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Chronic Kidney Disease Transdifferentiates Veins into a Specialized Immune-Endocrine Organ with Increased MYCN-AP1
Fatma Saaoud1, Laisel Martinez2, Yifan Lu1
1Center for Cardiovascular Research, Department of Cardiovascular Sciences, Lewis Katz School of Medicine at Temple University, Philadelphia, PA 19140, USA.
Insights
Chronic kidney disease (CKD) transforms veins into immune organs, altering gene expression and priming them for arteriovenous fistula (AVF) failure by promoting inflammation and fibrosis.
Area of Science:
- Vascular Biology
- Nephrology
- Immunology
Background:
- Patients with end-stage renal disease (ESRD) often require hemodialysis, utilizing upper-extremity veins for arteriovenous fistula (AVF) creation.
- The impact of chronic kidney disease (CKD) on vein transcriptome and its predisposition to AVF failure remains largely unexplored.
Purpose of the Study:
- To investigate how CKD alters the gene expression profile of veins.
- To identify molecular mechanisms underlying vein reprogramming in CKD that may lead to AVF failure.
Main Methods:
- Transcriptomic analysis using bulk RNA sequencing.
- Comparison of vein gene expression between 48 CKD patients and 20 non-CKD controls.
Main Results:
- CKD upregulates immune and secretome genes, transforming veins into immune endocrine organs.
- Innate immune responses, intercellular communication (e.g., CX3CR1 signaling), and immunometabolic reprogramming are enhanced in CKD veins.
- Fibrogenic processes, cell death/survival pathways, and transcription factors involved in embryonic development are reprogrammed, predisposing veins to AVF failure.
Conclusions:
- CKD significantly reprograms vein transcriptome, promoting immune activation and fibrosis.
- These transcriptomic changes provide insights into vein dysfunction and AVF failure in CKD patients.
- Veins in CKD patients exhibit characteristics of immune endocrine organs, influencing vascular cell differentiation and function.
Abstract:
Most patients with end-stage renal disease (ESRD) and advanced chronic kidney disease (CKD) choose hemodialysis as their treatment of choice. Thus, upper-extremity veins provide a functioning arteriovenous access to reduce dependence on central venous catheters. However, it is unknown whether CKD reprograms the transcriptome of veins and primes them for arteriovenous fistula (AVF) failure. To examine this, we performed transcriptomic analyses of bulk RNA sequencing data of veins isolated from 48 CKD patients and 20 non-CKD controls and made the following findings: (1) CKD converts veins into immune organs by upregulating 13 cytokine and chemokine genes, and over 50 canonical and noncanonical secretome genes; (2) CKD increases innate immune responses by upregulating 12 innate immune response genes and 18 cell membrane protein genes for increased intercellular communication, such as CX3CR1 chemokine signaling; (3) CKD upregulates five endoplasmic reticulum protein-coding genes and three mitochondrial genes, impairing mitochondrial bioenergetics and inducing immunometabolic reprogramming; (4) CKD reprograms fibrogenic processes in veins by upregulating 20 fibroblast genes and 6 fibrogenic factors, priming the vein for AVF failure; (5) CKD reprograms numerous cell death and survival programs; (6) CKD reprograms protein kinase signal transduction pathways and upregulates SRPK3 and CHKB; and (7) CKD reprograms vein transcriptomes and upregulates MYCN, AP1, and 11 other transcription factors for embryonic organ development, positive regulation of developmental growth, and muscle structure development in veins. These results provide novel insights on the roles of veins as immune endocrine organs and the effect of CKD in upregulating secretomes and driving immune and vascular cell differentiation.
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