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Identification of human mannose binding lectin (MBL) recognition sites for novel inhibitory antibodies.

机译:鉴定人甘露糖结合凝集素(MBL)的新型抑制性抗体识别位点。

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Mannose binding lectin (MBL) binding initiates activation of the lectin complement pathway. Recent studies from our laboratory have demonstrated that MBL-dependent complement activation mediates cellular injury following oxidative stress in vivo and in vitro. A panel of novel inhibitory monoclonal antibodies (MAbs) against MBL (e.g., MAb 3F8, 2A9, and hMBL1.2) has been developed that inhibit MBL binding and lectin pathway activation. Here, we further characterized the interactions of these MAbs and their Fab fragments to MBL. Whole MAbs or their Fab fragments bound to MBL with relatively high affinity. Fab fragments of 3F8 were functionally effective in inhibiting MBL-dependent complement activation, however, steric hindrance of MAb 2A9 was essential for inhibition of MBL-dependent complement activation. We identified the hinge region, and residues EDCVLLL within the carbohydrate recognition domain of MBL as the recognition sites for MAb 3F8 and 2A9, respectively. The interaction of MAbs (e.g., 3F8 and2A9) to MBL was dependent on the conformation of their recognition sites. These findings demonstrate that MBL binding can be inhibited by at least two separate and independent mechanisms.
机译:甘露糖结合凝集素(MBL)结合可启动凝集素补体途径的激活。我们实验室的最新研究表明,MBL依赖性补体激活在体内和体外氧化应激后介导细胞损伤。已经开发出一组针对MBL的新型抑制性单克隆抗体(MAb)(例如,MAb 3F8、2A9和hMBL1.2),其抑制MBL结合和凝集素途径活化。在这里,我们进一步表征了这些单克隆抗体及其Fab片段与MBL的相互作用。完整的单克隆抗体或其Fab片段以相对较高的亲和力与MBL结合。 3F8的Fab片段在功能上有效抑制MBL依赖的补体激活,但是,MAb 2A9的位阻对于抑制MBL依赖的补体激活至关重要。我们确定了铰链区和MBL的碳水化合物识别域内的残基EDCVLLL分别作为单克隆抗体3F8和2A9的识别位点。 MAb(例如3F8和2A9)与MBL的相互作用取决于其识别位点的构象。这些发现表明,MBL结合可以被至少两种独立的机制所抑制。

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