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人类红细胞的单细胞RNA测序分析

Single Cell RNA-Seq Analysis of Human Red Cells.

作者信息

Jain Vaibhav, Yang Wen-Hsuan, Wu Jianli, Roback John D, Gregory Simon G, Chi Jen-Tsan

机构信息

Department of Neurology, Durham, NC, United States.

Duke Molecular Physiology Institute, Durham, NC, United States.

出版信息

Front Physiol. 2022 Apr 20;13:828700. doi: 10.3389/fphys.2022.828700. eCollection 2022.

Abstract

Human red blood cells (RBCs), or erythrocytes, are the most abundant blood cells responsible for gas exchange. RBC diseases affect hundreds of millions of people and impose enormous financial and personal burdens. One well-recognized, but poorly understood feature of RBC populations within the same individual are their phenotypic heterogeneity. The granular characterization of phenotypic RBC variation in normative and disease states may allow us to identify the genetic determinants of red cell diseases and reveal novel therapeutic approaches for their treatment. Previously, we discovered diverse RNA transcripts in RBCs that has allowed us to dissect the phenotypic heterogeneity and malaria resistance of sickle red cells. However, these analyses failed to capture the heterogeneity found in RBC sub-populations. To overcome this limitation, we have performed single cell RNA-Seq to analyze the transcriptional heterogeneity of RBCs from three adult healthy donors which have been stored in the blood bank conditions and assayed at day 1 and day 15. The expression pattern clearly separated RBCs into seven distinct clusters that include one RBC cluster that expresses HBG2 and a small population of RBCs that express fetal hemoglobin (HbF) that we annotated as F cells. Almost all HBG2-expessing cells also express HBB, suggesting bi-allelic expression in single RBC from the HBG2/HBB loci, and we annotated another cluster as reticulocytes based on canonical gene expression. Additional RBC clusters were also annotated based on the enriched expression of , and , previously shown to be involved in erythropoiesis. Finally, we found the storage of RBC was associated with an increase in the ACVR2B and F-cell clusters. Collectively, these data indicate the power of single RBC RNA-Seq to capture and discover known and unexpected heterogeneity of RBC population.

摘要

人类红细胞(RBCs),即红细胞,是负责气体交换的最丰富的血细胞。红细胞疾病影响着数亿人,并带来了巨大的经济和个人负担。同一人体内红细胞群体的一个广为人知但了解甚少的特征是它们的表型异质性。对正常和疾病状态下表型红细胞变异的颗粒特征进行表征,可能使我们能够识别红细胞疾病的遗传决定因素,并揭示新的治疗方法。此前,我们在红细胞中发现了多种RNA转录本,这使我们能够剖析镰状红细胞的表型异质性和疟疾抗性。然而,这些分析未能捕捉到红细胞亚群中发现的异质性。为了克服这一局限性,我们进行了单细胞RNA测序,以分析来自三名成年健康供体的红细胞的转录异质性,这些红细胞已在血库条件下储存,并在第1天和第15天进行检测。表达模式清楚地将红细胞分为七个不同的簇,其中包括一个表达HBG2的红细胞簇和一小群表达胎儿血红蛋白(HbF)的红细胞,我们将其注释为F细胞。几乎所有表达HBG2的细胞也表达HBB,这表明来自HBG2/HBB位点的单个红细胞中存在双等位基因表达,并且我们根据典型基因表达将另一个簇注释为网织红细胞。还根据先前显示参与红细胞生成的、和的富集表达对其他红细胞簇进行了注释。最后,我们发现红细胞的储存与ACVR2B和F细胞簇的增加有关。总的来说,这些数据表明单细胞红细胞RNA测序能够捕捉和发现红细胞群体中已知和意外的异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6459/9065680/73c11caee373/fphys-13-828700-g001.jpg

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