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白细胞介素-19受体复合物的分子建模。白细胞介素-10细胞因子家族中受体识别的新方面。

Molecular modeling of the interleukin-19 receptor complex. Novel aspects of receptor recognition in the interleukin-10 cytokine family.

作者信息

Preimel Dorothee, Sticht Heinrich

机构信息

Abteilung Bioinformatik, Institut für Biochemie, Emil-Fischer-Zentrum, Friedrich-Alexander-Universität Erlangen-Nürnberg, Fahrstr. 17, 91054, Erlangen, Germany.

出版信息

J Mol Model. 2004 Aug;10(4):290-6. doi: 10.1007/s00894-004-0195-8. Epub 2004 Jul 9.

Abstract

The interleukin-10 (IL-10) cytokine family consists of several viral and human homologs that exhibit distinct receptor binding specificities. In the present study, the complex between interleukin-19 (IL-19) and its physiological receptor-the interleukin-20 receptor alpha-chain (IL-20R1)-was modeled. The most prominent feature of this complex is an extended binding interface formed by a long loop of IL-20R1 and a bulge region of IL-19. The two regions exhibit complementary charges and have no structural counterparts in the IL-10/IL-10R1 complex but show some resemblance to the complex between interferon-gamma (IFN-gamma) and its receptor. Sequence comparison of the three cytokines (IL-19, IL-20, IL-24) that bind the IL-20R1 reveals a considerable conservation of the length of the interacting loops. One residue suggested to play a key role in receptor binding specificity is a conserved glutamate. The binding interface of IL-20R1 is rich in aromatic residues while the interfaces of its cytokine ligands are mainly formed by more flexible aliphatic amino acids. This structural feature might play an important role for the specific recognition of a single receptor chain by three different cytokines. [Figure: see text]. Comparison of the ligand/receptor interfaces in theA IL-10/IL-10R1,B IL-19/IL-20R1 andC IFN-gamma/receptor complexes. The translucent Connolly surfaces of the receptor and the ligand are shown in yellow and white, respectively. The backbone of the receptor and ligand are highlighted by a red and blue/green tube, respectively. For clarity, only one domain of the intertwined dimes is shown for IL-10 and IFN-gamma. Arrows denote the location of helix B and the corresponding structural elements in IL-19 and IFN-gamma as well as the location of receptor loop L2. As evident fromB andC an extended interaction surface is created in the IL-19/IL-20R1 and IFN-gamma/receptor complexes by the interaction of this structural element with a long loop of the respective receptor.

摘要

白细胞介素 -10(IL -10)细胞因子家族由几种病毒和人类同源物组成,它们具有不同的受体结合特异性。在本研究中,构建了白细胞介素 -19(IL -19)与其生理受体——白细胞介素 -20受体α链(IL -20R1)之间的复合物模型。该复合物最显著的特征是由IL -20R1的一个长环和IL -19的一个凸起区域形成的扩展结合界面。这两个区域呈现互补电荷,在IL -10/IL -10R1复合物中没有结构对应物,但与干扰素 -γ(IFN -γ)及其受体之间的复合物有一些相似之处。对结合IL -20R1的三种细胞因子(IL -19、IL -20、IL -24)进行序列比较,发现相互作用环的长度有相当程度的保守性。一个被认为在受体结合特异性中起关键作用的残基是保守的谷氨酸。IL -20R1的结合界面富含芳香族残基,而其细胞因子配体的界面主要由更灵活的脂肪族氨基酸形成。这种结构特征可能对三种不同细胞因子特异性识别单个受体链起重要作用。[图:见正文]。比较A IL -10/IL -10R1、B IL -19/IL -20R1和C IFN -γ/受体复合物中的配体/受体界面。受体和配体的半透明康诺利表面分别以黄色和白色显示。受体和配体的主链分别用红色和蓝/绿色管突出显示。为清晰起见,IL -10和IFN -γ仅显示了交织二聚体的一个结构域。箭头表示螺旋B的位置以及IL -19和IFN -γ中相应的结构元件以及受体环L2的位置。从B和C中可以明显看出,在IL -19/IL -20R1和IFN -γ/受体复合物中,通过该结构元件与各自受体的一个长环相互作用,形成了一个扩展的相互作用表面。

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