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DNA连接酶1缺陷型植物表现出严重的生长缺陷,并且DNA单链和双链断裂的修复均延迟。

DNA ligase 1 deficient plants display severe growth defects and delayed repair of both DNA single and double strand breaks.

作者信息

Waterworth Wanda M, Kozak Jaroslav, Provost Claire M, Bray Clifford M, Angelis Karel J, West Christopher E

机构信息

CPS, Faculty of Biological Sciences, University of Leeds, Leeds, UK.

出版信息

BMC Plant Biol. 2009 Jun 26;9:79. doi: 10.1186/1471-2229-9-79.

Abstract

BACKGROUND

DNA ligase enzymes catalyse the joining of adjacent polynucleotides and as such play important roles in DNA replication and repair pathways. Eukaryotes possess multiple DNA ligases with distinct roles in DNA metabolism, with clear differences in the functions of DNA ligase orthologues between animals, yeast and plants. DNA ligase 1, present in all eukaryotes, plays critical roles in both DNA repair and replication and is indispensable for cell viability.

RESULTS

Knockout mutants of atlig1 are lethal. Therefore, RNAi lines with reduced levels of AtLIG1 were generated to allow the roles and importance of Arabidopsis DNA ligase 1 in DNA metabolism to be elucidated. Viable plants were fertile but displayed a severely stunted and stressed growth phenotype. Cell size was reduced in the silenced lines, whilst flow cytometry analysis revealed an increase of cells in S-phase in atlig1-RNAi lines relative to wild type plants. Comet assay analysis of isolated nuclei showed atlig1-RNAi lines displayed slower repair of single strand breaks (SSBs) and also double strand breaks (DSBs), implicating AtLIG1 in repair of both these lesions.

CONCLUSION

Reduced levels of Arabidopsis DNA ligase 1 in the silenced lines are sufficient to support plant development but result in retarded growth and reduced cell size, which may reflect roles for AtLIG1 in both replication and repair. The finding that DNA ligase 1 plays an important role in DSB repair in addition to its known function in SSB repair, demonstrates the existence of a previously uncharacterised novel pathway, independent of the conserved NHEJ. These results indicate that DNA ligase 1 functions in both DNA replication and in repair of both ss and dsDNA strand breaks in higher plants.

摘要

背景

DNA连接酶催化相邻多核苷酸的连接,因此在DNA复制和修复途径中发挥重要作用。真核生物拥有多种在DNA代谢中具有不同作用的DNA连接酶,动物、酵母和植物之间的DNA连接酶直系同源物的功能存在明显差异。DNA连接酶1存在于所有真核生物中,在DNA修复和复制中都起着关键作用,对细胞活力不可或缺。

结果

atlig1的敲除突变体是致死的。因此,构建了AtLIG1水平降低的RNA干扰系,以阐明拟南芥DNA连接酶1在DNA代谢中的作用和重要性。存活的植株可育,但表现出严重发育不良和生长受胁迫的表型。沉默系中的细胞大小减小,而流式细胞术分析显示,与野生型植株相比,atlig1-RNA干扰系中S期的细胞增多。对分离细胞核的彗星试验分析表明,atlig1-RNA干扰系对单链断裂(SSB)和双链断裂(DSB)的修复都较慢,这表明AtLIG1参与了这两种损伤的修复。

结论

沉默系中拟南芥DNA连接酶1水平的降低足以支持植物发育,但导致生长迟缓以及细胞大小减小,这可能反映了AtLIG1在复制和修复中的作用。DNA连接酶1除了在已知的SSB修复中发挥作用外,在DSB修复中也起重要作用,这一发现证明了存在一条以前未被表征的独立于保守的非同源末端连接(NHEJ)的新途径。这些结果表明,DNA连接酶1在高等植物的DNA复制以及单链和双链DNA断裂的修复中均发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06b1/2708163/793d9a524124/1471-2229-9-79-1.jpg

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