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Sites in the CH3 Domain of Human IgA1 That Influence Sensitivity to Bacterial IgA1 Proteases

机译:人类IgA1 CH3结构域中影响细菌IgA1蛋白酶敏感性的位点

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The influence of regions, other than the hinge, on the susceptibility of human IgA1 to cleavage by diverse bacterial IgA1 proteases, was examined using IgA1 mutants bearing amino acid deletions, substitutions, and domain swaps. IgA1 lacking the tailpiece retained its susceptibility to cleavage by all of the IgA1 proteases. The domain swap molecule α1α2γ3, in which the CH3 domain of IgA1 was exchanged for that of human IgG1, was resistant to cleavage with the type 1 and 2 serine IgA1 proteases of Neisseria meningitidis , Neisseria gonorrhoeae , and Haemophilus influenzae , but remained sensitive to cleavage with the metallo-IgA1 proteases of Streptococcus pneumoniae , Streptococcus oralis , Streptococcus sanguis , and Streptococcus mitis . Substitution of the IgA1 Cα3 domain motif Pro440-Phe443 into the corresponding position in the Cγ3 domain of α1α2γ3 resulted now in sensitivity to the type 2 IgA1 protease of N. meningitidis , indicating the possible requirement of these amino acids for sensitivity to this protease. For the H. influenzae type 2 protease, resistance of an IgA1 mutant in which the CH3 domain residues 399–409 were exchanged with those from IgG1, but sensitivity of mutant HuBovα3 in which the Cα3 domain of bovine IgA replaces that of human IgA1, suggests that CH3 domain residues Glu403, Gln406, and Thr409 influence sensitivity to this enzyme. Hence, unlike the situation with the metallo-IgA1 proteases of Streptococcus spp., the sensitivity of human IgA1 to cleavage with the serine IgA1 proteases of Neisseria and Haemophilus involves their binding to different sites specifically in the CH3 domain.
机译:使用携带氨基酸缺失,取代和结构域互换的IgA1突变体,研究了铰链以外区域对人IgA1易受多种细菌IgA1蛋白酶裂解的影响。缺少尾端的IgA1保留了其对所有IgA1蛋白酶裂解的敏感性。 IgA1的CH3结构域被人IgG1的CH3结构域交换的域交换分子α1α2γ3抵抗脑膜炎奈瑟氏球菌,淋病奈瑟氏球菌和流感嗜血杆菌的1型和2型丝氨酸IgA1蛋白酶的切割,但仍然对切割敏感带有肺炎链球菌,口腔链球菌,血链球菌和拟南芥链球菌的金属IgA1蛋白酶。现在,将IgA1Cα3结构域基序Pro440-Phe443替换为α1α2γ3的Cγ3结构域中的相应位置,导致对脑膜炎双球菌的2型IgA1蛋白酶敏感,这表明可能需要这些氨基酸才能对这种蛋白酶敏感。对于流感嗜血杆菌2型蛋白酶,其中CH3域残基399-409与IgG1中的残基交换的IgA1突变体的耐药性,但其中牛IgA的Cα3结构域取代人IgA1的突变体HuBovα3的敏感性表明CH3域残基Glu403,Gln406和Thr409影响对该酶的敏感性。因此,与链球菌属的金属-IgA1蛋白酶的情况不同,人IgA1对奈瑟氏球菌和嗜血杆菌的丝氨酸IgA1蛋白酶切割的敏感性涉及它们与CH3结构域中不同位点的结合。

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