RGD Reference Report - Immune cell profiling of COVID-19 patients in the recovery stage by single-cell sequencing. - Rat Genome Database

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Immune cell profiling of COVID-19 patients in the recovery stage by single-cell sequencing.

Authors: Wen, Wen  Su, Wenru  Tang, Hao  Le, Wenqing  Zhang, Xiaopeng  Zheng, Yingfeng  Liu, Xiuxing  Xie, Lihui  Li, Jianmin  Ye, Jinguo  Dong, Liwei  Cui, Xiuliang  Miao, Yushan  Wang, Depeng  Dong, Jiantao  Xiao, Chuanle  Chen, Wei  Wang, Hongyang 
Citation: Wen W, etal., Cell Discov. 2020 May 4;6:31. doi: 10.1038/s41421-020-0168-9. eCollection 2020.
RGD ID: 32716422
Pubmed: PMID:32377375   (View Abstract at PubMed)
PMCID: PMC7197635   (View Article at PubMed Central)
DOI: DOI:10.1038/s41421-020-0168-9   (Journal Full-text)

COVID-19, caused by SARS-CoV-2, has recently affected over 1,200,000 people and killed more than 60,000. The key immune cell subsets change and their states during the course of COVID-19 remain unclear. We sought to comprehensively characterize the transcriptional changes in peripheral blood mononuclear cells during the recovery stage of COVID-19 by single-cell RNA sequencing technique. It was found that T cells decreased remarkably, whereas monocytes increased in patients in the early recovery stage (ERS) of COVID-19. There was an increased ratio of classical CD14++ monocytes with high inflammatory gene expression as well as a greater abundance of CD14++IL1β+ monocytes in the ERS. CD4+ T cells and CD8+ T cells decreased significantly and expressed high levels of inflammatory genes in the ERS. Among the B cells, the plasma cells increased remarkably, whereas the naïve B cells decreased. Several novel B cell-receptor (BCR) changes were identified, such as IGHV3-23 and IGHV3-7, and isotypes (IGHV3-15, IGHV3-30, and IGKV3-11) previously used for virus vaccine development were confirmed. The strongest pairing frequencies, IGHV3-23-IGHJ4, indicated a monoclonal state associated with SARS-CoV-2 specificity, which had not been reported yet. Furthermore, integrated analysis predicted that IL-1β and M-CSF may be novel candidate target genes for inflammatory storm and that TNFSF13, IL-18, IL-2, and IL-4 may be beneficial for the recovery of COVID-19 patients. Our study provides the first evidence of an inflammatory immune signature in the ERS, suggesting COVID-19 patients are still vulnerable after hospital discharge. Identification of novel BCR signaling may lead to the development of vaccines and antibodies for the treatment of COVID-19.

RGD Manual Disease Annotations    Click to see Annotation Detail View
TermQualifierEvidenceWithReferenceNotesSourceOriginal Reference(s)
COVID-19  HEP 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422mRNA:increased expression:CD14++ monocytes (human)RGD 
COVID-19  HEP 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422mRNA:decreased expression:CD4+ T cells (human)RGD 
COVID-19  HEP 32716422; 32716422mRNA:decreased expression:dendritic cells (human)RGD 
COVID-19  HEP 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422mRNA:decreased expression:antibody secreting B cells (human)RGD 
COVID-19  HEP 32716422; 32716422; 32716422; 32716422; 32716422; 32716422; 32716422mRNA:decreased expression:memory B cells (human)RGD 
COVID-19  HEP 32716422; 32716422; 32716422; 32716422; 32716422; 32716422mRNA:decreased expression:CD8+ T cells (human)RGD 
COVID-19  HEP 32716422; 32716422; 32716422; 32716422mRNA:decreased expression:CD14 monocytes (human)RGD 

Objects Annotated

Genes (Rattus norvegicus)
Pcbp1  (poly(rC) binding protein 1)

