rs112557609 - LINC01755 - RPSAP20

Magnitude 2.2 · 3 studies on file

Reported associations

  • A genome-wide association study of blood cell morphology identifies cellular proteins implicated in disease aetiology - Unknown journal (n.d.) · Unknown authors · PubMed 37596262

    ABSTRACT: Blood cells contain functionally important intracellular structures, such as granules, critical to immunity and thrombosis. Quantitative variation in these structures has not been subjected previously to large-scale genetic analysis. We perform genome-wide association studies of 63 flow-cytometry derived cellular phenotypes-including cell-type specific measures of granularity, nucleic acid content and reactivity-in 41,515 participants in the INTERVAL study. We identify 2172 distinct variant-trait associations, including associations near genes coding for proteins in organelles implicated in inflammatory and thrombotic diseases. By integrating with epigenetic data we show that many intracellular structures are likely to be determined in immature precursor cells. By integrating

  • Genome-wide association analysis identifies novel blood pressure loci and offers biological insights into cardiovascular risk - Unknown journal (n.d.) · Unknown authors · PubMed 28135244

    ABSTRACT: Elevated blood pressure is the leading heritable risk factor for cardiovascular disease worldwide. We report genetic association of blood pressure (systolic, diastolic, pulse pressure) among UK Biobank participants of European ancestry with independent replication in other cohorts, and robust validation of 107 independent loci. We also identify new independent variants at 11 previously reported blood pressure loci. Combined with results from a range of in silico functional analyses and wet bench experiments, our findings highlight new biological pathways for blood pressure regulation enriched for genes expressed in vascular tissues and identify potential therapeutic targets for hypertension. Results from genetic risk score models raise the possibility of a precision medicine appr

  • Trans-ethnic association study of blood pressure determinants in over 750,000 individuals - Unknown journal (n.d.) · Unknown authors · PubMed 30578418

    ABSTRACT: In this trans-ethnic multi-omic study we reinterpret the genetic architecture of blood pressure to identify genes, tissues, phenome, and medication contexts of blood pressure homeostasis. We discovered 208 novel common blood pressure SNPs and 53 rare variants in GWASs of systolic, diastolic and pulse pressure in up to 776,078 participants from the Million Veteran Program (MVP) and collaborating studies, with analysis of the blood pressure clinical phenome in MVP. Our transcriptome-wide association study detected 4,043 blood pressure associations with genetically-predicted gene expression of 840 genes in 45 tissues, and murine renal single-cell RNA sequencing identified upregulated blood pressure genes in kidney tubule cells. Editorial summary: Analysis of blood pressure data from


Auto-generated from study metadata. AI-synthesised commentary is added when this entry is regenerated through content-service's LLM mode.

Lifestyle context

Concrete actions anchored to the cited research. We do not prescribe, we describe.

Diet

  • dietary sodium reduction Moderate

    High sodium increases vascular stiffness and pulse pressure; reduction supports arterial compliance.

    Target less than 2300 mg sodium daily

Discuss with your doctor

  • baseline cardiovascular risk assessment Moderate

    Genetic predisposition to elevated pulse pressure warrants clinical risk stratification.

Exercise

  • aerobic exercise for vascular compliance Moderate

    Regular aerobic training improves endothelial function and reduces arterial stiffness.

    150 minutes moderate-intensity aerobic activity per week

Screening

  • blood pressure and pulse pressure Moderate

    Variant associated with increased arterial stiffness; elevated pulse pressure is an independent cardiovascular risk factor.

    Annual blood pressure screening