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The Urinary Glycopeptide Profile Differentiates Early Cardiorenal Risk in Subjects Not Meeting Criteria for Chronic
Aranzazu Santiago-Hernandez1,2, Marta Martin-Lorenzo1,2, María Gómez-Serrano3,4
1Immunology Department, Instituto de Investigación Sanitaria Fundación Jiménez Díaz-UAM, 28040 Madrid, Spain.
Insights
Early detection of kidney disease is crucial. This study identifies specific glycoproteins and N-glycosylation sites in urine that indicate increased cardiorenal risk in individuals with high-normal albumin-to-creatinine ratio (ACR), even before chronic kidney disease (CKD) is clinically apparent.
Area of Science:
- Biochemistry
- Nephrology
- Proteomics
Background:
- Chronic kidney disease (CKD) diagnosis and treatment remain a global challenge.
- Current clinical practice often underestimates cardiorenal risk in patients with high-normal albumin-to-creatinine ratio (ACR) (10-30 mg/g).
- There is a need for molecular indicators to identify individuals at higher risk for early CKD progression.
Purpose of the Study:
- To stratify normoalbuminuria ranges based on cardiorenal risk.
- To identify specific glycoproteins and N-glycosylation sites associated with kidney damage in subclinical CKD.
- To evaluate the role of glycosylation in early CKD assessment.
Main Methods:
- Urine glycoproteins were analyzed using mass spectrometry in hypertensive patients with high-normal ACR compared to controls.
- Enzyme-linked immunosorbent assay (ELISA) was used for confirmation in a separate cohort.
- Longitudinal follow-up (8 years) assessed renal function decline and ACR progression.
Main Results:
- Patients with high-normal ACR showed accelerated renal function decline and ACR progression over 8 years.
- Differential N-glycopeptides and pathogenic N-glycosylation sites were identified.
- A panel of 62 glycoproteins, including haptoglobin and transferrin, were altered in high-normal ACR individuals, suggesting disturbed iron metabolism and tubular reabsorption.
Conclusions:
- Glycosylation patterns are valuable for assessing cardiorenal risk in individuals not meeting current CKD criteria.
- Identified N-glycopeptides and glycosylation sites represent novel targets for early CKD risk assessment and intervention.
- The study highlights the tubule as a key target in early CKD progression.
Abstract:
Early diagnosis and treatment of chronic kidney disease (CKD) is a worldwide challenge. Subjects with albumin-to-creatinine ratio (ACR) ≥ 30 mg/g and preserved renal function are considered to be at no cardiorenal risk in clinical practice, but prospective clinical studies evidence increased risk, even at the high-normal (HN) ACR range (10-30 mg/g), supporting the need to identify other molecular indicators for early assessment of patients at higher risk. Following our previous studies, here we aim to stratify the normoalbuminuria range according to cardiorenal risk and identify the glycoproteins and N-glycosylation sites associated with kidney damage in subclinical CKD. Glycoproteins were analyzed in urine from hypertensive patients within the HN ACR range compared to control group (C; ACR < 10 mg/g) by mass spectrometry. A different cohort was analyzed for confirmation (ELISA) and sex perspective was evaluated. Patients' follow-up for 8 years since basal urine collection revealed higher renal function decline and ACR progression for HN patients. Differential N-glycopeptides and their N -glycosylation sites were also identified, together with their pathogenicity. N-glycosylation may condition pathological protein deregulation, and a panel of 62 glycoproteins evidenced alteration in normoalbuminuric subjects within the HN range. Haptoglobin-related protein, haptoglobin, afamin, transferrin, and immunoglobulin heavy constant gamma 1 (IGHG1) and 2 (IGHG2) showed increased levels in HN patients, pointing to disturbed iron metabolism and tubular reabsorption and supporting the tubule as a target of interest in the early progression of CKD. When analyzed separately, haptoglobin, afamin, transferrin, and IGHG2 remained significant in HN, in both women and men. At the peptide level, 172 N-glycopeptides showed differential abundance in HN patients, and 26 showed high pathogenicity, 10 of them belonging to glycoproteins that do not show variation between HN and C groups. This study highlights the value of glycosylation in subjects not meeting KDIGO criteria for CKD. The identified N-glycopeptides and glycosylation sites showed novel targets, for both the early assessment of individual cardiorenal risk and for intervention aimed at anticipating CKD progression.
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