Lyu Mengying, Bai Yuying, Orihara Kanami, Miyanaga Kazuhiko, Yamamoto Naoyuki
School of Life Science and Technology, Tokyo Institute of Technology, Yokohama 226-8501, Japan.
Department of Infection and Immunity, School of Medicine, Jichi Medical University, 3311-1, Yakushiji, Tochigi 329-0489, Japan.
Microorganisms. 2023 May 25;11(6):1393. doi: 10.3390/microorganisms11061393.
Extracellular glyceraldehyde-3-phosphate dehydrogenase (GAPDH) has multiple interactions with various gut epithelial components. For instance, GAPDH in MG cells interacts with junctional adhesion molecule-2 (JAM-2) in Caco-2 cells and enhances tight junctions. However, the specificity of GAPDH toward JAM-2 and its role in the tight junctions in Caco-2 cells remain unclear. In the present study, we assessed the effect of GAPDH on tight junction regeneration and explored the GAPDH peptide fragments required for interaction with JAM-2. GAPDH was specifically bound to JAM-2 and rescued HO-damaged tight junctions in Caco-2 cells, with various genes being upregulated in the tight junctions. To understand the specific amino acid sequence of GAPDH that interacts with JAM-2, peptides interacting with JAM-2 and MG cells were purified using HPLC and predicted using TOF-MS analysis. Two peptides, namely GRIGRLAF at the N-terminus and SFTCQMVRTLLKFATL at the C-terminus, displayed good interactions and docking with JAM-2. In contrast, the long peptide DSTHGTFNHEVSATDDSIVVDGKKYRVYAEPQAQNIPW was predicted to bind to the bacterial cell surface. Overall, we revealed a novel role of GAPDH purified from MG in promoting the regeneration of damaged tight junctions and identified the specific sequences of GAPDH involved in JAM-2 binding and MG cell interaction.
细胞外甘油醛-3-磷酸脱氢酶(GAPDH)与多种肠道上皮成分存在多种相互作用。例如,MG细胞中的GAPDH与Caco-2细胞中的连接黏附分子2(JAM-2)相互作用,并增强紧密连接。然而,GAPDH对JAM-2的特异性及其在Caco-2细胞紧密连接中的作用仍不清楚。在本研究中,我们评估了GAPDH对紧密连接再生的影响,并探索了与JAM-2相互作用所需的GAPDH肽片段。GAPDH特异性结合JAM-2,并挽救了Caco-2细胞中过氧化氢损伤的紧密连接,紧密连接中的各种基因被上调。为了了解与JAM-2相互作用的GAPDH的特定氨基酸序列,使用高效液相色谱法纯化了与JAM-2和MG细胞相互作用的肽,并使用飞行时间质谱分析进行预测。两个肽,即N端的GRIGRLAF和C端的SFTCQMVRTLLKFATL,与JAM-2显示出良好的相互作用和对接。相比之下,长肽DSTHGTFNHEVSATDDSIVVDGKKYRVYAEPQAQNIPW预计会与细菌细胞表面结合。总体而言,我们揭示了从MG中纯化的GAPDH在促进受损紧密连接再生中的新作用,并确定了参与JAM-2结合和MG细胞相互作用的GAPDH的特定序列。