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开发新型口腔黏膜模型以研究跨膜黏蛋白-1的结构对黏膜膜形成及其物理化学性质的影响。

Development of New Models of Oral Mucosa to Investigate the Impact of the Structure of Transmembrane Mucin-1 on the Mucosal Pellicle Formation and Its Physicochemical Properties.

作者信息

Nivet Clément, Custovic Irma, Avoscan Laure, Bikker Floris J, Bonnotte Aline, Bourillot Eric, Briand Loïc, Brignot Hélène, Heydel Jean-Marie, Herrmann Noémie, Lelièvre Mélanie, Lesniewska Eric, Neiers Fabrice, Piétrement Olivier, Schwartz Mathieu, Belloir Christine, Canon Francis

机构信息

Center for Taste and Feeding Behaviour (CSGA), UMR1324 INRAE, Institut Agro Dijon, Université de Bourgogne, UMR6265 CNRS, 21000 Dijon, France.

Institut Carnot de Bourgogne (ICB), UMR CNRS 6303, University of Bourgogne, 21000 Dijon, France.

出版信息

Biomedicines. 2024 Jan 9;12(1):139. doi: 10.3390/biomedicines12010139.

Abstract

The mucosal pellicle (MP) is a biological film protecting the oral mucosa. It is composed of bounded salivary proteins and transmembrane mucin MUC1 expressed by oral epithelial cells. Previous research indicates that MUC1 expression enhances the binding of the main salivary protein forming the MP, MUC5B. This study investigated the influence of MUC1 structure on MP formation. A TR146 cell line, which does not express MUC1 natively, was stably transfected with genes coding for three MUC1 isoforms differing in the structure of the two main extracellular domains: the VNTR domain, exhibiting a variable number of tandem repeats, and the SEA domain, maintaining the two bound subunits of MUC1. Semi-quantification of MUC1 using dot blot chemiluminescence showed comparable expression levels in all transfected cell lines. Semi-quantification of MUC5B by immunostaining after incubation with saliva revealed that MUC1 expression significantly increased MUC5B adsorption. Neither the VNTR domain nor the SEA domain was influenced MUC5B anchoring, suggesting the key role of the MUC1 N-terminal domain. AFM-IR nanospectroscopy revealed discernible shifts indicative of changes in the chemical properties at the cell surface due to the expression of the MUC1 isoform. Furthermore, the observed chemical shifts suggest the involvement of hydrophobic effects in the interaction between MUC1 and salivary proteins.

摘要

黏膜薄膜(MP)是一种保护口腔黏膜的生物膜。它由结合的唾液蛋白和口腔上皮细胞表达的跨膜黏蛋白MUC1组成。先前的研究表明,MUC1的表达增强了形成MP的主要唾液蛋白MUC5B的结合。本研究调查了MUC1结构对MP形成的影响。一种天然不表达MUC1的TR146细胞系,被稳定转染了编码三种MUC1异构体的基因,这三种异构体在两个主要细胞外结构域的结构上有所不同:VNTR结构域,具有可变数量的串联重复序列;SEA结构域,维持MUC1的两个结合亚基。使用斑点印迹化学发光法对MUC1进行半定量分析,结果显示所有转染细胞系中的表达水平相当。用唾液孵育后通过免疫染色对MUC5B进行半定量分析,结果表明MUC1的表达显著增加了MUC5B的吸附。VNTR结构域和SEA结构域均未影响MUC5B的锚定,这表明MUC1 N端结构域起关键作用。原子力显微镜-红外纳米光谱显示出可辨别的位移,表明由于MUC1异构体的表达,细胞表面的化学性质发生了变化。此外,观察到的化学位移表明疏水作用参与了MUC1与唾液蛋白之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ac8/10812975/8889fa530a4c/biomedicines-12-00139-g001.jpg

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