Difference between revisions of "Os10g0167600"
Chenhao1203 (talk | contribs) (→Annotated Information) |
Chenhao1203 (talk | contribs) (→Function) |
||
| Line 5: | Line 5: | ||
Protein: Cyclobutane pyrimidine dimer (CPD) photolyase | Protein: Cyclobutane pyrimidine dimer (CPD) photolyase | ||
===Function=== | ===Function=== | ||
| − | Repair of CPDs is essential for plant survival while exposed to UV-B-containing sunlight. Nuclear repair of the UV-B-induced CPDs involves the photoreversal of CPDs, photoreactivation, which is mediated by CPD photolyase that monomerizes the CPDs in DNA by using the energy of near-UV and visible light (300–500 nm).There are two kinds of CPD pthotolyase existed in rice leaves. One is 54kD and another is 56kD protein. The 56-kD native rice CPD photolyase was phosphorylated, which has significantly higher CPD photorepair activity. | + | Repair of CPDs is essential for plant survival while exposed to UV-B-containing sunlight. Nuclear repair of the UV-B-induced CPDs involves the photoreversal of CPDs, photoreactivation, which is mediated by CPD photolyase that monomerizes the CPDs in DNA by using the energy of near-UV and visible light (300–500 nm).There are two kinds of CPD pthotolyase existed in rice leaves. One is 54kD and another is 56kD protein. The 56-kD native rice CPD photolyase was phosphorylated, which has significantly higher CPD photorepair activity. The native rice CPD photolyase possesses both a pterin-like chromophore and an FAD chromophore. |
===Expression=== | ===Expression=== | ||
Revision as of 05:10, 9 June 2014
Please input one-sentence summary here.
Contents
Annotated Information
Gene:OsCPDP; qUVR-10 Protein: Cyclobutane pyrimidine dimer (CPD) photolyase
Function
Repair of CPDs is essential for plant survival while exposed to UV-B-containing sunlight. Nuclear repair of the UV-B-induced CPDs involves the photoreversal of CPDs, photoreactivation, which is mediated by CPD photolyase that monomerizes the CPDs in DNA by using the energy of near-UV and visible light (300–500 nm).There are two kinds of CPD pthotolyase existed in rice leaves. One is 54kD and another is 56kD protein. The 56-kD native rice CPD photolyase was phosphorylated, which has significantly higher CPD photorepair activity. The native rice CPD photolyase possesses both a pterin-like chromophore and an FAD chromophore.
Expression
full-length CPD photolyase is encoded by a single gene, not a splice variant, and is expressed and targeted not only to nuclei but also to chloroplasts and mitochondria.
Evolution
Rice may have evolved a CPD photolyase that functions in chloroplasts, mitochondria and nuclei, and that contains DNA to protect cells from the harmful effects of UV-B radiation.
You can also add sub-section(s) at will.
Labs working on this gene
Please input related labs here.
References
Please input cited references here.
Structured Information
| Gene Name |
Os10g0167600 |
|---|---|
| Description |
Similar to CPD photolyase |
| Version |
NM_001189112.1 GI:297727354 GeneID:9272017 |
| Length |
3900 bp |
| Definition |
Oryza sativa Japonica Group Os10g0167600, 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 10:4343782..4347681 |
| Sequence Coding Region |
4343990..4344169,4344287..4344358,4344993..4345074,4345697..4345755,4345844..4345880 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008403:4343782..4347681 source=RiceChromosome10 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008403:4343782..4347681 source=RiceChromosome10 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atgctgctgataaaagagagcatatctatacgtgagagggaacagcttgagaatgccaaaacacatgatcctttgtggaatgcatcgcagttggagatggttcaccatggaaaaatgcatggattcatgagaatgtactgggccaaaaagattctagaatggactagtggaccagaagaagcactttcaactgcaatttatttaaatgacaagtatgagatagatggcagggaccccagtggttacgtcggatgtatgtggtccatatgtggcctccatgatcagggttggaaggagcgtccagtatttggaaagatacgttacatgaattacgctggctgcaagagaaaattcgatgttgacgcttacatttcttatgtcaagagattagctggtcaatccaagaagaggaacgctgaggagtctccaaatcctgtagtcaagctttccaagtctcagcactaa</cdnaseq> |
| Protein Sequence |
