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JMJD3 in the regulation of human diseases
Xiangxian Zhang, Li Liu, Xia Yuan, Yuquan Wei, Xiawei Wei
Protein Cell. 2019, 10 (12): 864-882.
https://doi.org/10.1007/s13238-019-0653-9
In recent years, many studies have shown that histone methylation plays an important role in maintaining the active and silent state of gene expression in human diseases. The Jumonji domain-containing protein D3 (JMJD3), specifically demethylate di- and trimethyllysine 27 on histone H3 (H3K27me2/3), has been widely studied in immune diseases, infectious diseases, cancer, developmental diseases, and aging related diseases. We will focus on the recent advances of JMJD3 function in human diseases, and looks ahead to the future of JMJD3 gene research in this review.
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Core transcriptional signatures of phase change in the migratory locust
Pengcheng Yang, Li Hou, Xianhui Wang, Le Kang
Protein Cell. 2019, 10 (12): 883-901.
https://doi.org/10.1007/s13238-019-0648-6
Phenotypic plasticity plays fundamental roles in successful adaptation of animals in response to environmental variations. Here, to reveal the transcriptome reprogramming in locust phase change, a typical phenotypic plasticity, we conducted a comprehensive analysis of multiple phase-related transcriptomic datasets of the migratory locust. We defined PhaseCore genes according to their contribution to phase differentiation by the adjustment for confounding principal components analysis algorithm (AC-PCA). Compared with other genes, PhaseCore genes predicted phase status with over 87.5% accuracy and displayed more unique gene attributes including the faster evolution rate, higher CpG content and higher specific expression level. Then, we identified 20 transcription factors (TFs) named PhaseCoreTF genes that are associated with the regulation of PhaseCore genes. Finally, we experimentally verified the regulatory roles of three representative TFs (Hr4, Hr46, and grh) in phase change by RNAi. Our findings revealed that core transcriptional signatures are involved in the global regulation of locust phase changes, suggesting a potential common mechanism underlying phenotypic plasticity in insects. The expression and network data are accessible in an online resource called LocustMine (http://www.locustmine.org:8080/locustmine).
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Continuous culture of urine-derived bladder cancer cells for precision medicine
Shuai Jiang, Jiaqi Wang, Chen Yang, Renke Tan, Jun Hou, Yuan Shi, Huihui Zhang, Shiyu Ma, Jianan Wang, Mengmeng Zhang, George Philips, Zengxia Li, Jian Ma, Wanjun Yu, Guohua Wang, Yuanming Wu, Richard Schlegel, Huina Wang, Shanbo Cao, Jianming Guo, Xuefeng Liu, Yongjun Dang
Protein Cell. 2019, 10 (12): 902-907.
https://doi.org/10.1007/s13238-019-0649-5
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9 articles
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