Schwann cell-derived periostin promotes autoimmune peripheral polyneuropathy via macrophage recruitment
JOURNAL OF CLINICAL INVESTIGATION
Authors: Allard, Denise E.; Wang, Yan; Li, Jian Joel; Conley, Bridget; Xu, Erin W.; Sailer, David; Kimpston, Caellaigh; Notini, Rebecca; Smith, Collin-Jamal; Koseoglu, Emel; Starmer, Joshua; Zeng, Xiaopei L.; Howard, James F., Jr.; Hoke, Ahmet; Scherer, Steven S.; Su, Maureen A.
Abstract
Chronic inflammatory demyelinating polyneuropathy (CIDP) and Guillain-Barre syndrome (GBS) are inflammatory neuropathies that affect humans and are characterized by peripheral nerve myelin destruction and macrophage-containing immune infiltrates. In contrast to the traditional view that the peripheral nerve is simply the target of autoimmunity, we report here that peripheral nerve Schwann cells exacerbate the autoimmune process through extracellular matrix (ECM) protein induction. In a spontaneous autoimmune peripheral polyneuropathy (SAPP) mouse model of inflammatory neuropathy and CIDP nerve biopsies, the ECM protein periostin (POSTN) was upregulated in affected sciatic nerves and was primarily expressed by Schwann cells. Postn deficiency delayed the onset and reduced the extent of neuropathy, as well as decreased the number of macrophages infiltrating the sciatic nerve. In an in vitro assay, POSTN promoted macrophage chemotaxis in an integrin-AM (ITGAM) and ITGAV-dependent manner. The PNS-infiltrating macrophages in SAPP-affected nerves were pathogenic, since depletion of macrophages protected against the development of neuropathy. Our findings show that Schwann cells promote macrophage infiltration by upregulating Postn and suggest that POSTN is a novel target for the treatment of macrophage-associated inflammatory neuropathies.
Molecular signatures of chronic periodontitis in gingiva: A genomic and proteomic analysis
JOURNAL OF PERIODONTOLOGY
Authors: Guzeldemir-Akcakanat, Esra; Alkan, Begum; Sunnetci-Akkoyunlu, Deniz; Gurel, Busra; Balta, V. Merve; Kan, Bahadir; Akgun, Emel; Yilmaz, Elif Busra; Baykal, Ahmet Tarik; Cine, Naci; Olgac, Vakur; Gumuslu, Esen; Savli, Hakan
Abstract
Background To elucidate molecular signatures of chronic periodontitis (CP) using gingival tissue samples through omics-based whole-genome transcriptomic and whole protein profiling. Methods Gingival tissues from 18 CP and 25 controls were analyzed using gene expression microarrays to identify gene expression patterns and the proteins isolated from these samples were subjected to comparative proteomic analysis by liquid chromatography-tandem mass spectrometry (LC-MS/MS). The data from transcriptomics and proteomics were integrated to reveal common shared genes and proteins. Results The most upregulated genes in CP compared with controls were found as MZB1, BMS1P20, IGLL1/IGLL5, TNFRSF17, ALDH1A1, KIAA0125, MMP7, PRL, MGC16025, ADAM11, and the most upregulated proteins in CP compared with controls were BPI, ITGAM, CAP37, PCM1, MMP-9, MZB1, UGTT1, PLG, RAB1B, HSP90B1. Functions of the identified genes were involved cell death/survival, DNA replication, recombination/repair, gene expression, organismal development, cell-to-cell signaling/interaction, cellular development, cellular growth/proliferation, cellular assembly/organization, cellular function/maintenance, cellular movement, B-cell development, and identified proteins were involved in protein folding, response to stress, single-organism catabolic process, regulation of peptidase activity, and negative regulation of cell death. The integration and validation analysis of the transcriptomics and proteomics data revealed two common shared genes and proteins, MZB1 and ECH1. Conclusion Integrative data from transcriptomics and proteomics revealed MZB1 as a potent candidate for chronic periodontitis.