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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Transcriptional profile of platelets and iPSC-derived megakaryocytes from whole-genome and RNA sequencing
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Transcriptional profile of platelets and iPSC-derived megakaryocytes from whole-genome and RNA sequencing

机译:来自全基因组和RNA测序的血小板和IPSC衍生巨核细胞的转录谱

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Genome-wide association studies have identified common variants associated with platelet-related phenotypes, but because these variants are largely intronic or intergenic, their link to platelet biology is unclear. In 290 normal subjects from the GeneSTAR Research Study (110 African Americans [AAs] and 180 European Americans [EAs]), we generated whole-genome sequence data from whole blood and RNA sequence data from extracted nonribosomal RNA from 185 induced pluripotent stem cell-derived megakaryocyte (MK) cell lines (platelet precursor cells) and 290 blood platelet samples from these subjects. Using eigenMT software to select the peak single-nucleotide polymorphism(SNP) for each expressed gene, and meta-analyzing the results of AAs and EAs, we identify (q-value < 0.05) 946 cis-expression quantitative trait loci (eQTLs) in derived MKs and 1830 cis-eQTLs in blood platelets. Among the 57 eQTLs shared between the 2 tissues, the estimated directions of effect are very consistent (98.2% concordance). A high proportion of detected cis-eQTLs (74.9% in MKs and 84.3% in platelets) are unique to MKs and platelets compared with peak-associated SNP-expressed gene pairs of 48 other tissue types that are reported in version V7 of the Genotype-Tissue Expression Project. The locations of our identified eQTLs are significantly enriched for overlap with several annotation tracks highlighting genomic regions with specific functionality in MKs, including MK-specific DNAse hotspots, H3K27-acetylation marks, H3K4-methylation marks, enhancers, and superenhancers. These results offer insights into the regulatory signature of MKs and platelets, with significant overlap in genes expressed, eQTLs detected, and enrichment within known superenhancers relevant to platelet biology.
机译:全基因组关联研究已经确定了与血小板相关表型相关的常见变异,但由于这些变异主要是内含子或基因间变异,它们与血小板生物学的联系尚不清楚。在GeneSTAR研究的290名正常受试者(110名非裔美国人[AAs]和180名欧洲裔美国人[EAs])中,我们从185个诱导多能干细胞衍生巨核细胞(MK)细胞系(血小板前体细胞)和这些受试者的290个血小板样本中提取非核糖体RNA,并从全血中生成全基因组序列数据。使用eigenMT软件选择每个表达基因的单核苷酸多态性峰值(SNP),并对AAs和EAs的结果进行荟萃分析,我们在衍生MKs中鉴定(q值<0.05)946个顺式表达数量性状位点(EQTL),在血小板中鉴定1830个顺式EQTL。在两个组织共有的57个EQTL中,估计的作用方向非常一致(一致性为98.2%)。与基因型组织表达项目V7版中报告的48种其他组织类型的峰值相关SNP表达基因对相比,高比例检测到的顺式EQTL(MKs为74.9%,血小板为84.3%)是MKs和血小板特有的。我们确定的EQTL的位置显著丰富,重叠了几个注释轨迹,突出了MKs中具有特定功能的基因组区域,包括MK特异性DNA酶热点、H3K27乙酰化标记、H3K4甲基化标记、增强子和超增强子。这些结果提供了对MKs和血小板的调控特征的见解,在表达的基因、检测到的EQTL以及与血小板生物学相关的已知超增强子中的富集方面存在显著重叠。

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    Johns Hopkins Univ Sidney Kimmel Comprehens Canc Ctr Dept Oncol Sch Med Div Biostat &

    Johns Hopkins Bloomberg Sch Publ Hlth Dept Biostat Baltimore MD USA;

    NHLBI Populat Sci Branch Framingham Heart Study Framingham MA USA;

    Johns Hopkins Univ Sch Med GeneSTAR Res Program 1830 E Monument St Baltimore MD 21205 USA;

    Johns Hopkins Bloomberg Sch Publ Hlth Dept Biostat Baltimore MD USA;

    Johns Hopkins Univ Sch Med GeneSTAR Res Program 1830 E Monument St Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med Div Allergy &

    Clin Immunol Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med Dept Biomed Engn Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med Div Hematol &

    Inst Cell Engn Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med Div Hematol &

    Inst Cell Engn Baltimore MD 21205 USA;

    NHLBI Populat Sci Branch Framingham Heart Study Framingham MA USA;

    Johns Hopkins Bloomberg Sch Publ Hlth Dept Biostat Baltimore MD USA;

    Johns Hopkins Univ Sch Med GeneSTAR Res Program 1830 E Monument St Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med GeneSTAR Res Program 1830 E Monument St Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med GeneSTAR Res Program 1830 E Monument St Baltimore MD 21205 USA;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病;
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