Dermatan sulfate is a potential regulator of IgH via interactions with pre-BCR, GTF2I, and BiP ER complex in pre-B lymphoblasts Journal Article


Authors: Lee, J.; Rho, J. H.; Roehrl, M. H.; Wang, J. Y.
Article Title: Dermatan sulfate is a potential regulator of IgH via interactions with pre-BCR, GTF2I, and BiP ER complex in pre-B lymphoblasts
Abstract: Dermatan sulfate (DS) and autoantigen (autoAg) complexes are capable of stimulating autoreactive CD5+ B1 cells. We examined the activity of DS on CD5+ pre-B lymphoblast NFS-25 cells. CD19, CD5, CD72, PI3K, and Fas possess varying degrees of DS affinity. The three pre-BCR components, Ig heavy chain mu (IgH), VpreB, and lambda 5, display differential DS affinities, with IgH having the strongest affinity. DS attaches to NFS-25 cells, gradually accumulates in the ER, and eventually localizes to the nucleus. DS and IgH co-localize on the cell surface and in the ER. DS associates strongly with 17 ER proteins (e.g., BiP/Grp78, Grp94, Hsp90ab1, Ganab, Vcp, Canx, Kpnb1, Prkcsh, Pdia3), which points to an IgH-associated multiprotein complex in the ER. In addition, DS interacts with nuclear proteins (Ncl, Xrcc6, Prmt5, Eftud2, Supt16h) and Lck. We also discovered that DS binds GTF2I, a required gene transcription factor at the IgH locus. These findings support DS as a potential regulator of IgH in pre-B cells at protein and gene levels. We propose a (DS•autoAg)-autoBCR dual signal model in which an autoBCR is engaged by both autoAg and DS, and, once internalized, DS recruits a cascade of molecules that may help avert apoptosis and steer autoreactive B cell fate. Through its affinity with autoAgs and its control of IgH, DS emerges as a potential key player in the development of autoreactive B cells and autoimmunity. © Copyright © 2021 Lee, Rho, Roehrl and Wang.
Keywords: autoimmunity; bip; gtf2i; dermatan sulfate (ds); ig heavy chain; precursor bcr
Journal Title: Frontiers in Immunology
Volume: 12
ISSN: 1664-3224
Publisher: Frontiers Media S.A.  
Date Published: 2021-05-25
Start Page: 680212
Language: English
DOI: 10.3389/fimmu.2021.680212
PUBMED: 34113352
PROVIDER: scopus
PMCID: PMC8185350
DOI/URL:
Notes: Article -- Export Date: 1 July 2021 -- Source: Scopus
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  1. Michael H Roehrl
    127 Roehrl