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单一氨基酸突变可改变猪圆环病毒 2 的中和表型。

Single amino acid mutations in the capsid switch the neutralization phenotype of porcine circovirus 2.

机构信息

Department of Virology, Parasitology and Immunology, Faculty of Veterinary Medicine, Ghent University, Salisburylaan 133, 9820 Merelbeke, Belgium.

Department of Health Care and Biotechnology, KATHO Catholic University College of South-West Flanders, Wilgenstraat 32, 8800 Roeselare, Belgium.

出版信息

J Gen Virol. 2012 Jul;93(Pt 7):1548-1555. doi: 10.1099/vir.0.042085-0. Epub 2012 Apr 4.

Abstract

Porcine circovirus 2 (PCV2) is the causative agent of porcine circovirus-associated diseases in pigs. Previously, it was demonstrated that mAbs 16G12, 38C1, 63H3 and 94H8 directed against the PCV2 capsid protein recognize PCV2 strains Stoon-1010 (PCV2a), 48285 (PCV2b), 1121 (PCV2a), 1147 (PCV2b) and II9F (PCV2b), but only neutralize Stoon-1010 and 48285. This points to the existence of two distinct PCV2 neutralization phenotypes: phenotype α (mAb recognition with neutralization; Stoon-1010 and 48285) and phenotype β (mAb recognition without neutralization; 1121, 1147 and II9F). In the present study, amino acids that are important in determining the neutralization phenotype were identified in the capsid. Mutation of T at position 190 to A in strain 48285 (phenotype α) resulted in a capsid resembling that of strain 1147 (phenotype β) and caused a loss of neutralization (switch from α to β). Mutations of P at position 151 to T and A at position 190 to T in strain II9F (phenotype β) resulted in a capsid resembling that of strain 48285 (phenotype α) and gave a gain of neutralization (switch from β to α). Mutations of T at position 131 to P and of E at position 191 to R in Stoon-1010 (phenotype α) changed the capsid into that of 1121 (phenotype β) and reduced neutralization (switch from α to β). This study demonstrated that single amino acid changes in the capsid result in a phenotypic switch from α to β or β to α.

摘要

猪圆环病毒 2 型(PCV2)是引起猪圆环病毒相关疾病的病原体。先前的研究表明,针对 PCV2 衣壳蛋白的 mAb 16G12、38C1、63H3 和 94H8 可识别 PCV2 毒株 Stoon-1010(PCV2a)、48285(PCV2b)、1121(PCV2a)、1147(PCV2b)和 II9F(PCV2b),但仅能中和 Stoon-1010 和 48285。这表明存在两种不同的 PCV2 中和表型:表型 α(mAb 识别与中和;Stoon-1010 和 48285)和表型 β(mAb 识别但不中和;1121、1147 和 II9F)。本研究在衣壳中鉴定了决定中和表型的重要氨基酸。在 48285 株中,将位置 190 的 T 突变为 A(表型 α)导致衣壳类似于 1147 株(表型 β),并导致中和作用丧失(从 α 到 β 的转变)。在 II9F 株中,将位置 151 的 P 突变为 T 和位置 190 的 A 突变为 T(表型 β),导致衣壳类似于 48285 株(表型 α),并获得中和作用(从 β 到 α 的转变)。在 Stoon-1010 株中,将位置 131 的 T 突变为 P 和位置 191 的 E 突变为 R,使衣壳转变为 1121 株(表型 β),并降低中和作用(从 α 到 β 的转变)。本研究表明,衣壳中单个氨基酸的变化导致表型从 α 到 β 或从 β 到 α 的转变。

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