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首页> 外文期刊>Molecular Immunology >A monomeric human C4b-binding protein (C4bp) more efficiently inactivates C3b than natural C4bp: participation of C-terminal domains in factor I-cofactor activity.
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A monomeric human C4b-binding protein (C4bp) more efficiently inactivates C3b than natural C4bp: participation of C-terminal domains in factor I-cofactor activity.

机译:与天然C4bp相比,单体人C4b结合蛋白(C4bp)更有效地使C3b失活:C末端域参与因子I-辅因子的活性。

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We designed a cDNA construct encoding an artificial membrane molecule consisting of all 8 short consensus repeats (SCRs) of human monomeric C4b-binding protein (C4bp) followed by DAF's GPI anchor, named mC4bp, and expressed the protein on swine endothelial cells (SEC). At the same level of expression, mC4bp protected host cells as effectively as DAF, the most potent complement (C) regulator on the membrane. This result was unexpected from the reported functional properties of natural multimeric C4bp. Here, we investigated the mechanism whereby mC4bp has potent cell-protective activity. Our results were as follows: (1) mC4bp serves more efficiently as a methylamine-treated C3 (C3ma)-inactivating factor I-cofactor than natural C4bp and as efficiently as MCP as a methylamine-treated (C4ma)-inactivating cofactor by fluid-phase cofactor assay: (2) the potency of C3ma inactivation by mC4bp and factor I is quite high compared to those of other cofactors: (3)blocking studies using mAbs against C4bp suggested that both the 48 kDa N-terminal fragment and the C-terminal domain near the portion responsible for bundle formation participate in the high C3ma-inactivating capacity of mC4bp. Thus, acquiring high C3ma-inactivating capacity secondary to monomeric alteration leads to high C regulatory activity of mC4bp. These results infer that mC4bp differs from C4bp in its potent factor I-cofactor activity and is a good candidate as a safeguard against hyperacute rejection of xenografts.
机译:我们设计了一个cDNA构建体,该构建体编码一个由人工膜分子组成的人工膜分子,该分子由人类单体C4b结合蛋白(C4bp)的所有8个短共有重复序列(SCR)和DAF的GPI锚定物mC4bp组成,并在猪内皮细胞(SEC)上表达该蛋白。在相同的表达水平下,mC4bp与DAF(膜上最有效的补体(C)调节剂)一样有效地保护宿主细胞。从报道的天然多聚体C4bp的功能特性来看,这一结果是出乎意料的。在这里,我们研究了mC4bp具有有效的细胞保护活性的机制。我们的结果如下:(1)mC4bp作为甲胺处理的C3(C3ma)灭活因子I辅因子的效率比天然C4bp更高,并且与MCP的作用一样,与液化的甲胺处理的C3(C4ma)灭活辅因子一样有效。相辅因子分析:(2)与其他辅因子相比,mC4bp和因子I使C3ma失活的效力非常高:(3)使用针对C4bp的mAb进行的阻断研究表明48 kDa N末端片段和C-在负责束形成的部分附近的末端结构域参与mC4bp的高C3ma灭活能力。因此,获得继单体改变后的高C3ma灭活能力导致mC4bp的高C调节活性。这些结果表明,mC4bp在有效因子I-辅因子活性方面不同于C4bp,并且是防止异种移植物超急性排斥的良好选择。

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