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The Influences of Hinge Length and Composition on the Susceptibility of Human IgA to Cleavage by Diverse Bacterial IgA1 Proteases

机译:铰链长度和组成对人类IgA易感性细菌IgA1蛋白酶裂解的影响

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The influences of IgA hinge length and composition on its susceptibility to cleavage by bacterial IgA1 proteases were examined using a panel of IgA hinge mutants. The IgA1 proteases of Streptococcus pneumoniae , Streptococcus sanguis strains SK4 and SK49, Neisseria meningitidis , Neisseria gonorrhoeae , and Haemophilus influenzae cleaved IgA2-IgA1 half hinge, an Ab featuring half of the IgA1 hinge incorporated into the equivalent site in IgA1 protease-resistant IgA2, whereas those of Streptococcus mitis , Streptococcus oralis , and S. sanguis strain SK1 did not. Hinge length reduction by removal of two of the four C-terminal proline residues rendered IgA2-IgA1 half hinge resistant to all streptococcal IgA1 metalloproteinases but it remained sensitive to cleavage by the serine-type IgA1 proteases of Neisseria and Haemophilus spp. The four C-terminal proline residues could be substituted by alanine residues or transferred to the N-terminal extremity of the hinge without affect on the susceptibility of the Ab to cleavage by serine-type IgA1 proteases. However, their removal rendered the Ab resistant to cleavage by all the IgA1 proteases. We conclude that the serine-type IgA1 proteases of Neisseria and Haemophilus require the Fab and Fc regions to be separated by at least ten (or in the case of N. gonorrhoeae type I protease, nine) amino acids between Val222 and Cys241 (IgA1 numbering) for efficient access and cleavage. By contrast, the streptococcal IgA1 metalloproteinases require 12 or more appropriate amino acids between the Fab and Fc to maintain a minimum critical distance between the scissile bond and the start of the Fc.
机译:使用一组IgA铰链突变体检查了IgA铰链长度和组成对其对细菌IgA1蛋白酶切割的敏感性的影响。肺炎链球菌,血链球菌菌株SK4和SK49,脑膜炎奈瑟氏球菌,淋病奈瑟氏球菌和流感嗜血杆菌的IgA1蛋白酶切割了一半的IgA2-IgA1铰链,一个具有一半IbA1铰链的Ab结合到IgA1蛋白酶等效位点中。而微生物链球菌,口头链球菌和血红链球菌SK1则没有。通过去除四个C末端脯氨酸残基中的两个残基减少了铰链长度,使IgA2-IgA1半铰链对所有链球菌IgA1金属蛋白酶均具有抗性,但它仍然对奈瑟氏球菌和嗜血杆菌属的丝氨酸型IgA1蛋白酶的切割敏感。四个C末端脯氨酸残基可以被丙氨酸残基取代或转移到铰链的N末端末端,而不会影响Ab对丝氨酸型IgA1蛋白酶裂解的敏感性。然而,它们的去除使得Ab对所有IgA1蛋白酶的切割均具有抗性。我们得出的结论是,奈瑟氏球菌和嗜血杆菌的丝氨酸型IgA1蛋白酶要求Fab和Fc区被Val222和Cys241(IgA1编号)之间的至少十个氨基酸(或对于淋病奈瑟氏球菌I型蛋白酶而言,被九个氨基酸)隔开。 )以进行有效访问和切割。相比之下,链球菌IgA1金属蛋白酶在Fab与Fc之间需要12个或更多个合适的氨基酸,以维持易裂键与Fc起始之间的最小临界距离。

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