<aaseq>MLLIKESISIREREQLENAKTHDPLWNASQLEMVHHGKMHGFMR MYWAKKILEWTSGPEEALSTAIYLNDKYEIDGRDPSGYVGCMWSICGLHDQGWKERPV FGKIRYMNYAGCKRKFDVDAYISYVKRLAGQSKKRNAEESPNPVVKLSKSQH</aaseq> |
| Gene Sequence |
<dnaseqindica>3513..3692#3324..3395#2608..2689#1927..1985#1802..1838#1647..1681#aattcacacccacaaacgcacgcccgcacgcgcgcgcgcgcgctcagagacctccgtcgccgcccgccgcacgccggcgacccaccgcgccgcacgatgccgccgacctcagtgagcccaccaagaacagcgccggggccggcgaacccgagcccggcacacccgtcccgcgtgcgggtgatccacccgggcggcgggaagcccggtgggccggtggtgtactggatgctgcgggaccagcggctcgccgacaactgggcgctcctccacgccgccggcctcgccgccgcctccgcgtccccgctcgccgtcgcgttcgcgctgttcccgaggcccttcctcctctccgcccgccgccgccagctcgggttcctcctccgcggcctccgccgcctcgccgccgacgccgccgcccgccacctccccttcttcctcttcaccggtacgcgcccttttctttttctttttctttttctttttcttttgtctccatccgtgacgatgacatgtgggccaccccgtcttgcgaaatgtgacgtggctttttctctggctcgctgacaggtgggcccgcggagatcccggcgctggtgcggcgccttggtgcgtcgacgctggtcgccgacttctcgccgctgcggccggtgagggaggcgctcgacgcggtggtcggcgacctgcggcgggaggcgcccggcgtggccgtgcaccaggtgagcgtggtggcattgctgtttgcatcaatcttccaagaaagttgggaatctttttggggatggataatgaattcgccggagaatttagagattcttgtggaattcttcgaatgcaggtggacgcgcacaacgtggtgcctgtgtggacggcgtcggcgaagatggagtattcagccaagaccttcagaggcaaggtgagcaaggtgatggatgagtaccttgtggagttccctgaattgccggcggtggtgccatgggacagggagcagccggagggggtcgactgggacgcactcatcgccagggtttgcaggtgcggatgataattctaaggtgtattgggtggtaattttgtttgtgtagatatggatgactattgattcttggttgtttgagcagtgaggcggagaatgtgccggagattgactggtgtgagcctggagaggaagcagccatagaggcgcttctcggcagcaaggatggattcctgacgaagaggatcaagagctatgaaactgaccggaatgatcccacgaaaccacgggcattgtctgggctttcaccataccttcattttgggcacatttcggcacagcggtgtgcgctcgaggcaaagaaatgccgacatcttagtcccaaggtgctgttctttaactgatttgttatgattaaaagagttatgatcctcttgcaatgtaataaattgttagatggcattgtttttctttaccgtgaactggctagaattcttagtgatgttgtttacctaatagatgtttgaagtaacatgtgttctgaaacagtccgtcgatgctttcttggaggaattggttgtaaggagggaattagctgacaacttctgctattaccaacctcaatatgattcgctgtctggtgcatgggaatgggcaaggaagacactgatggatcatgctgctgataaaagagagcatatctatacgtgagtaagttgccctttataatttattgtcacaattttaaccaaattatcttcctgacgatgttaaggtaaaagatcttcgctctaattggttatttgttaattgtcattttgttttggctaggagggaacagcttgagaatgccaaaacacatgatcctgtaagtgctattggacgtggtgtactctgttgctgatattgaagttactctaacacactgagttattttttttctaaatgattatcagttgtggaatgcatcgcagttggagatggttcaccatggaaaaatgcatggattcatgaggtaatatatcatgaccagactcttacaaaatcacgcaattataaaatgtttattgaacagttttttttttatgaaactgcttgttatatttcttctgtacccatggcacattctagttagttgcccataacctattggcccacttgttgacaacatatggttattttacccatcatactgatggtgtggtgctaacctaaaggcattggattgcccccaccccatctttgctgacataactgattagtttgctttgttggatagatgggaattttctgacgttgtggtttactttatcctatgtcagaaaatatgaagttatttgaaaaaaagcattccttaaaaaattagttttctgtagagtttgtgtagttccaataaatttatgatgatctatgtgatatgtctggtagcaagcctttggtgcacataattctctttgattctgggcaaaccttttacactatttttgttcaacttttgttttggatctggaaagaaagaaaagtaagttgttttggcgaacatcaaagaatgatgttatatctaattgattcttagttctgaaggtaacagtgcctgtaaggactttttcctttcctaatgtagtagttgtctgtagaatgtactgggccaaaaagattctagaatggactagtggaccagaagaagcactttcaactgcaatttatttaaatgacaaggtaagacctatacacatgtttgggaaatacagttgtgttattttgaatttgtcctttttatagttttgctagttgtagttaaaatagctatatttcaacacatggaacatgataaagaaacatggaacatgataaagaaactgctcacatgaaaaattgtaattgaatagcaacttggaagagtctgcccatgcttaaattagttcctgcgccgataaccgaaaagttggagtcacatttatcaaattaagaaatatataatttgacattcttttcatgtaaggcagaaaattgtatggttggtgctcttttcattatcttatcttcccttaagttaaaaacatcatccttctagggacaaccagacaataaatcagcttcacggtcgcctcggataagctggactatcctttttcttggttacctgtcagaagaaagatacaaaacagtaactggggaaataaattttcaggaatgtgaaattgctcgaagatattttcatagttgaacctacaattctttccccagctggattgttctcgttctttaataggagtagttgtttgcattgaagtacttctacggattttatttatgcttttcaacaaagtcttacaaatcaatcttgtggcagtatgagatagatggcagggaccccagtggttacgtcggatgtatgtggtccatatgtggcctccatgatcaggtcattgtgttatcacttctcacttcacagggaaaaacaattttgcttttcacaagcattagattgttggtgacattctagaagcgagtattccttacaccactgctgttttctcagggttggaaggagcgtccagtatttggaaagatacgttacatgaattacgctggctgcaagagaaaattcgatgttgacgcttacatttcttatgtcaagagattagctggtcaatccaagaagaggaacgctgaggagtctccaaatcctgtagtcaagctttccaagtctcagcactaaatccgactaggaaaatatgaacatttctttgtgtggtataccacgagctcggaaaattgaagaacagtgctaacttgaggtagatcatgtagggtatacactgtagatctgtttgtctgatatccttgtaggcttctaatcattcaaaatttgctagcattgttaagactttaagacatacagtgtcacaccagttgaattcaagtgt</dnaseqindica> |
| External Link(s) |