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Published on: July 10, 2019
An ESRG-interacting protein, COXII, is involved in pro-apoptosis of human embryonic stem cells
Jia Shi1, Caiping Ren1, Hui Liu1
1Cancer Research Institute, Collaborative Innovation Center for Cancer Medicine, Key Laboratory for Carcinogenesis of Chinese Ministry of Health, School of Basic Medical Sciences, Central South University, Xiangya Road 110, 410078 Changsha, Hunan, PR China.
Abstract:
Human embryonic stem cells(hESC) posses very promising application perspective in clinical transplant therapies for their characteristics of self-renewal and pluripotency. So efforts focusing on the mechanisms of the two characteristics are extremely important. ESRG, first identified by our group, is a candidate stemness gene of hESC for its much higher expression level in hESC comparing to that in 7-day embryoid bodies(EBs). Here, the proteins interacted with ESRG and its functions in hESC were explored. Yeast two-hybrid (Y2H) screening system was adopted to explore the interacting proteins of ESRG. Then Co-IP was performed to confirm the interactions between candidate proteins and ESRG. At last, the functions of validated interacting protein were explored by RNA interference(RNAi) and Western blot(WB). There were no autonomous activation and toxicity in the Y2H system, which verified its availability. Four candidate proteins, AAMP, DDT, GNB2L1 and COXII, were discovered, and the interaction between ESRG and COXII was ultimately confirmed. The expression of COXII in hESC was suppressed by siRNA, and the inhibited mitochondrial apoptosis was observed in hESC with downregulated COXII expression. Our work first validated the interaction between ESRG and COXII, and demonstrated that COXII serves as a pro-apoptotic protein in hESC. The results implied that ESRG may play an important role in regulating the apoptosis of hESC by interacting with COXII, and thus contribute a lot to the maintenance of hESC characteristics.
Insights
ESRG interacts with COXII, a pro-apoptotic protein, in human embryonic stem cells (hESC). This interaction suggests ESRG regulates hESC apoptosis, maintaining stemness.
Area of Science:
- Stem cell biology
- Molecular mechanisms of pluripotency
Background:
- Human embryonic stem cells (hESC) have significant therapeutic potential due to self-renewal and pluripotency.
- Understanding the mechanisms maintaining these stemness characteristics is crucial.
Purpose of the Study:
- To identify proteins interacting with ESRG, a candidate stemness gene in hESC.
- To elucidate the function of ESRG and its interacting partners in hESC.
Main Methods:
- Yeast two-hybrid (Y2H) screening to identify ESRG interacting proteins.
- Co-immunoprecipitation (Co-IP) to confirm interactions.
- RNA interference (RNAi) and Western blot (WB) to study protein function.
Main Results:
- Four candidate interacting proteins were identified: AAMP, DDT, GNB2L1, and COXII.
- The interaction between ESRG and COXII was confirmed.
- Downregulation of COXII using siRNA inhibited mitochondrial apoptosis in hESC.
Conclusions:
- ESRG interacts with COXII, identifying COXII as a pro-apoptotic protein in hESC.
- ESRG may regulate hESC apoptosis via COXII interaction, contributing to stemness maintenance.
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