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Interactions of monomeric IgG bearing covalently bound C3b with polymorphonuclear leucocytes.

机译:带有共价结合的C3b的单体IgG与多形核白细胞的相互作用。

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摘要

The interactions of monomeric IgG, monomeric C3b, dimeric C3b, and C3b covalently bound to IgG (C3b-IgG) with neutrophils were examined. C3b-IgG heterodimers exhibited an increased affinity of binding to neutrophils, relative to C3b, both at half normal ionic strength (five-fold enhancement) and at normal ionic strength (six-fold enhancement). Binding of monomeric IgG to neutrophils was barely detectable and did not permit direct measurements of affinity in our assay conditions. The increased affinity of C3b-IgG for neutrophils was the result of divalent interactions with CR1, the C3b receptor, and the Fc gamma receptor of the cells, as could be demonstrated by competition studies using unlabelled IgG in the medium or monoclonal antibodies against the neutrophil Fc gamma receptor. This double receptor-ligand interaction allowed C3b-IgG to bind to the cells not only at normal ionic strength, but also in the presence of a 315-fold excess of IgG (near plasma concentration)--conditions that would preclude the binding of C3b or IgG alone. Furthermore, this interaction leads to the internalization of the C3b-IgG complex by the cells. C3b-IgG is internalized with kinetics similar to those found using dimeric C3b, with resting cells demonstrating a slow initial phase, which is accelerated by phorbol ester activation in both cases. Uptake of the homodimeric C3b was greater at 15 min than that of heterodimeric C3b-IgG, but both were significantly greater than that of monomer C3b, which showed no net internalization. The physiological implications of these findings are discussed.
机译:检查了单体IgG,单体C3b,二聚体C3b和与IgG共价结合的C3b(C3b-IgG)与嗜中性粒细胞的相互作用。相对于C3b,C3b-IgG异源二聚体在中性离子强度的一半(增强5倍)和中性离子强度(增强6倍)时均表现出与嗜中性粒细胞结合的亲和力增加。单体IgG与嗜中性粒细胞的结合几乎无法检测到,因此无法在我们的测定条件下直接测量亲和力。 C3b-IgG对嗜中性白细胞的亲和力增加是与细胞CR1,C3b受体和Fcγ受体二价相互作用的结果,这可以通过在培养基中使用未标记的IgG或针对嗜中性白细胞的单克隆抗体进行竞争研究来证明Fcγ受体。这种双重受体-配体相互作用使C3b-IgG不仅能以正常的离子强度结合到细胞上,而且还存在315倍过量的IgG(接近血浆浓度)时结合到细胞上,这种情况会阻止C3b结合或单独使用IgG。此外,这种相互作用导致细胞将C3b-IgG复合物内在化。 C3b-IgG的内在化动力学类似于使用二聚体C3b时发现的动力学,静止细胞显示出缓慢的初始阶段,在两种情况下佛波醇酯激活均可加速该阶段。同二聚体C3b在15分钟时的摄取大于异二聚体C3b-IgG,但两者均显着大于单体C3b,后者没有净内在化。这些发现的生理意义进行了讨论。

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