胞质聚腺苷酸化物结合蛋白(Cytoplasmic poly(A)denyla-tion element binding protein,CPEB)家族是一种序列特异性的RNA结合蛋白,最早发现于非洲爪蟾的卵母细胞中,调控非洲爪蟾卵母细胞发育过程中母源性mRNA的多聚腺苷酸化和翻...胞质聚腺苷酸化物结合蛋白(Cytoplasmic poly(A)denyla-tion element binding protein,CPEB)家族是一种序列特异性的RNA结合蛋白,最早发现于非洲爪蟾的卵母细胞中,调控非洲爪蟾卵母细胞发育过程中母源性mRNA的多聚腺苷酸化和翻译。随后的研究发现,CPEB蛋白与细胞周期、突触形成、学习和记忆等关系密切。展开更多
The tumor suppressor p53 transactivates the expression of multiple genes to exert its multifaceted functions and ultimately maintains genome stability.Thus,cancer cells develop various mechanisms to diminish p53 expre...The tumor suppressor p53 transactivates the expression of multiple genes to exert its multifaceted functions and ultimately maintains genome stability.Thus,cancer cells develop various mechanisms to diminish p53 expression and bypass the cell cycle checkpoint.In this study,we identified the gene encoding RNAbinding protein cytoplasmic polyadenylation element-binding protein 2(CPEB2)as a p53 target.In turn,CPEB2 decreases p53 messenger RNA stability and translation to fine-tune p53 level.Specifically,we showed that CPEB2 binds the cytoplasmic polyadenylation elements in the p5330-untranslated region,and the RNA recognition motif and zinc finger(ZF)domains of CPEB2 are required for this binding.Furthermore,we found that CPEB2 was upregulated in renal cancer tissues and promotes the renal cancer cell proliferation and migration.The oncogenic effect of CPEB2 is partially dependent on negative feedback regulation of p53.Overall,we identify a novel regulatory feedback loop between p53 and CPEB2 and demonstrate that CPEB2 promotes tumor progression by inactivating p53,suggesting that CPEB2 is a potential therapeutic target in human renal cancer.展开更多
BACKGROUND Schizophrenia afflicts 1%of the world population.Clinical studies suggest that schizophrenia patients may have an imbalance of mitochondrial energy metabolism via inhibition of mitochondrial complex I activ...BACKGROUND Schizophrenia afflicts 1%of the world population.Clinical studies suggest that schizophrenia patients may have an imbalance of mitochondrial energy metabolism via inhibition of mitochondrial complex I activity.Moreover,recent studies have shown that ERVWE1 is also a risk factor for schizophrenia.Nevertheless,there is no available literature concerning the relationship between complex I deficits and ERVWE1 in schizophrenia.Identifying risk factors and blood-based biomarkers for schizophrenia may provide new guidelines for early interventions and prevention programs.AIM To address novel potential risk factors and the underlying mechanisms of mitochondrial complex I deficiency caused by ERVWE1 in schizophrenia.METHODS Quantitative polymerase chain reaction(qPCR)and enzyme-linked immunosorbent assay were used to detect differentially expressed risk factors in blood samples.Clinical statistical analyses were performed by median analyses and Mann-Whitney U analyses.Spearman’s rank correlation was applied to examine the correlation between different risk factors in blood samples.qPCR,western blot analysis,and luciferase assay were performed to confirm the relationship among ERVWE1,cytoplasmic polyadenylation element-binding protein 1(CPEB1),NADH dehydrogenase ubiquinone flavoprotein 2(NDUFV2),and NDUFV2 pseudogene(NDUFV2P1).The complex I enzyme activity microplate assay was carried out to evaluate the complex I activity induced by ERVWE1.RESULTS Herein,we reported decreasing levels of CPEB1 and NDUFV2 in schizophrenia patients.Further studies showed that ERVWE1 was negatively correlated with CPEB1 and NDUFV2 in schizophrenia.Moreover,NDUFV2P1 was increased and demonstrated a significant positive correlation with ERVWE1 and a negative correlation with NDUFV2 in schizophrenia.In vitro experiments disclosed that ERVWE1 suppressed NDUFV2 expression and promoter activity by increasing NDUFV2P1 level.The luciferase assay revealed that ERVWE1 could enhance the promoter activity of NDUFV2P1.Additionally,ERVWE1 downregulated the expression of CPEB1 by suppressing the promoter activity,and the 400 base pair sequence at the 3′terminus of the promoter was the minimum sequence required.Advanced studies showed that CPEB1 participated in regulating the NDUFV2P1/NDUFV2 axis mediated by ERVWE1.Finally,we found that ERVWE1 inhibited complex I activity in SH-SY5Y cells via the CPEB1/NDUFV2P1/NDUFV2 signaling pathway.CONCLUSION In conclusion,CPEB1 and NDUFV2 might be novel potential blood-based biomarkers and pathogenic factors in schizophrenia.Our findings also reveal a novel mechanism of ERVWE1 in the etiology of schizophrenia.展开更多
