NCBI Logo
GEO Logo
   NCBI > GEO > Accession DisplayHelp Not logged in | LoginHelp
GEO help: Mouse over screen elements for information.
          Go
Series GSE193510 Query DataSets for GSE193510
Status Public on Jan 15, 2022
Title A miR-125 / Sirtuin-7 pathway drives pro-calcific potential of myeloid cells in diabetic vascular disease
Organism Homo sapiens
Experiment type Expression profiling by high throughput sequencing
Summary Aims/hypothesis. Ectopic calcification is a typical feature of diabetic vascular disease and resembles an accelerated aging phenotype. We previously found an excess of myeloid calcifying cells (MCCs) in diabetic patients. We herein examined molecular and cellular pathways linking atherosclerotic calcification with calcification by myeloid cells in the diabetic milieu.
Methods. We first examined the associations among coronary calcification, MCC levels, and mononuclear cell gene expression in a cross-sectional study of 87 type 2 diabetic patients undergoing elective coronary angiography. Then, we undertook in vitro studies on mesenchymal stem cells (MSCs) and on the THP-1 myeloid cells line to verify the causal relationships of the observed associations.
Results. Coronary calcification was associated with 2.8-times higher MCC levels (p=0.037) and 50% elevated expression of the osteogenic gene RUNX2 in mononuclear cells, whereas expression of Sirtuin-7 (SIRT7) was inversely correlated with calcification. In standard differentiation assays of MSCs, SIRT7 knockdown activated the osteogenic program and worsened calcification, especially in the presence of high (20 mM) glucose. In the monocytic cell line THP-1, SIRT7 downregulation drove a pro-calcific phenotype, whereas SIRT7 overexpression prevented high-glucose induced calcification. Through the JAK/STAT pathway, high glucose induced miR-125b-5p, which in turn targeted SIRT7 in myeloid cells and was directly associated with coronary calcification.
Conclusions/interpretation. We describe a new pathway elicited by high glucose trough the JAK/STAT cascade, involving regulation of SIRT7 by mir-125b-5p driving calcification by myeloid cells. This pathway is associated with coronary calcification in diabetic patients and may be a target to tackle diabetic vascular disease.
 
Overall design mRNA profile on osteo-THP-1 cultured in high (20mM) glucose and normal (5 mM) glucose
 
Contributor(s) Ceolotto G
Citation(s) 35708762
Submission date Jan 12, 2022
Last update date Jul 08, 2022
Contact name Giulio Ceolotto
E-mail(s) giulio.ceolotto@unipd.it
Phone +39-049-8212263
Organization name University of Padova
Department Medicine
Lab Campus Biomedico
Street address Via Orus 2B
City Padova
ZIP/Postal code 35123
Country Italy
 
Platforms (1)
GPL21697 NextSeq 550 (Homo sapiens)
Samples (8)
GSM5811726 CTR-5mM G [2-CTR-1]
GSM5811727 CTR-5mM G [3-CTR-2]
GSM5811728 CTR-5mM G [4-CTR-3]
Relations
BioProject PRJNA796504

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE193510_data_file.csv.gz 1.5 Mb (ftp)(http) CSV
SRA Run SelectorHelp
Raw data are available in SRA
Processed data are available on Series record

| NLM | NIH | GEO Help | Disclaimer | Accessibility |
NCBI Home NCBI Search NCBI SiteMap