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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Therapy with monoclonal antibodies. II. The contribution of Fc gamma receptor binding and the influence of C(H)1 and C(H)3 domains on in vivo effector function.
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Therapy with monoclonal antibodies. II. The contribution of Fc gamma receptor binding and the influence of C(H)1 and C(H)3 domains on in vivo effector function.

机译:用单克隆抗体治疗。二。 Fcγ受体结合的贡献以及C(H)1和C(H)3域对体内效应子功能的影响。

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摘要

An in vivo model is used to define Fc motifs engaged by mAbs to deplete target cells. Human IgG1 and human IgG4 were very potent, and mutations within a motif critical for Fc gammaR binding (glutamate 233 to proline, leucine/phenylalanine 234 to valine, and leucine 235 to alanine) completely prevented depletion. Mouse IgG2b was also potent, and mutations to prevent complement activation did not impair depletion with this isotype, as previously shown for human IgG1. In contrast, a mutation that impaired binding to mouse Fc gammaRII (glutamate 318 to alanine) eliminated effector function of mouse IgG2b and also reduced the potency of human IgG4. To reveal potential contributions of domains other than C(H)2, domain switch mutants were created between human IgG1 and rat IgG2a. Two hybrid mAbs were generated with potencies exceeding anything previously seen in this model. While their mechanism of depletion was not defined, their activity appeared dependent upon interdomain interactions in the Fc region.
机译:使用体内模型来定义由mAb参与的Fc基序,以耗尽靶细胞。人IgG1和人IgG4非常有效,对Fc gammaR结合至关重要的基序内的突变(谷氨酸233脯氨酸,亮氨酸/苯丙氨酸234缬氨酸和亮氨酸235丙氨酸)完全防止了耗竭。小鼠IgG2b也是有效的,防止补体激活的突变不会损害该同种型的耗竭,如先前对人IgG1所示。相反,削弱与小鼠Fc gammaRII结合的突变(谷氨酸318与丙氨酸)消除了小鼠IgG2b的效应子功能,并且还降低了人IgG4的效价。为了揭示除C(H)2以外的其他域的潜在贡献,在人IgG1和大鼠IgG2a之间创建了域切换突变体。产生了两个杂交单抗,其效力超过了该模型先前所见的任何能力。虽然它们的耗竭机理尚未定义,但它们的活性似乎取决于Fc区中的域间相互作用。

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