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Dual Targeting to Mitochondria and Chloroplasts: Characterization of Thr-tRNA Synthetase Targeting Peptide 被引量:6
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作者 Anna-Karin Berglund Erika Spanning +4 位作者 Henrik Biverstahl Gianluca Maddalo Christian Tellgren-Roth Lena Maler elzbieta glaser 《Molecular Plant》 SCIE CAS CSCD 2009年第6期1298-1309,共12页
There is a group of proteins that are encoded by a single gene, expressed as a single precursor protein and dually targeted to both mitochondria and chloroplasts using an ambiguous targeting peptide. Sequence analysis... There is a group of proteins that are encoded by a single gene, expressed as a single precursor protein and dually targeted to both mitochondria and chloroplasts using an ambiguous targeting peptide. Sequence analysis of 43 dual targeted proteins in comparison with 385 mitochondrial proteins and 567 chloroplast proteins ofArabidopsis thaliana revealed an overall significant increase in phenylalanines, leucines, and serines and a decrease in acidic amino acids and glycine in dual targeting peptides (dTPs). The N-terminal portion of dTPs has significantly more serines than mTPs. The number of arginines is similar to those in mTPs, but almost twice as high as those in cTPs. We have investigated targeting determinants of the dual targeting peptide of Thr-tRNA synthetase (ThrRS-dTP) studying organellar import of N- and C-terminal deletion constructs of ThrRS-dTP coupled to GFR These results show that the 23 amino acid long N-terminal portion of ThrRS-dTP is crucial but not sufficient for the organellar import. The C-terminal deletions revealed that the shortest peptide that was capable of conferring dual targeting was 60 amino acids long. We have purified the ThrRS- dTP(2-60) to homogeneity after its expression as a fusion construct with GST followed by CNBr cleavage and ion exchange chromatography. The purified ThrRS-dTP(2-60) inhibited import of pF1β into mitochondria and of pSSU into chloroplasts at μM concentrations showing that dual and organelle-specific proteins use the same organellar import pathways. Furthermore, the CD spectra of ThrRS-dTP(2-60) indicated that the peptide has the propensity for forming α-helical structure in membrane mimetic environments; however, the membrane charge was not important for the amount of induced helical structure. This is the first study in which a dual targeting peptide has been purified and investigated by biochemical and biophysical means. 展开更多
关键词 Dual targeting MITOCHONDRIA CHLOROPLAST targeting peptide aminoacyl-tRNA synthetase
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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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Import Determinants of Organelle-Specific and Dual Targeting Peptides of Mitochondria and Chloroplasts in Arabidopsis thaliana 被引量:1
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作者 Changrong Ge Erika Spanning +1 位作者 elzbieta glaser Ake Wieslander 《Molecular Plant》 SCIE CAS CSCD 2014年第1期121-136,共16页
Most of the mitochondrial and chloroplastic proteins are synthesized in the cytosol as precursor proteins carrying an N-terminal targeting peptide (TP) directing them specifically to a correct organelle. However, th... Most of the mitochondrial and chloroplastic proteins are synthesized in the cytosol as precursor proteins carrying an N-terminal targeting peptide (TP) directing them specifically to a correct organelle. However, there is a group of proteins that are dually targeted to mitochondria and chloroplasts using an ambiguous N-terminal dual targeting peptide (dTP). Here, we have investigated pattern properties of import determinants of organelle-specific TPs and dTPs combining mathematical multivariate data analysis (MVDA) with in vitro organellar import studies. We have used large datasets of mitochondrial and chloroplastic proteins found in organellar proteomes as well as manually selected data sets of experimentally confirmed organelle-specific TPs and dTPs from Arabidopsis thaliana. Two classes of organelle-specific TPs could be distinguished by MVDA and potential patterns or periodicity in the amino acid sequence contributing to the separation were revealed, dTPs were found to have intermediate sequence features between the organelle-specific TPs. Interestingly, introducing positively charged residues to the dTPs showed clustering towards the mitochondrial TPs in silico and resulted in inhibition of chloroplast, but not mitochondrial import in in vitro organellar import studies. These findings suggest that positive charges in the N-terminal region of TPs may function as an 'avoidance signal' for the chloroplast import. 展开更多
关键词 dual targeting ambiguous targeting signal MITOCHONDRIA CHLOROPLAST protein import partial least square discriminant analysis Arabidopsis thaliana.
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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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