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致癌蛋白前梯度-2 内一个发散的底物结合环形成了 Reptin 的对接位点。

A divergent substrate-binding loop within the pro-oncogenic protein anterior gradient-2 forms a docking site for Reptin.

机构信息

Cancer Research UK p53 Signal Transduction Laboratories, Cell Signalling Unit, Institute of Genetics and Molecular Medicine, University of Edinburgh, Edinburgh EX4 2XR, Scotland, UK.

出版信息

J Mol Biol. 2010 Dec 3;404(3):418-38. doi: 10.1016/j.jmb.2010.09.035. Epub 2010 Oct 1.

Abstract

Anterior gradient-2 (AGR2) functions in a range of biological systems, including goblet cell formation, limb regeneration, inhibition of p53, and metastasis. There are no well-validated binding proteins for AGR2 protein despite the wealth of data implicating an important cellular function in vertebrates. The yeast two-hybrid system was used to isolate the ATP binding protein Reptin as an AGR2-interacting protein. AGR2 formed a stable complex in human cell lysates with Reptin, thus validating Reptin as an AGR2 binding protein in cells. Reptin was also shown to be overproduced in a panel of primary breast cancer biopsy specimens, relative to normal adjacent tissue from the same patient, suggesting a role in cancer growth in vivo. Mutations were made at the two ATP binding motifs in Reptin to evaluate the effects of ATP on Reptin-AGR2 complex stability. Loss-of-ATP binding mutations at the Walker A motif (K83A) or gain-of-ATP binding mutations at the Walker B motif (D299N) resulted in Reptin mutants with altered oligomerization, thermostability, and AGR2 binding properties. These data indicate that the two ATP binding motifs of Reptin play a role in regulating the stability of the AGR2-Reptin complex. The minimal region of AGR2 interacting with Reptin was localized using overlapping peptide libraries derived from the AGR2 protein sequence. The Reptin docking site was mapped to a divergent octapeptide loop in the AGR2 superfamily between amino acids 104 and 111. Mutations at codon Y104 or F111 in full-length AGR2 destabilized the binding of Reptin. These data highlight the existence of a protein docking motif on AGR2 and an ATP-regulated peptide-binding activity for Reptin. This knowledge has implications for isolating other AGR2-interacting proteins, for developing assays to isolate small molecules that target the Reptin ATP binding site, and for measuring the effects of the Reptin-AGR2 complex in cancer cell growth.

摘要

前梯度-2(AGR2)在多种生物系统中发挥作用,包括杯状细胞形成、肢体再生、抑制 p53 和转移。尽管有大量数据表明 AGR2 在脊椎动物中具有重要的细胞功能,但尚未发现其具有良好验证的结合蛋白。酵母双杂交系统被用于分离 ATP 结合蛋白 Reptin 作为 AGR2 相互作用蛋白。AGR2 在人细胞裂解物中与 Reptin 形成稳定的复合物,从而验证了 Reptin 是细胞中 AGR2 的结合蛋白。Reptin 在一组原发性乳腺癌活检标本中也被过度表达,相对于同一患者的正常相邻组织,提示其在体内癌症生长中发挥作用。在 Reptin 的两个 ATP 结合基序中进行突变,以评估 ATP 对 Reptin-AGR2 复合物稳定性的影响。在 Walker A 基序(K83A)处的 ATP 结合缺失突变或在 Walker B 基序(D299N)处的 ATP 结合获得突变导致 Reptin 突变体的寡聚化、热稳定性和 AGR2 结合特性发生改变。这些数据表明,Reptin 的两个 ATP 结合基序在调节 AGR2-Reptin 复合物稳定性中发挥作用。使用源自 AGR2 蛋白序列的重叠肽文库定位与 Reptin 相互作用的 AGR2 最小区域。Reptin 对接位点映射到 AGR2 超家族中氨基酸 104 和 111 之间的发散八肽环上。全长 AGR2 中 Y104 或 F111 密码子的突变使 Reptin 的结合不稳定。这些数据突出了 AGR2 上存在蛋白对接基序和 Reptin 的 ATP 调节肽结合活性。这一知识对于分离其他 AGR2 相互作用蛋白、开发用于分离靶向 Reptin ATP 结合位点的小分子的测定法以及测量 Reptin-AGR2 复合物在癌细胞生长中的作用具有重要意义。

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