Golsaz-Shirazi Forough, Asadi-Asadabad Sahar, Sarvnaz Hamzeh, Mehdi Amiri Mohammad, Hojjat-Farsangi Mohammad, Chudy Michael, Jeddi-Tehrani Mahmood, Shokri Fazel
Department of Immunology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.
Department of Immunology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.
Clin Chim Acta. 2020 Nov;510:203-210. doi: 10.1016/j.cca.2020.07.026. Epub 2020 Jul 15.
Hepatitis B surface antigen (HBsAg) specific monoclonal antibodies (mAbs) are potentially valuable therapeutic and diagnostic tool. We have previously established and characterized a panel of mAbs derived from immunized BALB/c mice with a yeast-derived recombinant HB vaccine subgentoype A2 and HBsAg subtype adw2. This study was conducted to evaluate the reactivity pattern of this anti-HBs mAbs panel with various genotypes and subgenotypes of HBV using the first WHO HBV genotype reference panel containing 15 serum samples representing the subgenotypes A1, A2, B1, B2, C2, D1-D3, E, F2, and H. Ten out of 21 anti-HBs mAbs were able to strongly recognize all gentopye/subtypes of HBsAg provided in the WHO reference panel. However, 10 out of 21 anti-HBs mAbs showed a moderate to profound loss of reactivity with HBV genotypes/HBsAg subtypes D2/ayw3, E/ayw4, F2/adw4, and H/adw4. Two mAbs from the second group displayed a profoundly reduced reactivity with only 1 out of 3 C2/adr genotype/subtype samples. The amino acid alignment of these 3 samples showed that this particular sample contains amino acid substitution at residue 127, which is located inside "a" determinant. This amino acid substitution, which profoundly affected the reactivity of anti-HBs antibodies, has been previously reported only in D/ayw3, E/ayw4, F/adw4, and H. Interestingly, the amino acid alignment of the samples in this WHO panel showed that P127T substitution can also be found in C2/adr. Comparing amino acids sequences inside the antigenic loop (AGL) showed that D2/ayw3 contains a T118A/P127T double substitution, E/ayw4 contains P127L/T140S, F2/adw4 contains P127L/T140S/ F158L, and H/adw4 contains P127L substitution. Therefore, amino acid variability at positions 118, 127, 140, and 158 was found to cause significant loss of reactivity with anti-HBs mAbs. Since HBsAg variability in different genotypes of HBV can profoundly affect the reactivity of anti-HBs mAbs, analytical sensitivity for HBsAg assays should be considered based on the circulating and common HBV variants in the relevant countries.
乙肝表面抗原(HBsAg)特异性单克隆抗体(mAbs)是具有潜在价值的治疗和诊断工具。我们之前已建立并鉴定了一组源自用酵母衍生的重组乙肝疫苗亚型A2和HBsAg亚型adw2免疫的BALB/c小鼠的单克隆抗体。本研究旨在使用首个世界卫生组织(WHO)乙肝病毒基因型参考品系评估该抗HBs单克隆抗体组与各种基因型和亚基因型乙肝病毒的反应模式,该参考品系包含15份血清样本,代表A1、A2、B1、B2、C2、D1 - D3、E、F2和H亚基因型。21种抗HBs单克隆抗体中有10种能够强烈识别WHO参考品系中提供的所有HBsAg基因型/亚基因型。然而,21种抗HBs单克隆抗体中有10种与乙肝病毒基因型/HBsAg亚基因型D2/ayw3、E/ayw4、F2/adw4和H/adw4的反应性出现中度至显著丧失。第二组中的两种单克隆抗体与3份C2/adr基因型/亚基因型样本中的仅1份反应性大幅降低。这3份样本的氨基酸比对显示,该特定样本在位于“a”决定簇内的第127位残基处存在氨基酸替换。这种深刻影响抗HBs抗体反应性的氨基酸替换此前仅在D/ayw3、E/ayw4、F/adw4和H中报道过。有趣的是,该WHO参考品系中样本的氨基酸比对显示,在C2/adr中也可发现P127T替换。对抗抗原环(AGL)内的氨基酸序列进行比较显示,D2/ayw3包含T118A/P127T双重替换,E/ayw4包含P127L/T140S,F2/adw4包含P127L/T140S/F158L,H/adw4包含P127L替换。因此,发现第118、127、140和158位的氨基酸变异性会导致与抗HBs单克隆抗体的反应性显著丧失。由于不同基因型乙肝病毒中HBsAg的变异性可深刻影响抗HBs单克隆抗体的反应性,应根据相关国家中循环的和常见的乙肝病毒变体来考虑HBsAg检测的分析灵敏度。