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Silencing of Jumonji domain-containing 1C inhibits the osteogenic differentiation of bone marrow mesenchymal stem cells via nuclear factor-κB signaling
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作者 Jing-Yi Li Ting-Ting Wang +2 位作者 Li Ma Yu Zhang Di Zhu 《World Journal of Stem Cells》 SCIE 2024年第2期151-162,共12页
BACKGROUND Osteoporosis is a common metabolic bone disorder induced by an imbalance between osteoclastic activity and osteogenic activity.During osteoporosis,bone mesenchymal stem cells(BMSCs)exhibit an increased abil... BACKGROUND Osteoporosis is a common metabolic bone disorder induced by an imbalance between osteoclastic activity and osteogenic activity.During osteoporosis,bone mesenchymal stem cells(BMSCs)exhibit an increased ability to differentiate into adipocytes and a decreased ability to differentiate into osteoblasts,resulting in bone loss.Jumonji domain-containing 1C(JMJD1C)has been demonstrated to suppress osteoclastogenesis.AIM To examine the effect of JMJD1C on the osteogenesis of BMSCs and the potential underlying mechanism.METHODS BMSCs were isolated from mouse bone marrow tissues.Oil Red O staining,Alizarin red staining,alkaline phosphatase staining and the expression of adipo-genic and osteogenic-associated genes were assessed to determine the differen-tiation of BMSCs.Bone marrow-derived macrophages(BMMs)were incubated with receptor activator of nuclear factor-kappaΒligand to induce osteoclast differentiation,and osteoclast differen-tiation was confirmed by tartrate-resistant acid phosphatase staining.Other related genes were measured via reverse transcription coupled to the quantitative polymerase chain reaction and western blotting.Enzyme-linked immunosorbent assays were used to measure the levels of inflammatory cytokines,including tumor necrosis factor alpha,interleukin-6 and interleukin-1 beta.RESULTS The osteogenic and adipogenic differentiation potential of BMSCs isolated from mouse bone marrow samples was evaluated.JMJD1C mRNA and protein expression was upregulated in BMSCs after osteoblast induction,while p-nuclear factor-κB(NF-κB)and inflammatory cytokines were not significantly altered.Knockdown of JMJD1C repressed osteogenic differentiation and enhanced NF-κB activation and inflammatory cytokine release in BMSCs.Moreover,JMJD1C expression decreased during BMM osteoclast differentiation.CONCLUSION The JMJD1C/NF-κB signaling pathway is potentially involved in BMSC osteogenic differentiation and may play vital roles in the pathogenesis of osteoporosis. 展开更多
关键词 OSTEOPOROSIS Mesenchymal stem cells OSTEOGENESIS jumonji domain-containing 1c Nuclear factor-κB
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高低级别胶质瘤中包含Jumonji C结构域蛋白6表达的差异及其与预后的关系
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作者 周德祥 郑建涛 +3 位作者 吕志异 曹恩栋 刘健强 张绪超 《中华实验外科杂志》 CAS 北大核心 2022年第12期2464-2466,共3页
目的:探讨包含Jumonji C结构域蛋白6(JMJD6)在高低级别胶质瘤中表达的差异及其与胶质瘤预后的关系。方法:从2018年1月至2020年12月广东省人民医院神经外科收治的胶质瘤患者中随机抽取42例肿瘤标本,分为低级别组和高级别组,其中,低级别1... 目的:探讨包含Jumonji C结构域蛋白6(JMJD6)在高低级别胶质瘤中表达的差异及其与胶质瘤预后的关系。方法:从2018年1月至2020年12月广东省人民医院神经外科收治的胶质瘤患者中随机抽取42例肿瘤标本,分为低级别组和高级别组,其中,低级别18例、高级别24例;用免疫组织化学法检测两组JMJD6的表达并采用t检验和χ^(2)检验比较两组JMJD6表达水平的差异;随访患者术后肿瘤复发及患者死亡,按JMJD6表达水平(去除阴性病例),分为低JMJD6表达组和高JMJD6表达组,随访40个月,采用χ^(2)检验、Kaplan-Meier曲线和Pearson相关分析JMJD6表达水平与预后的关系。结果:低级别组JMJD6的表达呈阴性7例、低表达9例、高表达2例;高级别组阴性0例、低表达9例、高表达15例;低级别胶质瘤JMJD6表达水平(2.06±2.88)与高级别胶质瘤JMJD6表达水平(7.88±1.90)比较,差异有统计学意义(t=-7.449,P<0.01)。低JMJD6表达组18例,高JMJD6表达组17例;低JMJD6表达组复发7例,复发率38.89%,死亡病6例,死亡率33.33%;高JMJD6表达组复发14例,复发率82.35%,死亡13例,死亡率76.47%;两组复发率及死亡率比较,差异均有统计学意义(χ^(2)=6.882,P<0.01和χ^(2)=6.556,P<0.05);JMJD6的表达水平与复发率及死亡率呈正相关(r=0.626、0.659,P<0.001);与低JMJD6表达组比较,高JMJD6表达组的患者生存时间更短(χ^(2)=7.631,P<0.01)。结论:胶质瘤级别越高,JMJD6表达水平也越高,JMJD6表达水平越高,肿瘤越易复发,患者预后越差,JMJD6有助于预测肿瘤复发及预后。 展开更多
关键词 胶质瘤 病理级别 包含jumonji c结构域蛋白6 预后
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Comparative Analysis of JmjC Domain-containing Proteins Reveals the Potential Histone Demethylases in Arabidopsis and Rice 被引量:26
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作者 Falong Lu Guanglin Li +3 位作者 Xia Cui Chunyan Liu Xiu-Jie Wang Xiaofeng Cao 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2008年第7期886-896,共11页
Histone methylation homeostasis is achieved by controlling the balance between methylation and demethylation to maintain chromatin function and developmental regulation. In animals, a conserved Jumonji C (JmjC) doma... Histone methylation homeostasis is achieved by controlling the balance between methylation and demethylation to maintain chromatin function and developmental regulation. In animals, a conserved Jumonji C (JmjC) domain was found in a large group of histone demethylases. However, it is still unclear whether plants also contain the JmjC domain- containing active histone demethylases. Here we performed genome-wide screen and phylogenetic analysis of JmjC domain-containing proteins in the dicot plant, Arabidopsis, and monocot plant rice, and found 21 and 20 JmjC domain-containing, respectively. We also examined the expression of JmjC domain-containing proteins and compared them to human JmjC counterparts for potential enzymatic activity. The spatial expression patterns of the Arabidopsis JmjC domain-containing genes revealed that they are all actively transcribed genes. These active plant JmjC domain-containing genes could possibly function in epigenetic regulation to antagonize the activity of the large number of putative SET domain-containing histone methyltransferase activity to dynamically regulate histone methylation homeostasis. 展开更多
关键词 At JMJ DEMETHYLASE DEMETHYLATION HISTONE jumonji c METHYLATION Os JMJ.
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