Genes (Homo sapiens)
AC007952.4  (novel transcript)
AC015912.3  (novel transcript)
AHNAK  (AHNAK nucleoprotein)
BCL2A1  (BCL2 related protein A1)
BHLHE40  (basic helix-loop-helix family member e40)
CALM2  (calmodulin 2)
CCL3  (C-C motif chemokine ligand 3)
CCL3L1  (C-C motif chemokine ligand 3 like 1)
CCR7  (C-C motif chemokine receptor 7)
CD68  (CD68 molecule)
CD79A  (CD79a molecule)
CXCL8  (C-X-C motif chemokine ligand 8)
CXCR4  (C-X-C motif chemokine receptor 4)
DUSP1  (dual specificity phosphatase 1)
DUSP2  (dual specificity phosphatase 2)
EEF1A1  (eukaryotic translation elongation factor 1 alpha 1)
EEF2  (eukaryotic translation elongation factor 2)
EFCAB2  (EF-hand calcium binding domain 2)
FCMR  (Fc mu receptor)
FGFBP2  (fibroblast growth factor binding protein 2)
FOLR3  (folate receptor gamma)
FOSB  (FosB proto-oncogene, AP-1 transcription factor subunit)
GABARAPL1  (GABA type A receptor associated protein like 1)
GADD45B  (growth arrest and DNA damage inducible beta)
GIMAP4  (GTPase, IMAP family member 4)
GIMAP7  (GTPase, IMAP family member 7)
HLA-A  (major histocompatibility complex, class I, A)
HLA-C  (major histocompatibility complex, class I, C)
HLA-DQB1  (major histocompatibility complex, class II, DQ beta 1)
HLA-DRB1  (major histocompatibility complex, class II, DR beta 1)
IER2  (immediate early response 2)
IER3  (immediate early response 3)
IL1B  (interleukin 1 beta)
IRF4  (interferon regulatory factor 4)
JUN  (Jun proto-oncogene, AP-1 transcription factor subunit)
KLF4  (KLF transcription factor 4)
LILRA4  (leukocyte immunoglobulin like receptor A4)
MCL1  (MCL1 apoptosis regulator, BCL2 family member)
MT1E  (metallothionein 1E)
MT1X  (metallothionein 1X)
MT2A  (metallothionein 2A)
MYC  (MYC proto-oncogene, bHLH transcription factor)
NAMPT  (nicotinamide phosphoribosyltransferase)
NFKBIA  (NFKB inhibitor alpha)
PABPC1  (poly(A) binding protein cytoplasmic 1)
PCBP1  (poly(rC) binding protein 1)
PHACTR1  (phosphatase and actin regulator 1)
PHLDA2  (pleckstrin homology like domain family A member 2)
PIM1  (Pim-1 proto-oncogene, serine/threonine kinase)
PLK3  (polo like kinase 3)
PMAIP1  (phorbol-12-myristate-13-acetate-induced protein 1)
PNRC1  (proline rich nuclear receptor coactivator 1)
PPBP  (pro-platelet basic protein)
PPDPF  (pancreatic progenitor cell differentiation and proliferation factor)
PPIF  (peptidylprolyl isomerase F)
PPP1R15B  (protein phosphatase 1 regulatory subunit 15B)
RHOB  (ras homolog family member B)
S100A11  (S100 calcium binding protein A11)
S1PR1  (sphingosine-1-phosphate receptor 1)
SAT1  (spermidine/spermine N1-acetyltransferase 1)
SELPLG  (selectin P ligand)
SGK1  (serum/glucocorticoid regulated kinase 1)
TAGAP  (T cell activation RhoGTPase activating protein)
TBC1D22A-DT  (TBC1D22A divergent transcript)
TCL1A  (TCL1 family AKT coactivator A)
TMEM107  (transmembrane protein 107)
TNFAIP3  (TNF alpha induced protein 3)
TRA2B  (transformer 2 beta homolog)
TSC22D3  (TSC22 domain family member 3)
TXNDC5  (thioredoxin domain containing 5)
TXNIP  (thioredoxin interacting protein)
UBC  (ubiquitin C)
UBE2J1  (ubiquitin conjugating enzyme E2 J1)
UCP2  (uncoupling protein 2)
VIM  (vimentin)
WDR74  (WD repeat domain 74)
ZFP36  (ZFP36 ring finger protein)
ZFP36L1  (ZFP36 ring finger protein like 1)
ZFP36L2  (ZFP36 ring finger protein like 2)
ZNF683  (zinc finger protein 683)


Additional Information