Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization

Objective To explore the effect of enolase1 (ENO1) expression on maintaining the self-renewal activity of human embryonic stem cells (hESCs) and reveals its mechanism. Methods RNAs and proteins bound to ENO1 were predicted and analyzed through Gene Oncology (GO) enrichment. Endogenous expression of...

Full description

Bibliographic Details
Main Author: HE Jiayin, YANG Jiabin, CHEN Zhongyang, MA Yanni, YU Jia
Format: Article
Language:zho
Published: Institute of Basic Medical Sciences and Peking Union Medical College Hospital, Chinese Academy of Medical Sciences / Peking Union Medical College. 2023-06-01
Series:Jichu yixue yu linchuang
Subjects:
Online Access:http://journal11.magtechjournal.com/Jwk_jcyxylc/fileup/1001-6325/PDF/1001-6325-2023-43-6-867.pdf
_version_ 1797366384733192192
author HE Jiayin, YANG Jiabin, CHEN Zhongyang, MA Yanni, YU Jia
author_facet HE Jiayin, YANG Jiabin, CHEN Zhongyang, MA Yanni, YU Jia
author_sort HE Jiayin, YANG Jiabin, CHEN Zhongyang, MA Yanni, YU Jia
collection DOAJ
description Objective To explore the effect of enolase1 (ENO1) expression on maintaining the self-renewal activity of human embryonic stem cells (hESCs) and reveals its mechanism. Methods RNAs and proteins bound to ENO1 were predicted and analyzed through Gene Oncology (GO) enrichment. Endogenous expression of ENO1 was inhibited by shRNA in hESCs. The colony forming of hESCs was examined by clonogenesis and alkaline phosphatase (AP) staining experiments. The pluripotency and differentiation marker gene expression in hESCs were detected by qPCR. RNA fluorescence in situ hybridization was used to detect the localization changes of poly (A) + RNAs. Results Inhibition of ENO1 endogenous expression significantly inhibited colony forming of hESCs (P<0.05)and the expression of differentiation marker genes was increased (P<0.001). Localization of poly(A)+ RNA changed from cytoplasm to nucleus (P<0.01) with ENO1 inhibition. Conclusions ENO1 regulates the activity of hESCsself-renew by regulating mRNA localization.
first_indexed 2024-03-08T17:03:24Z
format Article
id doaj.art-ce55bb0af03948d990e75b4c87f309a0
institution Directory Open Access Journal
issn 1001-6325
language zho
last_indexed 2024-03-08T17:03:24Z
publishDate 2023-06-01
publisher Institute of Basic Medical Sciences and Peking Union Medical College Hospital, Chinese Academy of Medical Sciences / Peking Union Medical College.
record_format Article
series Jichu yixue yu linchuang
spelling doaj.art-ce55bb0af03948d990e75b4c87f309a02024-01-04T07:33:02ZzhoInstitute of Basic Medical Sciences and Peking Union Medical College Hospital, Chinese Academy of Medical Sciences / Peking Union Medical College.Jichu yixue yu linchuang1001-63252023-06-0143686787410.16352/j.issn.1001-6325.2023.06.0867Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localizationHE Jiayin, YANG Jiabin, CHEN Zhongyang, MA Yanni, YU Jia0State Key Laboratory of Medical Molecular Biology, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Science CAMS, School of Basic Medicine PUMC, Beijing 100005, ChinaObjective To explore the effect of enolase1 (ENO1) expression on maintaining the self-renewal activity of human embryonic stem cells (hESCs) and reveals its mechanism. Methods RNAs and proteins bound to ENO1 were predicted and analyzed through Gene Oncology (GO) enrichment. Endogenous expression of ENO1 was inhibited by shRNA in hESCs. The colony forming of hESCs was examined by clonogenesis and alkaline phosphatase (AP) staining experiments. The pluripotency and differentiation marker gene expression in hESCs were detected by qPCR. RNA fluorescence in situ hybridization was used to detect the localization changes of poly (A) + RNAs. Results Inhibition of ENO1 endogenous expression significantly inhibited colony forming of hESCs (P<0.05)and the expression of differentiation marker genes was increased (P<0.001). Localization of poly(A)+ RNA changed from cytoplasm to nucleus (P<0.01) with ENO1 inhibition. Conclusions ENO1 regulates the activity of hESCsself-renew by regulating mRNA localization.http://journal11.magtechjournal.com/Jwk_jcyxylc/fileup/1001-6325/PDF/1001-6325-2023-43-6-867.pdfhuman embryonic stem cells|enolase1|rna binding protein|pluripotency|mrna localization
spellingShingle HE Jiayin, YANG Jiabin, CHEN Zhongyang, MA Yanni, YU Jia
Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization
Jichu yixue yu linchuang
human embryonic stem cells|enolase1|rna binding protein|pluripotency|mrna localization
title Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization
title_full Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization
title_fullStr Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization
title_full_unstemmed Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization
title_short Enolase1 regulates the self-renewal ability of human embryonic stem cells by influencing mRNA localization
title_sort enolase1 regulates the self renewal ability of human embryonic stem cells by influencing mrna localization
topic human embryonic stem cells|enolase1|rna binding protein|pluripotency|mrna localization
url http://journal11.magtechjournal.com/Jwk_jcyxylc/fileup/1001-6325/PDF/1001-6325-2023-43-6-867.pdf
work_keys_str_mv AT hejiayinyangjiabinchenzhongyangmayanniyujia enolase1regulatestheselfrenewalabilityofhumanembryonicstemcellsbyinfluencingmrnalocalization