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1.
J Allergy Clin Immunol ; 151(4): 1015-1026, 2023 04.
Article in English | MEDLINE | ID: mdl-36481267

ABSTRACT

BACKGROUND: Hidradenitis suppurativa (HS) is a chronic inflammatory disease characterized by painful inflamed nodules, abscesses, and pus-draining tunnels appearing in axillary, inguinal, and perianal skin areas. HS lesions contain various types of immigrated immune cells. OBJECTIVE: This study aimed to characterize mediators that support lesional B/plasma cell persistence in HS. METHODS: Skin samples from several cohorts of HS patients and control cohorts were assessed by mRNA sequencing, quantitative PCR on reverse-transcribed RNA, flow cytometry, and immunohistofluorescence. Blood plasma and cultured skin biopsy samples, keratinocytes, dermal fibroblasts, neutrophilic granulocytes (neutrophils), monocytes, and B cells were analyzed. Complex systems biology approaches were used to evaluate bulk and single-cell RNA sequencing data. RESULTS: Proportions of B/plasma cells, neutrophils, CD8+ T cells, and M0 and M1 macrophages were elevated in HS lesions compared to skin of healthy and perilesional intertriginous areas. There was an association between B/plasma cells, neutrophils, and B-cell activating factor (BAFF, aka TNFSF13B). BAFF was abundant in HS lesions, particularly in nodules and abscesses. Among the cell types present in HS lesions, myeloid cells were the main BAFF producers. Mechanistically, granulocyte colony-stimulating factor in the presence of bacterial products was the major stimulus for neutrophils' BAFF secretion. Lesional upregulation of BAFF receptors was attributed to B cells (TNFRSF13C/BAFFR and TNFRSF13B/TACI) and plasma cells (TNFRSF17/BCMA). Characterization of the lesional BAFF pathway revealed molecules involved in migration/adhesion (eg, CXCR4, CD37, CD53, SELL), proliferation/survival (eg, BST2), activation (eg, KLF2, PRKCB), and reactive oxygen species production (eg, NCF1, CYBC1) of B/plasma cells. CONCLUSION: Neutrophil-derived BAFF supports B/plasma cell persistence and function in HS lesions.


Subject(s)
B-Cell Activating Factor , Hidradenitis Suppurativa , Neutrophils , Hidradenitis Suppurativa/immunology , Hidradenitis Suppurativa/metabolism , Hidradenitis Suppurativa/pathology , Humans , B-Lymphocytes/pathology , Case-Control Studies , Male , Female , Adult , Middle Aged , Neutrophils/metabolism , Neutrophils/pathology , B-Cell Activating Factor/metabolism , Skin/metabolism , Skin/pathology
2.
Proc Natl Acad Sci U S A ; 117(17): 9318-9328, 2020 04 28.
Article in English | MEDLINE | ID: mdl-32273391

ABSTRACT

Alkylation of guanine bases in DNA is detrimental to cells due to its high mutagenic and cytotoxic potential and is repaired by the alkyltransferase AGT. Additionally, alkyltransferase-like proteins (ATLs), which are structurally similar to AGTs, have been identified in many organisms. While ATLs are per se catalytically inactive, strong evidence has suggested that ATLs target alkyl lesions to the nucleotide excision repair system (NER). Using a combination of single-molecule and ensemble approaches, we show here recruitment of UvrA, the initiating enzyme of prokaryotic NER, to an alkyl lesion by ATL. We further characterize lesion recognition by ATL and directly visualize DNA lesion search by highly motile ATL and ATL-UvrA complexes on DNA at the molecular level. Based on the high similarity of ATLs and the DNA-interacting domain of AGTs, our results provide important insight in the lesion search mechanism, not only by ATL but also by AGT, thus opening opportunities for controlling the action of AGT for therapeutic benefit during chemotherapy.


Subject(s)
Adenosine Triphosphatases/metabolism , Alkyl and Aryl Transferases/metabolism , DNA Repair/physiology , DNA-Binding Proteins/metabolism , Escherichia coli Proteins/metabolism , Alkyl and Aryl Transferases/genetics , Alkyl and Aryl Transferases/physiology , Alkylation/physiology , DNA/metabolism , DNA Damage , Escherichia coli/metabolism , Escherichia coli Proteins/physiology , Guanine/metabolism , Microscopy, Atomic Force/methods , Mutagenesis , O(6)-Methylguanine-DNA Methyltransferase/genetics , Optical Tweezers
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