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Effect of Mutations in the Human Immunoglobulin A1 (IgA1) Hinge on Its Susceptibility to Cleavage by Diverse Bacterial IgA1 Proteases

机译:人免疫球蛋白A1(IgA1)铰链中的突变对其多样化细菌IgA1蛋白酶裂解的影响

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摘要

Components of the human immunoglobulin A1 (IgA1) hinge governing sensitivity to cleavage by bacterial IgA1 proteases were investigated. Recombinant antibodies with distinct hinge mutations were constructed from a hybrid comprised of human IgA2 bearing half of the human IgA1 hinge region. This hybrid antibody and all the mutant antibodies derived from it were resistant to cleavage by the IgA1 proteases from Streptococcus oralis and Streptococcus mitis biovar 1 strains but were cleaved to various degrees by those of Streptococcus pneumoniae, some Streptococcus sanguis strains, and the type 1 and 2 IgA1 proteases of Haemophilus influenzae, Neisseria meningitidis, and Neisseria gonorrhoeae. Remarkably, those proteases that cleave a Pro-Ser peptide bond in the wild-type IgA1 hinge were able to cleave mutant antibodies lacking a Pro-Ser peptide bond in the hinge, and those that cleave a Pro-Thr peptide bond in the wild-type IgA1 hinge were able to cleave mutant antibodies devoid of a Pro-Thr peptide bond in the hinge. Thus, the enzymes can cleave alternatives to their preferred postproline peptide bond when such a bond is unavailable. Peptide sequence analysis of a representative antibody digestion product confirmed this conclusion. The presence of a cleavable peptide bond near the CH2 end of the hinge appeared to result in greater cleavage than if the scissile bond was at the CH1 end of the hinge. Proline-to-serine substitution at residue 230 in a hinge containing potentially cleavable Pro-Ser and Pro-Thr peptide bonds increased the resistance of the antibody to cleavage by many IgA1 proteases.
机译:研究了人类免疫球蛋白A1(IgA1)铰链的组件,这些组件决定了细菌IgA1蛋白酶对切割的敏感性。由具有人IgA1铰链区一半的人IgA2组成的杂交体构建具有明显铰链突变的重组抗体。这种杂合抗体和所有衍生的突变抗体均对口腔链球菌和微生物链球菌biovar 1菌株的IgA1蛋白酶具有抗切割性,但被肺炎链球菌,某些链球菌Sanguis菌株和1型和流感嗜血杆菌,脑膜炎奈瑟氏球菌和淋病奈瑟氏球菌的2种IgA1蛋白酶。值得注意的是,那些在野生型IgA1铰链中切割Pro-Ser肽键的蛋白酶能够切割在铰链中缺少Pro-Ser肽键的突变抗体,而在野生型IgA1铰链中可以切割Pro-Shr肽键的蛋白酶。 IgA1型铰链能够切割在铰链中没有Pro-Thr肽键的突变抗体。因此,当这种键不可用时,这些酶可以切割其优选的脯氨酸后肽键的替代物。代表性抗体消化产物的肽序列分析证实了这一结论。与在铰链的CH1末端处存在易裂键相比,在铰链的CH2末端附近存在可裂解的肽键似乎会导致更大的裂解。在含有可能裂解的Pro-Ser和Pro-Thr肽键的铰链中,残基230上的脯氨酸到丝氨酸取代增加了抗体对许多IgA1蛋白酶裂解的抗性。

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