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表达重组人补体 C1q 有助于鉴定 C1r/C1s 结合位点。

Expression of recombinant human complement C1q allows identification of the C1r/C1s-binding sites.

机构信息

Commissariat à l'Energie Atomique et aux Energies Alternatives, Direction des Sciences du Vivant, Institut de Biologie Structurale, F-38027 Grenoble, France.

出版信息

Proc Natl Acad Sci U S A. 2013 May 21;110(21):8650-5. doi: 10.1073/pnas.1304894110. Epub 2013 May 6.

Abstract

Complement C1q is a hexameric molecule assembled from 18 polypeptide chains of three different types encoded by three genes. This versatile recognition protein senses a wide variety of immune and nonimmune ligands, including pathogens and altered self components, and triggers the classical complement pathway through activation of its associated proteases C1r and C1s. We report a method for expression of recombinant full-length human C1q involving stable transfection of HEK 293-F mammalian cells and fusion of an affinity tag to the C-terminal end of the C chain. The resulting recombinant (r) C1q molecule is similar to serum C1q as judged from biochemical and structural analyses and exhibits the characteristic shape of a bunch of flowers. Analysis of its interaction properties by surface plasmon resonance shows that rC1q retains the ability of serum C1q to associate with the C1s-C1r-C1r-C1s tetramer, to recognize physiological C1q ligands such as IgG and pentraxin 3, and to trigger C1r and C1s activation. Functional analysis of rC1q variants carrying mutations of LysA59, LysB61, and/or LysC58, in the collagen-like stems, demonstrates that LysB61 and LysC58 each play a key role in the interaction with C1s-C1r-C1r-C1s, with LysA59 being involved to a lesser degree. We propose that LysB61 and LysC58 both form salt bridges with outer acidic Ca(2+) ligands of the C1r and C1s CUB (complement C1r/C1s, Uegf, bone morphogenetic protein) domains. The expression method reported here opens the way for deciphering the molecular basis of the unusual binding versatility of C1q by mapping the residues involved in the sensing of its targets and the binding of its receptors.

摘要

补体 C1q 是一种六聚体分子,由三个不同类型的多肽链组成,这三个类型的多肽链由三个基因编码。这种多功能识别蛋白可以识别多种免疫和非免疫配体,包括病原体和自身成分的改变,并通过激活其相关蛋白酶 C1r 和 C1s 触发经典补体途径。我们报告了一种表达重组全长人 C1q 的方法,该方法涉及稳定转染 HEK 293-F 哺乳动物细胞,并在 C 链的 C 末端融合一个亲和标签。从生化和结构分析判断,所得重组(r)C1q 分子与血清 C1q 相似,并表现出花束的特征形状。通过表面等离子体共振分析其相互作用特性表明,rC1q 保留了与 C1s-C1r-C1r-C1s 四聚体结合、识别生理 C1q 配体(如 IgG 和 pentraxin 3)以及触发 C1r 和 C1s 激活的能力。对在胶原样茎部携带 LysA59、LysB61 和/或 LysC58 突变的 rC1q 变体进行功能分析,证明 LysB61 和 LysC58 各自在与 C1s-C1r-C1r-C1s 的相互作用中发挥关键作用,而 LysA59 的作用程度较小。我们提出,LysB61 和 LysC58 都与 C1r 和 C1s 的 CUB(补体 C1r/C1s、Uegf、骨形态发生蛋白)结构域的外部酸性 Ca(2+)配体形成盐桥。这里报道的表达方法为通过绘制参与其靶标感知和受体结合的残基,为破译 C1q 异常结合多功能性的分子基础开辟了道路。

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