigen genes in Escherichia coli.

机译:梅毒螺旋体(Nichols)抗原基因的克隆和表达

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摘要

Hybrid pBR322 plasmid clone banks comprised of more than 125,000 recombinant DNA clones and representing the entire Treponema pallidum Nichols genome were constructed in Escherichia coli K-12 RR1. The two clone banks individually contain over 53,000 and 72,000 recombinant clones. The number average and mass average sizes of the cloned DNA inserts were found to be approximately 12 and 13 kilobase pairs, respectively, indicating the presence of large treponemal DNA inserts in a majority of recombinant clones. To detect E. coli clones synthesizing T. pallidum antigens as hybrid plasmid gene translation products in the clone bank, a simplified, direct, solid-phase radioimmuno-colony blot (RICB) assay was developed employing immunoglobulin G antibody isolated from anti-T. pallidum immune rabbit serum. Clones with positive reactivities in the RICB assay were isolated at frequencies of 0.1 to 0.2%. One isolated RICB-positive clone, designated RICB2-1, produced a very strong signal in the RICB assay and was subsequently found through E. coli cell-free in vitro transcription/translation analysis to encode the synthesis of two gene translation products with apparent molecular weights of 77,000 and 44,000. The 44,000-dalton protein was effectively immunoprecipitated from [35S]methionine-labeled E. coli clone cells by using either immune rabbit serum (preabsorbed with Treponema phagedenis biotype Reiter antigens) or selected human syphilitic serum, whereas the 77,000-dalton protein was never immunoprecipitable by similar methods. Purified plasmid DNA from clone RICB2-1 contained a treponemal DNA insert of 3.70 kilobase pairs, which was of suitable size to code for the 121-dalton (44 + 77) protein. The insert was also flanked on each end by PstI sites and possessed three internal PstI sites with fragment sizes of 2.15, 1.18, 0.20, and 0.17 kilobase pairs. Purified clone RICB2-1 plasmid DNA was capable of transforming recipient E. coli cells to virtually 100% RICB reactivity, thus substantiating the plasmid-encoded characteristic. Further experiments employing various antisera in radioimmunoprecipitation systems utilizing cell-free in vitro synthesized gene translation products from clone RICB2-1 also provided the first evidence that E. coli may be capable of using endogenous T. pallidum DNA promotors for genetic expression. These studies, amplified by the isolation of a potentially significant immunoprecipitable 44,000-dalton recombinant protein antigen, point to the importance of the "cloned antigen gene" approach for the eventual eludication of specific antigens or immunogens operative in the pathogenesis, immunology, and serodiagnosis of T. pallidum infection.
机译:在大肠杆菌K-12 RR1中构建了杂种pBR322质粒克隆库,该库由125,000多个重组DNA克隆组成,代表了梅毒螺旋体的整个Nichols基因组。这两个克隆库分别包含53,000和72,000个重组克隆。发现克隆的DNA插入物的数均和质量平均大小分别为约12和13kb,这表明在大多数重组克隆中存在大的螺旋体DNA插入物。为了在克隆库中检测合成以苍白螺旋体抗原作为杂种质粒基因翻译产物的大肠杆菌克隆,开发了一种简化,直接的固相放射免疫集落印迹(RICB)测定法,该方法使用了从抗T分离的免疫球蛋白G抗体。苍白球免疫兔血清。在RICB分析中,阳性反应的克隆的分离频率为0.1%至0.2%。一个分离的RICB阳性克隆,称为RICB2-1,在RICB分析中产生了非常强的信号,随后通过无大肠杆菌的体外转录/翻译分析被发现,以编码具有明显分子的两个基因翻译产物的合成。重量分别为77,000和44,000。通过使用免疫兔血清(预先吸附了费氏密螺旋体生物型Reiter抗原)或选定的人梅毒血清,可以从[35S]蛋氨酸标记的大肠杆菌克隆细胞中有效地免疫沉淀44,000道尔顿蛋白,而77,000道尔顿的蛋白从未免疫沉淀。通过类似的方法。来自克隆RICB2-1的纯化质粒DNA含有一个3.70千碱基对的螺旋体DNA插入片段,其大小适合编码121道尔顿(44 + 77)蛋白。该插入物在每个末端还侧接PstI位点,并具有三个内部PstI位点,其片段大小为2.15、1.18、0.20和0.17千碱基对。纯化的克隆RICB2-1质粒DNA能够将受体大肠杆菌细胞转化为几乎100%的RICB反应性,从而证实了质粒编码的特征。进一步的实验在放射免疫沉淀系统中采用各种抗血清,该系统利用无病毒的体外克隆RICB2-1合成的基因翻译产物进行放射免疫沉淀,也提供了第一个证据,表明大肠杆菌可能能够使用内源性苍白螺旋菌DNA启动子进行基因表达。通过分离潜在重要的可免疫沉淀的44,000道尔顿重组蛋白抗原而进行的这些研究指出,“克隆抗原基因”方法对于最终消除在该病的发病机理,免疫学和血清学诊断中起作用的特定抗原或免疫原的重要性。梅毒螺旋体感染。

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