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胰岛素的A链与胰岛素受体的插入结构域接触。与糖尿病相关裂隙的光交联和诱变。

The A-chain of insulin contacts the insert domain of the insulin receptor. Photo-cross-linking and mutagenesis of a diabetes-related crevice.

作者信息

Huang Kun, Chan Shu Jin, Hua Qing-xin, Chu Ying-Chi, Wang Run-ying, Klaproth Birgit, Jia Wenhua, Whittaker Jonathan, De Meyts Pierre, Nakagawa Satoe H, Steiner Donald F, Katsoyannis Panayotis G, Weiss Michael A

机构信息

Department of Biochemistry, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Biol Chem. 2007 Nov 30;282(48):35337-49. doi: 10.1074/jbc.M705996200. Epub 2007 Sep 20.

Abstract

The contribution of the insulin A-chain to receptor binding is investigated by photo-cross-linking and nonstandard mutagenesis. Studies focus on the role of Val(A3), which projects within a crevice between the A- and B-chains. Engineered receptor alpha-subunits containing specific protease sites ("midi-receptors") are employed to map the site of photo-cross-linking by an analog containing a photoactivable A3 side chain (para-azido-Phe (Pap)). The probe cross-links to a C-terminal peptide (residues 703-719 of the receptor A isoform, KTFEDYLHNVVFVPRPS) containing side chains critical for hormone binding (underlined); the corresponding segment of the holoreceptor was shown previously to cross-link to a Pap(B25)-insulin analog. Because Pap is larger than Val and so may protrude beyond the A3-associated crevice, we investigated analogs containing A3 substitutions comparable in size to Val as follows: Thr, allo-Thr, and alpha-aminobutyric acid (Aba). Substitutions were introduced within an engineered monomer. Whereas previous studies of smaller substitutions (Gly(A3) and Ser(A3)) encountered nonlocal conformational perturbations, NMR structures of the present analogs are similar to wild-type insulin; the variant side chains are accommodated within a native-like crevice with minimal distortion. Receptor binding activities of Aba(A3) and allo-Thr(A3) analogs are reduced at least 10-fold; the activity of Thr(A3)-DKP-insulin is reduced 5-fold. The hormone-receptor interface is presumably destabilized either by a packing defect (Aba(A3)) or by altered polarity (allo-Thr(A3) and Thr(A3)). Our results provide evidence that Val(A3), a site of mutation causing diabetes mellitus, contacts the insert domain-derived tail of the alpha-subunit in a hormone-receptor complex.

摘要

通过光交联和非标准诱变研究胰岛素A链对受体结合的贡献。研究集中于位于A链和B链之间缝隙内的缬氨酸(A3位)的作用。利用含有特定蛋白酶位点的工程化受体α亚基(“中型受体”),通过含有可光活化A3侧链(对叠氮苯丙氨酸(Pap))的类似物来确定光交联位点。该探针与一个C末端肽(受体A同工型的703 - 719位残基,KTFEDYLHNVVFVPRPS,下划线部分为对激素结合至关重要的侧链)发生交联;先前已表明全受体的相应片段可与Pap(B25)-胰岛素类似物发生交联。由于Pap比缬氨酸大,可能会突出到与A3相关的缝隙之外,因此我们研究了如下大小与缬氨酸相当的A3取代类似物:苏氨酸、别苏氨酸和α-氨基丁酸(Aba)。取代是在工程化单体中引入的。尽管先前对较小取代(甘氨酸(A3)和丝氨酸(A3))的研究遇到了非局部构象扰动,但本类似物的核磁共振结构与野生型胰岛素相似;变异侧链以最小的扭曲容纳在类似天然的缝隙中。Aba(A3)和别苏氨酸(A3)类似物的受体结合活性至少降低了10倍;苏氨酸(A))DKP-胰岛素的活性降低了5倍。激素-受体界面可能因堆积缺陷(Aba(A3))或极性改变(别苏氨酸(A3)和苏氨酸(A3))而不稳定。我们的结果提供了证据,表明导致糖尿病 mellitus的突变位点缬氨酸(A3)在激素-受体复合物中与α亚基的插入结构域衍生尾部接触。

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