首站-论文投稿智能助手
典型文献
Arabidopsis mitochondrial single-stranded DNA-binding proteins SSB1 and SSB2 are essential regulators of mtDNA replication and homologous recombination
文献摘要:
Faithful DNA replication is one of the most es-sential processes in almost all living organisms. However, the proteins responsible for organellar DNA replication are still largely unknown in plants. Here, we show that the two mitochondrion-targeted single-stranded DNA-binding (SSB) pro-teins SSB1 and SSB2 directly interact with each other and act as key factors for mitochondrial DNA (mtDNA) maintenance, as their single or double loss-of-function mutants exhibit severe germina-tion delay and growth retardation. The mtDNA levels in mutants lacking SSB1 and/or SSB2 function were two- to four-fold higher than in the wild-type (WT), revealing a negative role for SSB1/2 in regulating mtDNA replication. Genetic anal-ysis indicated that SSB1 functions upstream of mitochondrial DNA POLYMERASE IA (POLIA) or POLIB in mtDNA replication, as mutation in either gene restored the high mtDNA copy number of the ssb1-1 mutant back to WT levels. In addition, SSB1 and SSB2 also participate in mitochondrial genome maintenance by influencing mtDNA ho-mologous recombination (HR). Additional genetic analysis suggested that SSB1 functions upstream of ORGANELLAR SINGLE-STRANDED DNA-BINDING PROTEIN1 (OSB1) during mtDNA repli-cation, while SSB1 may act downstream of OSB1 and MUTS HOMOLOG1 for mtDNA HR. Overall, our results yield new insights into the roles of the plant mitochondrion-targeted SSB proteins and OSB1 in maintaining mtDNA stability via affecting DNA replication and DNA HR.
文献关键词:
作者姓名:
Jie Qian;Min Zheng;Lingyu Wang;Yu Song;Jiawen Yan;Yi-Feng Hsu
作者机构:
School of Life Sciences,Southwest University,Chongqing 400715,China
引用格式:
[1]Jie Qian;Min Zheng;Lingyu Wang;Yu Song;Jiawen Yan;Yi-Feng Hsu-.Arabidopsis mitochondrial single-stranded DNA-binding proteins SSB1 and SSB2 are essential regulators of mtDNA replication and homologous recombination)[J].植物学报(英文版),2022(10):1952-1965
A类:
SSB1,SSB2,Faithful,organellar,POLYMERASE,POLIA,POLIB,ssb1,mologous,ORGANELLAR,SINGLE,STRANDED,PROTEIN1,OSB1,MUTS,HOMOLOG1
B类:
Arabidopsis,mitochondrial,single,stranded,binding,proteins,are,essential,regulators,mtDNA,replication,homologous,recombination,one,processes,almost,living,organisms,However,responsible,still,largely,unknown,plants,Here,show,that,two,mitochondrion,targeted,directly,interact,each,other,as,key,factors,maintenance,their,double,loss,mutants,exhibit,severe,germina,delay,growth,retardation,levels,lacking,were,four,fold,higher,than,wild,type,WT,revealing,negative,regulating,Genetic,indicated,functions,upstream,mutation,either,restored,copy,number,back,In,addition,also,participate,genome,by,influencing,Additional,genetic,analysis,suggested,BINDING,during,while,may,downstream,Overall,results,yield,new,insights,into,roles,maintaining,stability,via,affecting
AB值:
0.383384
相似文献
Dynamic nucleosome organization after fertilization reveals regulatory factors for mouse zygotic genome activation
Chenfei Wang;Chuan Chen;Xiaoyu Liu;Chong Li;Qiu Wu;Xiaolan Chen;Lingyue Yang;Xiaochen Kou;Yanhong Zhao;Hong Wang;Yawei Gao;Yong Zhang;Shaorong Gao-Institute for Regenerative Medicine,Shanghai East Hospital,Shanghai Key Laboratory of Signaling and Disease Research,Frontier Science Center for Stem Cell Research,School of Life Sciences and Technology,Tongji University,Shanghai,China;Department of Urology,Tongji Hospital,Frontier Science Center for Stem Cells,School of Life Science and Technology,Tongji University,Shanghai,China;Women's Hospital,Zhejiang University School of Medicine,Hangzhou,Zhejiang,China;Shanghai Institute of Stem Cell Research and Clinical Translation,Shanghai,China;Clinical and Translation Research Center of Shanghai First Maternity & Infant Hospital,Shanghai Key Laboratory of Signaling and Disease Research,Frontier Science Center for Stem Cell Research,School of Life Sciences and Technology,Tongji University,Shanghai,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。