Difference between revisions of "Os03g0411500"
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chloroplasts in early stages of development,which can be light-mediated.[4] | chloroplasts in early stages of development,which can be light-mediated.[4] | ||
| − | + | ==Evolution== | |
ATP-dependent Clp protease proteolytic subunit is an enzyme that in humans is encoded by the CLPP gene.[1][2] It is found in mitochondria and is widely distributed in bacterial species. | ATP-dependent Clp protease proteolytic subunit is an enzyme that in humans is encoded by the CLPP gene.[1][2] It is found in mitochondria and is widely distributed in bacterial species. | ||
In several bacteria, such as E. coli, proteins tagged with the SsrA peptide (ANDENYALAA) encoded by tmRNA are digested by Clp proteases.[3] | In several bacteria, such as E. coli, proteins tagged with the SsrA peptide (ANDENYALAA) encoded by tmRNA are digested by Clp proteases.[3] | ||
Revision as of 07:31, 21 May 2014
A nuclear gene coding caseinolyse positioned in plastid or mitochondrion regulating early morphogenesis.
Contents
Annotated Information
Function
The protein encoded by this gene belongs to the peptidase family S14 and hydrolyzes proteins into small peptides in the presence of ATP and magnesium. The protein is transported into mitochondrial matrix and is associated with the inner mitochondrial membrane[2], or plastid inner membrane in plants[4]. The plastidic caseinolytic protease (Clp) of higher plants is an evolutionarily conserved protein degradation apparatus composed of a proteolytic core complex (the P and R rings) and a set of accessory proteins (ClpT, ClpC, and ClpS).[4] Rice yellow leaf mutant vyl, the performance of the entire growth period, new leaves chlorotic phenotype, then gradually turn green from the top down.[4] VYL Arabidopsis Clp protease subunit ClpP6 homologous protein in rice, is one of the subunits of the chloroplast Clp protease, with the Clp protease subunit interactions OsClpP3 and OsClpP4 respectively, play an important role in the biosynthesis of rice chloroplast.[4] What's more, the gene D53 product shares predicted features with the class I Clp ATPase proteins and can form a complex with the a/b hydrolase protein DWARF 14 (D14) and the F-box protein DWARF 3 (D3), two previously identified signalling components potentially responsible for SL(Strigolactones) perception, which means, in a D14- and D3-dependentmanner, SLs induce D53 degradation by the proteasome and abrogate its activity in promoting axillary bud outgrowth.[5]
Expression
Expression is constitutive in most tissues examined (roots, stems, leaves, leaf sheath, panicle)but most abundant in leaf sections containing chloroplasts in early stages of development,which can be light-mediated.[4]
Evolution
ATP-dependent Clp protease proteolytic subunit is an enzyme that in humans is encoded by the CLPP gene.[1][2] It is found in mitochondria and is widely distributed in bacterial species. In several bacteria, such as E. coli, proteins tagged with the SsrA peptide (ANDENYALAA) encoded by tmRNA are digested by Clp proteases.[3]
Labs working on this gene
National Key Laboratory for Crop Genetics and Germplasm Enhancement, Jiangsu Plant Gene Engineering Research Center, Nanjing Agricultural University, Nanjing 210095, People’s Republic of China
References
1.Bross P, Andresen BS, Knudsen I, Kruse TA, Gregersen N (Feb 1996). "Human ClpP protease: cDNA sequence, tissue-specific expression and chromosomal assignment of the gene". FEBS Lett 377 (2): 249–52. doi:10.1016/0014-5793(95)01353-9. PMID 8543061. 2. a b "Entrez Gene: CLPP ClpP caseinolytic peptidase, ATP-dependent, proteolytic subunit homolog (E. coli)". 3. Gottesman S, Roche E, Zhou Y, Sauer RT (1998). "The ClpXP and ClpAP proteases degrade proteins with carboxy-terminal peptide tails added by the SsrA-tagging system". Genes Dev 12 (9): 1338–47. doi:10.1101/gad.12.9.1338. PMC 316764. PMID 9573050 4.Hui Dong et al. A Rice Virescent-Yellow Leaf Mutant Reveals New Insights into the Role and Assembly of Plastid Caseinolytic Protease in Higher Plants. Plant Physiology, 2013, 162(4): 1867-1880 5. Zhou Feng et al.D14–SCFD3-dependent degradation of D53 regulates strigolactone signaling. Nature,2013. doi:10.1038/nature12878
Structured Information
| Gene Name |
Os03g0411500 |
|---|---|
| Description |
Peptidase S14, ClpP family protein |
| Version |
NM_001056884.1 GI:115453496 GeneID:4333096 |
| Length |
3448 bp |
| Definition |
Oryza sativa Japonica Group Os03g0411500, complete gene. |
| Source |
Oryza sativa Japonica Group ORGANISM Oryza sativa Japonica Group
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
clade; Ehrhartoideae; Oryzeae; Oryza.
