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Inactivation of Mitochondrial Complex Ⅰ Induces the Expression of a Twin Cysteine Protein that Targets and Affects Cytosolic, Chloroplastidic and Mitochondrial Function 被引量:5
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作者 Yan wang wenhui Lyu +14 位作者 Oliver Berkowitz Jordan D. Radomiljac Simon R. Law monika w. murcha Chris Carrie Pedro F. Teixeira Beata Kmiec Owen Duncan Olivier Van Aken Reena Narsai Elzbieta Glaser Shaobai Huang Ute Roessner A. Harvey Millar James whelan 《Molecular Plant》 SCIE CAS CSCD 2016年第5期696-710,共15页
At12Cys-1 (At5g64400) and At12Cys-2 (At5g09570) are two closely related isogenes that encode small, twin cysteine proteins, typically located in mitochondria. At12Cys-2 transcript is induced in a variety of mutant... At12Cys-1 (At5g64400) and At12Cys-2 (At5g09570) are two closely related isogenes that encode small, twin cysteine proteins, typically located in mitochondria. At12Cys-2 transcript is induced in a variety of mutants with disrupted mitochondrial proteins, but an increase in At12Cys protein is only detected in mutants with reduced mitochondrial complex I abundance. Induction of At12Cys protein in mutants that lack mitochondrial complex I is accompanied by At12Cys protein located in mitochondria, chloroplasts, and the cytosoh Biochemical analyses revealed that even single gene deletions, i.e., At12cys-1 orAtl2cys-2, have an effect on mitochondrial and chloroplast functions. However, only double mutants, i.e., At12cys-1:At12cys.2, affect the abundance of protein and mRNA transcripts encoding translation elongation factors as well as rRNA abundance. Blue native PAGE showed that At12Cys co-migrated with mitochondrial supercomplex I + lU. Likewise, deletion of both At12cys-1 and At12cys-2 genes, but not single gene deletions, results in enhanced tolerance to drought and light stress and increased anti-oxidant capacity. The induction and multiple localization of At12Cys upon a reduction in complex I abundance provides a mechanism to specifically signal mitochondrial dysfunction to the cytosol and then beyond to other organelles in the cell. 展开更多
关键词 mitochondria complex I retrograde signaling CHLOROPLAST CYTOSOL
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A Common Peptidolytic Mechanism for Targeting Peptide Degradation in Mitochondria and Chloroplasts
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作者 Beata Kmiec Rui M.M. Branca +3 位作者 monika w. murcha Janne Lehtio Elzbieta Glaser Pedro F. Teixeira 《Molecular Plant》 SCIE CAS CSCD 2018年第2期342-345,共4页
Dear Editor Mitochondria are multifunctional organelles of eukaryotic cells. Biogenesis and functionality of mitochondria require the import of more than 90% of its resident proteins after synthesis by cytosolic ribos... Dear Editor Mitochondria are multifunctional organelles of eukaryotic cells. Biogenesis and functionality of mitochondria require the import of more than 90% of its resident proteins after synthesis by cytosolic ribosomes. 展开更多
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