| Literature DB >> 23360988 |
Fabian Fischer1, Andrea Weil, Andrea Hamann, Heinz D Osiewacz.
Abstract
Mitochondrial maintenance crucially depends on the quality control of proteins by various chaperones, proteases and repair enzymes. While most of the involved components have been studied in some detail, little is known on the biological role of the CLPXP protease complex located in the mitochondrial matrix. Here we show that deletion of PaClpP, encoding the CLP protease proteolytic subunit CLPP, leads to an unexpected healthy phenotype and increased lifespan of the fungal ageing model organism Podospora anserina. This phenotype can be reverted by expression of human ClpP in the fungal deletion background, demonstrating functional conservation of human and fungal CLPP. Our results show that the biological role of eukaryotic CLP proteases can be studied in an experimentally accessible model organism.Entities:
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Year: 2013 PMID: 23360988 PMCID: PMC3562451 DOI: 10.1038/ncomms2397
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Figure 1Deletion of in extends the healthy lifespan at 27 °C.
(a) The CLPP homologues from P. anserina, Homo sapiens, C. elegans and E. coli display a conserved distribution of the canonical catalytic residues Ser, His and Asp. Additionally, all eukaryotic CLPPs contain a mitochondrial targeting sequence (MTS). The length of the different CLPP homologues varies from 207 amino acids in E. coli to 277 amino acids in H. sapiens. The amino-acid sequence of PaCLPP shares 57%, 60% and 58% similarity with that of HsCLPP, CeCLPP-1, and EcCLPP, respectively. (b) Southern blot analysis of HindIII digested genomic DNA from wild-type and ΔPaClpP. The PaClpP-specific hybridization probe detects the 4995-bp fragment containing PaClpP only in wild-type genomic DNA. A 2454-bp fragment containing the phleomycin resistance gene (ble) is detected by a ble-specific hybridization probe only in genomic DNA of ΔPaClpP. (c) Western blot analysis of mitochondrial protein extracts from wild-type and ΔPaClpP. The PaCLPP-specific antibody detects the ~25-kDa PaCLPP monomer only in the wild-type sample. PaPORIN (PaPOR) was detected as a loading control. (d) Growth rate of wild-type (0.60±0.04; n=59) and ΔPaClpP (0.58±0.04; n=55; P=0.07 by two-tailed Wilcoxon rank-sum test) isolates at 27 °C. Data given in parentheses are mean growth rate±s.e. in centimetres per day. (e) Female fertility of wild-type (100±14.7; n=11) and ΔPaClpP (126.1±20.3; n=11; P=0.26 by two-tailed Wilcoxon rank-sum test) isolates at 27 °C. Data given in parentheses are mean female fertility±s.e. in percentage. (f) Lifespan of wild-type (21.7±0.5; n=59), ΔPaClpP (37.1±1.5; n=57; P=5.8E-18), ΔPaIap (37.9±1.8; n=15; P=2.7E-09) and ΔPaClpP/ΔPaIap (70.6±3.4; n=90; P=8.5E-25) isolates at 27 °C. Data given in parentheses are mean lifespan±s.e. in days. P-values were determined in comparison with the wild-type sample by two-tailed Wilcoxon rank-sum test.
Figure 2Heterologous expression of human complements the longevity phenotype of Δ
(a) Representative western blot analysis of mitochondrial protein extracts from wild-type, ΔPaClpP and ΔPaClpP/HsClpP_OEx1. The HsCLPP-specific antibody detects the ~26 kDa HsCLPP monomer only in the ΔPaClpP/HsClpP_OEx1 sample. PaPORIN (PaPOR) was detected as a loading control. (b) Western blot analysis of the same mitochondrial protein extracts as in (a) following BN-PAGE. Incubation of the western blot membrane with a PaCLPP-specific antibody visualized two oligomers with apparent molecular masses of ~170 and 340 kDa in the wild-type sample. In the ΔPaClpP/HsClpP_OEx1 sample, two distinct oligomers with apparent molecular masses of ~220 and 440 kDa were detected after incubation with an HsCLPP-specific antibody. Additionally, the ΔPaClpP/HsClpP_OEx1 (den.) sample was heat denatured for 10 min at 95 °C, after which the HsCLPP oligomers could not be detected anymore. (c) Lifespan of wild-type (23.3±0.4; n=39), ΔPaClpP (39.8±1.9; n=37; P=7.2E-13), ΔPaClpP/HsClpP_OEx1 (26.2±0.7; n=40; P=6.8E-04) and ΔPaClpP/HsClpP_OEx2 (26.2±0.7; n=39; P=2.5E-03) isolates at 27 °C. Data given in parentheses are mean lifespan±s.e. in days. P-values were determined in comparison with the wild-type sample by two-tailed Wilcoxon rank-sum test.