|
| Chromosome | |
| Location |
Chromosome 3:17630235..17633682 |
| Sequence Coding Region |
17630290..17630357,17630478..17630512,17631200..17631269,17631410..17631614,17631776..17631841 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008396:17630235..17633682 source=RiceChromosome03 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008396:17630235..17633682 source=RiceChromosome03 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggcgcctatggccatctccaccccgctcgccctccgcgcctccccgacccgcctcctctcccgcaggcggagcggagccaaatcaggcgtggctctcccaggtccacaatttgtaccacctggtatttcttcaaagttggacgagaggatacattgtcattcttctctgaggaaaaatacaattgtagcatcagagaatgaaaatccacctttaatgcctgccataatgactcctgctggtgctcttgatctggcaactgtattgttggggaaccgcattatcttcattggtcaatatattaactcgcaagtagcacagcgtgtaatatcacagcttgtcacacttgctgctgttgatgaagaggctgatattctgatctacctgaactgccccggcggaagtctctactccatcttagcaatttatgattgcatgtcctggatcaagcccaaagttggaacagtgtgctttggtgttgttgctagccaggcagcaattatacttgctggcggtgagaagggaatgcgttatgccatgccaaatgctagagtaatgattcatcaacctcaaggtgtatcagagggtaatgtggaggaggtgaggcgacaggttggggaaaccatttatgctcgtgataaagttgataagatgtttgctgcttttactgggcaaaccttggatatggtacaacagtggacagagagggatcgtttcatgtcttcatctgaagccatggactttggactagttgatgccctgctggaaacaagatactaa</cdnaseq> |
| Protein Sequence |
<aaseq>MAPMAISTPLALRASPTRLLSRRRSGAKSGVALPGPQFVPPGIS SKLDERIHCHSSLRKNTIVASENENPPLMPAIMTPAGALDLATVLLGNRIIFIGQYIN SQVAQRVISQLVTLAAVDEEADILIYLNCPGGSLYSILAIYDCMSWIKPKVGTVCFGV VASQAAIILAGGEKGMRYAMPNARVMIHQPQGVSEGNVEEVRRQVGETIYARDKVDKM FAAFTGQTLDMVQQWTERDRFMSSSEAMDFGLVDALLETRY</aaseq> |
| Gene Sequence |
<dnaseqindica>56..123#244..278#966..1035#1176..1380#1542..1607#2217..2357#2569..2622#2758..2850#2949..2996#actcctcagtcctcgcctcggctcggctccctcccacgctccagctccgcctccaatggcgcctatggccatctccaccccgctcgccctccgcgcctccccgacccgcctcctctcccgcaggtgagctccacggaactacaacttccacctccttcgctcgctcgctcgccccgcgcttctctcttcatggattcccccgttcttgtcccctcaccctctgtctggtccttctttcttcaggcggagcggagccaaatcaggcgtggctctcccaggtgagatttcctaacccttggtttagcaaaccatttcccttggtcagctcgttaggccaggactgtttggtggaatttgatcgttgatttgataagctttactgagatgttgtccatggtggtgcacatattagaacatgaccatttgggcagccgtcccatcagctcctagttgtctttctctgtgccaattttttatggagtcgtcattggtaggttttgcaaagcatatagaacctctgaatgtcggcattatccaagagtatgccgacctggggttatctgaaccagtgtcaactccttcctgggccaatgtctggtatgcatcagcattagctcactaagtacacgaaaaatggatgtgcttggttgaacggatatgtataaaaacgataacctgcatataacatatcacctcagtttggtctgattctgaaattagtttagggccttttagcaaactgctgaatgagatttccagactgtatatgtgttattgtgtttgtcagtaactcagtatggtgtattagcacaactcaacatgccataatgacaggatatgcggagcacaaacttttctttggacatgttttttggattcctttactgtttagtccatctgtctttcacatgatatattgctgcaaatgtgctgagttgcattctcactcaaatttccacacctaggtccacaatttgtaccacctggtatttcttcaaagttggacgagaggatacattgtcattcttctctgaggtgatatatttgaaactgtcatgcctgatatacaatgaggatacattgcctgatttgaaactgctcatctaggttttatttgtgctgtgtatcagaatcctgttttattcattcgtaatattgtaaatattttttcacaggaaaaatacaattgtagcatcagagaatgaaaatccacctttaatgcctgccataatgactcctgctggtgctcttgatctggcaactgtattgttggggaaccgcattatcttcattggtcaatatattaactcgcaagtagcacagcgtgtaatatcacagcttgtcacacttgctgctgttgatgaagaggctgatattctggttagtgtttatttttgtgtttttcagatcataacagttaccctattgttcactgcagcagctcttgattgctcaacttcactcccttggcttgctcctttagctcacaggtgtgttgctctatatcttataactccttttgtataattctgttttgccagatctacctgaactgccccggcggaagtctctactccatcttagcaatttatgattgcatgtcctgggtatgccatctatgttgagctactttttccatgtccttcatgcattcaaatttcagagattgtattcacctatatttattcttgtggatgctttctgagttattctcatctaatttaatatttacattgttggatgagaacacattatagatgcatctcaacattttgtatcttccacattatgcatgcccctagctagtgaatttatatttataatatagcacagatatagcatttacaggaaagcctaatgtaatttaggcaaaaattatatctcatatcaatggtagtgcttgcaacatttgtattcttatatttttattgtagtacatactagacatgagcatttgccatgctgagactgtgctaattgggtttggtctggtactgcagacaacagatctcatttcctgaaatcatgcctgtctctaaaactggctttgagctggaccagccttgttagttgttagatttggctgtgtttttacttgttatgccagttttccataaccaaatactttatctacaatttcgcctactgataaataaatcccagaatattaatctttttttgttgttctgcactaacacatgaaccatttattgcagatcaagcccaaagttggaacagtgtgctttggtgttgttgctagccaggcagcaattatacttgctggcggtgagaagggaatgcgttatgccatgccaaatgctagagtaatgattcatcaacctcaaggtgtatcagaggtatgattctggggctttctgcctttctgagttactgcagcgggtgcattatgattttctaacattgtgactacagtaaataataatcatcatcattttagctggccacatgaaacttacaatatacagtcttgctaggacatacttgcttgcctttgtgtttgttgtacttgaagtttgttttttattctaaaaattggatgatttgcagggtaatgtggaggaggtgaggcgacaggttggggaaaccatttatgctcgtgatgtaagtgttttgtgatagataacaagttctatattttcttcagtgtacatttgaattagatgtttgatgagggtaaggaatttctcttgattctgctctctaagcgattaaagcttctgaaaaatctggatgcagaaagttgataagatgtttgctgcttttactgggcaaaccttggatatggtacaacagtggacagagagggatcgtttcatgtcttcatctgaagtaactttcatctcttaaatgtatcagaagaaagtaaatcatcatttgccatgtgaattataacttatttcccccttctttttttggttttaccctaggccatggactttggactagttgatgccctgctggaaacaagatactaacaaacaaacacttaggcacagtttgattagcagaggctggtacaaggattgtgaaactggagctgaagttgagattttcgccgtccttctagttcaaggactccaatgacaggaggctggatctgcgagacttgaatgcatcgccatcgctcctatgagcaaaacatctctgcgttgagtgtgattttttgctcttcttttttggatctggttttacatgccgccagcctatggtctcaatgcattggtcctgctaatgtttagtgtagaccagatgatcctttagacagcaaaacatcagttattactccgtagattttcccatgagctgattccagactgtgtgcaacttttgtgttccaattgcaaagtttgcaacccaacccaacccaacacatgggctgatgggctgttgacaaaggagagattttacacttcacatatgtcaaact</dnaseqindica> |
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