Multisample Mass Spectrometry-Based Approach for Discovering Injury Markers in Chronic Kidney Disease

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초록

Urinary proteomics studies have primarily focused on identifying markers of chronic kidney disease (CKD) progression. Here, we aimed to determine urinary markers of CKD renal parenchymal injury through proteomics analysis in animal kidney tissues and cells and in the urine of patients with CKD. Label-free quantitative proteomics analysis based on liquid chromatography–tandem mass spectrometry was performed on urine samples obtained from 6 normal controls and 9, 11, and 10 patients with CKD stages 1, 3, and 5, respectively, and on kidney tissue samples from a rat CKD model by 5/6 nephrectomy. Tandem mass tag-based quantitative proteomics analysis was performed for glomerular endothelial cells (GECs) and proximal tubular epithelial cells (PTECs) before and after inducing 24-h hypoxia injury. Upon hierarchical clustering, out of 858 differentially expressed proteins (DEPs) in the urine of CKD patients, the levels of 416 decreased and 403 increased sequentially according to the disease stage, respectively. Among 2965 DEPs across 5/6 nephrectomized and sham-operated rat kidney tissues, 86 DEPs showed same expression patterns in the urine and kidney tissue. After cross-validation with two external animal proteome data sets, 38 DEPs were organized; only ten DEPs, including serotransferrin, gelsolin, poly ADP-ribose polymerase 1, neuroblast differentiation-associated protein AHNAK, microtubule-associated protein 4, galectin-1, protein S, thymosin beta-4, myristoylated alanine-rich C-kinase substrate, and vimentin, were finalized by screening human GECs and PTECs data. Among these ten potential candidates for universal CKD marker, validation analyses for protein S and galectin-1 were conducted. Galectin-1 was observed to have a significant inverse correlation with renal function as well as higher expression in glomerulus with chronic injury than protein S. This constitutes the first multisample proteomics study for identifying key renal-expressed proteins associated with CKD progression. The discovered proteins represent potential markers of chronic renal cell and tissue damage and candidate contributors to CKD pathophysiology. © 2021 THE AUTHORS.

키워드

albumin; biological marker; creatinine; galectin 1; gelsolin; hemoglobin; MARCKS protein; messenger RNA; microtubule associated protein 4; neuroblast differentiation associated protein ahnak; nicotinamide adenine dinucleotide adenosine diphosphate ribosyltransferase 1; nitrogen; protein; protein S; timbetasin; transferrin; unclassified drug; urea; vimentin; adult; albumin blood level; animal cell; animal experiment; animal model; animal tissue; Article; chronic kidney failure; clinical article; cohort analysis; controlled study; creatinine blood level; disease marker; endothelium cell; estimated glomerular filtration rate; female; hemoglobin blood level; hierarchical clustering; human; human cell; juxtaglomerular cell; kidney cell; kidney parenchyma; kidney tissue; liquid chromatography-mass spectrometry; male; nephrectomy; nonhuman; priority journal; protein to creatinine ratio; protein urine level; proteomics; proximal tubule cell; quantitative analysis; randomized controlled trial; rat; urea nitrogen blood level; urine sampling
제목
Multisample Mass Spectrometry-Based Approach for Discovering Injury Markers in Chronic Kidney Disease
저자
Kim, Ji Eun; Han, D.; Jeong, J.S.; Moon, J.J.; Moon, H.K.; Lee, S.; Kim, Y.C.; Yoo, K.D.; Lee, J.W.; Kim, D.K.; Kwon, Young Joo; Kim, Y.S.; Yang, S.H.
DOI
10.1074/MCP.RA120.002159
발행일
2021-00
유형
Article
저널명
Molecular & Cellular Proteomics
권
20