AI Article Synopsis

  • Cardiometabolic diseases like type 2 diabetes and cardiovascular disease significantly impact public health, and understanding the genetic control of proteins linked to these diseases may reveal their underlying biology.
  • Researchers conducted a protein quantitative trait locus (pQTL) analysis on 248 serum proteins in nearly 3,000 individuals from two Greek cohorts, identifying 301 pQTL variants associated with 170 proteins, including 12 rare variants.
  • They found specific proteins tied to cardiometabolic traits, such as Mep1b linked to HDL levels, and created a Mep1b knockout mouse model, highlighting the value of studying isolated populations for genetic research.

Article Abstract

Cardiometabolic diseases, such as type 2 diabetes and cardiovascular disease, have a high public health burden. Understanding the genetically determined regulation of proteins that are dysregulated in disease can help to dissect the complex biology underpinning them. Here, we perform a protein quantitative trait locus (pQTL) analysis of 248 serum proteins relevant to cardiometabolic processes in 2893 individuals. Meta-analyzing whole-genome sequencing (WGS) data from two Greek cohorts, MANOLIS (n = 1356; 22.5× WGS) and Pomak (n = 1537; 18.4× WGS), we detect 301 independently associated pQTL variants for 170 proteins, including 12 rare variants (minor allele frequency < 1%). We additionally find 15 pQTL variants that are rare in non-Finnish European populations but have drifted up in the frequency in the discovery cohorts here. We identify proteins causally associated with cardiometabolic traits, including Mep1b for high-density lipoprotein (HDL) levels, and describe a knock-out (KO) Mep1b mouse model. Our findings furnish insights into the genetic architecture of the serum proteome, identify new protein-disease relationships and demonstrate the importance of isolated populations in pQTL analysis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10077504PMC
http://dx.doi.org/10.1093/hmg/ddac275DOI Listing

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