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Dual roles of the Arabidopsis PEAT complex in histone H2A deubiquitination and H4K5 acetylation 被引量:1
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作者 Si-Yao Zheng Bin-Bin Guan +8 位作者 Dan-Yang Yuan Qiang-Qiang Zhao Weiran Ge Lian-Mei Tan Shan-Shan Chen Lin Li She Chen Rui-Ming Xu Xin-Jian He 《Molecular Plant》 SCIE CSCD 2023年第11期1847-1865,共19页
Histone H2A monoubiquitination is associated with transcriptional repression and needs to be removed by deubiquitinases to facilitate gene transcription in eukaryotes.However,the deubiquitinase responsible for genome-... Histone H2A monoubiquitination is associated with transcriptional repression and needs to be removed by deubiquitinases to facilitate gene transcription in eukaryotes.However,the deubiquitinase responsible for genome-wide H2A deubiquitination in plants has yet to be identified.In this study,we found that the previously identified PWWP-EPCR-ARID-TRB(PEAT)complex components interact with both the ubiquitin-specific protease UBP5 and the redundant histone acetyltransferases HAM1 and HAM2(HAM1/2)to form a larger version of PEAT complex in Arabidopsis thaliana.UBP5 functions as an H2A deubiquitinase in a nucleosome substrate-dependent manner in vitro and mediates H2A deubiquitination at the whole-genome level in vivo.HAM1/2 are shared subunits of the PEAT complex and the conserved NuA4 histone acetyltransferase com-plex,and are responsible for histone H4K5 acetylation.Within the PEAT complex,the PWWP components(PWWP1,PWWP2,and PWWP3)directly interact with UBP5 and are necessary for UBP5-mediated H2A deu-biquitination,while the EPCR components(EPCR1 and EPCR2)directly interact with HAM1/2 and are required for HAM1/2-mediated H4K5acetylation.Collectively,our study not onlyidentifies dual roles of thePEAT com-plex in H2A deubiquitination and H4K5 acetylation but also illustrates how these processes collaborate at the whole-genome level to regulate the transcription and development in plants. 展开更多
关键词 HISTONE H2A deubiquitination h4k5 acetylation UBP5 HAM1 NuA4 PEAT
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K_4H_2[SiW_5Mo_6Mn(H_2O)O_(39)]·22H_2O的晶体结构 被引量:2
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作者 戴立益 叶生荣 单永奎 《化学研究与应用》 CAS CSCD 北大核心 2002年第6期653-655,648,共4页
合成了一个锰硅钼钨四元取代含氧簇合物 ,用单晶X射线衍射方法测定了结构 ,该晶体属于四方晶系 ,空间群P4 /mnc ,a =14 119(3) ,c =12 4 96 (4) ,V =2 4 90 9(12 ) 3 ,Mr =2 86 2 70 ,z =2 ,Dc =3.817g·cm-3 ,μ =15 92 2m... 合成了一个锰硅钼钨四元取代含氧簇合物 ,用单晶X射线衍射方法测定了结构 ,该晶体属于四方晶系 ,空间群P4 /mnc ,a =14 119(3) ,c =12 4 96 (4) ,V =2 4 90 9(12 ) 3 ,Mr =2 86 2 70 ,z =2 ,Dc =3.817g·cm-3 ,μ =15 92 2mm-1,R =0 0 4 6 2 ,wR =0 12 32。锰硅钼钨阴离子中 。 展开更多
关键词 K4H2[SiW5Mo6Mn(H2O)O39]·22H2O 晶体结构 多金属含氧簇合物 硅钼钨化合物 X射线衍射
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