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    题名: The SLOW GROWTH3 pentatricopeptide repeat protein is required for the splicing of mitochondrial NADH dehydrogenase subunit7 intron 2 in arabidopsis
    作者: 謝明勳;Hsieh, Wei-Yu;Liao, Jo-Chien;Chang, Chiung-Yun;Harrison, Thomas;Boucher, Christina;Hsieh, Ming-Hsiun
    贡献者: 生醫理工學院生命科學系
    关键词: Amino Acid Sequence;Arabidopsis;Arabidopsis - cytology;Arabidopsis - enzymology;Arabidopsis - genetics;Arabidopsis Proteins - chemistry;Arabidopsis Proteins - genetics;Arabidopsis Proteins - metabolism;Base Sequence;Cell Proliferation;DNA, Complementary - genetics;Electron Transport Complex I - metabolism;Genes, Plant;Genetic Complementation Test;Green Fluorescent Proteins - metabolism;growth and development;introns;Introns - genetics;mitochondria;Mitochondria - enzymology;Mitochondrial Proteins - chemistry;Mitochondrial Proteins - genetics;Mitochondrial Proteins - metabolism;Molecular Sequence Data;Mutation - genetics;NAD (coenzyme);NADH dehydrogenase;NADH Dehydrogenase - genetics;NADH Dehydrogenase - metabolism;Phenotype;plant growth;Plant Roots;Protein Transport;Repetitive Sequences, Amino Acid;RNA Editing;RNA Splicing - genetics;RNA Splicing Factors;RNA, Messenger - genetics;RNA, Messenger - metabolism;Seedlings - metabolism
    日期: 2015-01-01
    上传时间: 2026-04-23 11:14:06 (UTC+8)
    出版者: American Society of Plant Biologists;United States: American Society of Plant Biologists
    摘要: 摘要: Mitochondria play an important role in maintaining metabolic and energy homeostasis in the cell. In plants, impairment in mitochondrial functions usually has detrimental effects on growth and development. To study genes that are important for plant growth, we have isolated a collection of slow growth (slo) mutants in Arabidopsis (Arabidopsis thaliana). One of the slo mutants, slo3, has a significant reduction in mitochondrial complex I activity. The slo3 mutant has a four-nucleotide deletion in At3g61360 that encodes a pentatricopeptide repeat (PPR) protein. The SLO3 protein contains nine classic PPR domains belonging to the P subfamily. The small deletion in the slo3 mutant changes the reading frame and creates a premature stop codon in the first PPR domain. We demonstrated that the SLO3-GFP is localized to the mitochondrion. Further analysis of mitochondrial RNA metabolism revealed that the slo3 mutant was defective in splicing of NADH dehydrogenase subunit7 (nad7) intron 2. This specific splicing defect led to a dramatic reduction in complex I activity in the mutant as revealed by blue native gel analysis. Complementation of slo3 by 35S:SLO3 or 35S:SLO3-GFP restored the splicing of nad7 intron 2, the complex I activity, and the growth defects of the mutant. Together, these results indicate that the SLO3 PPR protein is a splicing factor of nad7 intron 2 in Arabidopsis mitochondria.
    其他題名: Plant Physiol
    出版者: United States: American Society of Plant Biologists
    出版日期: 2015-06-01
    出處: Plant physiology (Bethesda), 2015-06, Vol.168 (2), p.490-501
    資源來源: JSTOR Life Sciences Collection
    版權: 2015 American Society of Plant Biologists. All Rights Reserved.
    版權: 2015 American Society of Plant Biologists. All Rights Reserved. 2015
    識別號: ISSN: 0032-0889
    識別號: ISSN: 1532-2548
    識別號: EISSN: 1532-2548
    識別號: DOI: 10.1104/pp.15.00354
    識別號: PMID: 25888618
    显示于类别:[生命科學系] 期刊論文

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