Univ. Lille, Inserm, CHU Lille, UMR-S1172 - JPArc - Centre de Recherche Jean-Pierre Aubert Neurosciences et Cancer, F-59000, Lille, France.
CHU Lille, Banque de tissus, F-59000, Lille, France.
Sci Rep. 2019 Nov 13;9(1):16678. doi: 10.1038/s41598-019-53099-0.
The MUC4 membrane-bound mucin is a large O-glycoprotein involved in epithelial homeostasis. At the cancer cell surface MUC4 interacts with ErbB2 receptor via EGF domains to promote cell proliferation and migration. MUC4 is highly regarded as a therapeutic target in pancreatic cancer as it is not expressed in healthy pancreas, while it is neoexpressed in early preneoplastic stages (PanINs). However, the association/dissociation constant of MUC4-ErbB2 complex is unknown. Protein-protein interactions (PPIs) have become a major area of research in the past years and the characterization of their interactions, especially by biophysical methods, is intensively used in drug discovery. To characterize the MUC4-ErbB2 interaction, we used MicroScale Thermophoresis (MST), a powerful method for quantitative protein interaction analysis under challenging conditions. We worked with CHO cell lysates containing either the transmembrane β subunit of MUC4 (MUC4β) or a truncated mutant encompassing only the EGF domains (MUC4). MST studies have led to the characterization of equilibrium dissociation constants (K) for MUC4β-ErbB2 (7-25 nM) and MUC4/ErbB2 (65-79 nM) complexes. This work provides new information regarding the MUC4-ErbB2 interaction at the biophysical level and also confirms that the presence of the three EGF domains of MUC4 is sufficient to provide efficient interaction. This technological approach will be very useful in the future to validate small molecule binding affinities targeting MUC4-ErbB2 complex for drug discovery development in cancer. It will also be of high interest for the other known membrane mucins forming oncogenic complexes with ErbBs at the cancer cell surface.
MUC4 膜结合粘蛋白是一种参与上皮细胞稳态的大型 O-糖蛋白。在癌细胞表面,MUC4 通过 EGF 结构域与 ErbB2 受体相互作用,促进细胞增殖和迁移。MUC4 被高度视为胰腺癌的治疗靶点,因为它在健康胰腺中不表达,而在早期癌前阶段(PanINs)中重新表达。然而,MUC4-ErbB2 复合物的缔合/解离常数尚不清楚。蛋白质-蛋白质相互作用 (PPIs) 已成为近年来研究的主要领域,其相互作用的特征,特别是通过生物物理方法,在药物发现中得到了广泛应用。为了表征 MUC4-ErbB2 相互作用,我们使用了微量热泳动 (MST),这是一种在挑战性条件下定量分析蛋白质相互作用的强大方法。我们使用含有 MUC4 跨膜β亚基 (MUC4β) 或仅包含 EGF 结构域的截断突变体的 CHO 细胞裂解物进行工作 (MUC4)。MST 研究导致了 MUC4β-ErbB2(7-25 nM)和 MUC4/ErbB2(65-79 nM)复合物的平衡解离常数 (K) 的表征。这项工作提供了关于 MUC4-ErbB2 相互作用在生物物理水平上的新信息,也证实了 MUC4 的三个 EGF 结构域的存在足以提供有效的相互作用。这种技术方法在未来将非常有用,可用于验证针对 MUC4-ErbB2 复合物的小分子结合亲和力,以开发癌症药物。它对于在癌细胞表面与 ErbBs 形成致癌复合物的其他已知膜粘蛋白也将具有很高的兴趣。