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曾在一个儿童患者体内,发现一个新的乙型肝炎病毒(HBV)变异株,其HBsAg主蛋白aa126发生Ile(ATT)到Ser(AGT)的取代。已知adr/ayr亚型HBsAg126位为Ile,而adw/ayw亚型HBsAg126位为Thr,表明HBsAg126Ser是一个新的变异株。用计算机做结构分析的结果表明,突变体HBsAg126Ser主蛋白aa120-aa130区段的二级结构与野生型adrHBVHBsAg126Ile相比发生明显的改变。这种构象的变化可能会影响a抗原决定簇(a124-aa147)的抗原性。为了证实这一点,构建了突变S基因表达质粒,在SV40早期启动子的控制下进行抗原表达。利用HBsAg9肽(Thr-Ile126-Pro-Ala-Gln-Gly-Thr-Ser-Met)抗i单克隆抗体和9肽(Thr-Thr126-Pro-Ala-Gln-Gly-Thr-Ser-Met)抗t单克隆抗体进行放射免疫测定,结果表明,这种Ser126突变蛋白对抗i单克隆抗体的反应性比野生蛋白减弱,对抗t单克隆抗体的反应性则与HBsAg126Thr接近。但用三种抗-a单克隆抗体的检测结果揭示,突变蛋白HBsAg126?
In a pediatric patient, a new variant of the hepatitis B virus (HBV) was found in which the HBsAg aa126 was substituted with Ile (ATT) to Ser (AGT). The adr / ayr subtype of HBsAg126 is known to be Ile, while the adw / ayw subtype of HBsAg126 is Thr, indicating that HBsAg126Ser is a new variant. Computer structural analysis showed that the secondary structure of the mutant aa120-aa130 HBsAg126Ser main protein compared with the wild-type adrHBVHBsAg126Ile significantly changed. This conformational change may affect the antigenicity of the a-antigenic determinant (a124-aa147). To confirm this, a mutant S gene expression plasmid was constructed and antigenic expression was performed under the control of the SV40 early promoter. Anti-i monoclonal antibody and 9 peptide (Thr-Thr126-Pro-Ala-Gln-Gly-Thr-Ser-Met) t monoclonal antibody radioimmunoassay, the results showed that the Ser126 mutein anti-i monoclonal antibody reactivity than the reduced wild-type protein, anti-t monoclonal antibody reactivity and HB sAg126Thr close. However, the results of the three anti-a monoclonal antibodies revealed that the mutant protein HBsAg126?