文摘胞质聚腺苷酸化物结合蛋白(Cytoplasmic poly(A)denyla-tion element binding protein,CPEB)家族是一种序列特异性的RNA结合蛋白,最早发现于非洲爪蟾的卵母细胞中,调控非洲爪蟾卵母细胞发育过程中母源性mRNA的多聚腺苷酸化和翻译。随后的研究发现,CPEB蛋白与细胞周期、突触形成、学习和记忆等关系密切。
基金supported by grants from the National Natural Science Foundation of China(81972377,82025027,31301131,81972723)the Science and Technology Project of Xuzhou(KC19064)+1 种基金the Social Development Project of Jiangsu Province(BE2019644)the Natural Science Foundation of the Jiangsu Higher Education Institutions(18KJA320012)。
文摘The tumor suppressor p53 transactivates the expression of multiple genes to exert its multifaceted functions and ultimately maintains genome stability.Thus,cancer cells develop various mechanisms to diminish p53 expression and bypass the cell cycle checkpoint.In this study,we identified the gene encoding RNAbinding protein cytoplasmic polyadenylation element-binding protein 2(CPEB2)as a p53 target.In turn,CPEB2 decreases p53 messenger RNA stability and translation to fine-tune p53 level.Specifically,we showed that CPEB2 binds the cytoplasmic polyadenylation elements in the p5330-untranslated region,and the RNA recognition motif and zinc finger(ZF)domains of CPEB2 are required for this binding.Furthermore,we found that CPEB2 was upregulated in renal cancer tissues and promotes the renal cancer cell proliferation and migration.The oncogenic effect of CPEB2 is partially dependent on negative feedback regulation of p53.Overall,we identify a novel regulatory feedback loop between p53 and CPEB2 and demonstrate that CPEB2 promotes tumor progression by inactivating p53,suggesting that CPEB2 is a potential therapeutic target in human renal cancer.
基金Supported by the National Natural Science Foundation of China,No.81971943,No.81772196,No.31470264,No.81271820,No.30870789,and No.30300117the Stanley Foundation of United States,No.06R-1366(for Zhu F)the Medical Science Advancement Program(Basic Medical Sciences)of Wuhan University,No.TFJC 2018002.
文摘BACKGROUND Schizophrenia afflicts 1%of the world population.Clinical studies suggest that schizophrenia patients may have an imbalance of mitochondrial energy metabolism via inhibition of mitochondrial complex I activity.Moreover,recent studies have shown that ERVWE1 is also a risk factor for schizophrenia.Nevertheless,there is no available literature concerning the relationship between complex I deficits and ERVWE1 in schizophrenia.Identifying risk factors and blood-based biomarkers for schizophrenia may provide new guidelines for early interventions and prevention programs.AIM To address novel potential risk factors and the underlying mechanisms of mitochondrial complex I deficiency caused by ERVWE1 in schizophrenia.METHODS Quantitative polymerase chain reaction(qPCR)and enzyme-linked immunosorbent assay were used to detect differentially expressed risk factors in blood samples.Clinical statistical analyses were performed by median analyses and Mann-Whitney U analyses.Spearman’s rank correlation was applied to examine the correlation between different risk factors in blood samples.qPCR,western blot analysis,and luciferase assay were performed to confirm the relationship among ERVWE1,cytoplasmic polyadenylation element-binding protein 1(CPEB1),NADH dehydrogenase ubiquinone flavoprotein 2(NDUFV2),and NDUFV2 pseudogene(NDUFV2P1).The complex I enzyme activity microplate assay was carried out to evaluate the complex I activity induced by ERVWE1.RESULTS Herein,we reported decreasing levels of CPEB1 and NDUFV2 in schizophrenia patients.Further studies showed that ERVWE1 was negatively correlated with CPEB1 and NDUFV2 in schizophrenia.Moreover,NDUFV2P1 was increased and demonstrated a significant positive correlation with ERVWE1 and a negative correlation with NDUFV2 in schizophrenia.In vitro experiments disclosed that ERVWE1 suppressed NDUFV2 expression and promoter activity by increasing NDUFV2P1 level.The luciferase assay revealed that ERVWE1 could enhance the promoter activity of NDUFV2P1.Additionally,ERVWE1 downregulated the expression of CPEB1 by suppressing the promoter activity,and the 400 base pair sequence at the 3′terminus of the promoter was the minimum sequence required.Advanced studies showed that CPEB1 participated in regulating the NDUFV2P1/NDUFV2 axis mediated by ERVWE1.Finally,we found that ERVWE1 inhibited complex I activity in SH-SY5Y cells via the CPEB1/NDUFV2P1/NDUFV2 signaling pathway.CONCLUSION In conclusion,CPEB1 and NDUFV2 might be novel potential blood-based biomarkers and pathogenic factors in schizophrenia.Our findings also reveal a novel mechanism of ERVWE1 in the etiology of schizophrenia.