Difference between revisions of "Os04g0117600"

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(Created page with "{{JaponicaGene| GeneName = Os04g0117600| Description = Dihydrouridine synthase, DuS family protein| Version = NM_001058588.1 GI:115456905 GeneID:4334955| Length = 6968 bp|...")
 
 
(2 intermediate revisions by 2 users not shown)
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{{JaponicaGene|
+
The rice '''''Os04g0117600''''' was reported as '''''OsC3H26''''' in 2012 <ref name="ref1" /> by researchers from China.
GeneName = Os04g0117600|
+
==Annotated Information==
Description = Dihydrouridine synthase, DuS family protein|
+
===Gene Symbol===
Version = NM_001058588.1 GI:115456905 GeneID:4334955|
+
*'''''Os04g0117600''''' '''''<=>''''' '''''OsC3H26'''''
Length = 6968 bp|
+
===Function===
Definition = Oryza sativa Japonica Group Os04g0117600, complete gene.|
+
* Genes in the CCCH family encode zinc finger proteins containing the motif with three cysteines and one histidine residues.  <ref name="ref1" /> <ref name="ref2" />
Source = Oryza sativa Japonica Group
+
* CCCH-type zinc finger proteins have essential functions in various developmental processes in plants.
 +
* CCCH family genes have been known to play important roles in RNA processing as RNA-binding proteins.
 +
* CCCH-type zinc finger proteins are RNA-binding proteins by virtue of the ability of their defining motif to directly bind to RNA, whereas most of the other zinc finger families are confirmed as DNA-binding or protein-binding proteins.
 +
===Expression===
 +
* The expression profile indicated that most members of this subfamily are regulated by abiotic or biotic stresses, suggesting that they could have an effective role in stress tolerance.
 +
===Evolution===
 +
* A typical CCCH protein usually contains 1–6 CCCH-type zinc finger motifs.
 +
* Based on the different numbers of amino acid spacers between cysteines and histidines in the CCCH motif, a consensus sequence for these  was defined as C-X 4–15 -C-X 4–6 -C-X 3 -H (X represents any amino acid) based on the whole-genome analysis of rice and Arabidopsis CCCH proteins <ref name="ref1" /> <ref name="ref2" />
 +
You can also add sub-section(s) at will.
 +
==Labs working on this gene==
 +
* State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, Shandong 271018, P.R. China
 +
==References==
 +
<references>
 +
* <ref name="ref1">
 +
Wang D, Guo Y, Wu C, Yang G, Li Y, Zheng C. Genome-wide analysis of CCCH zinc
 +
finger family in Arabidopsis and rice. BMC Genomics. 2008 Jan 27;9:44. doi:
 +
10.1186/1471-2164-9-44. PubMed PMID: 18221561; PubMed Central PMCID: PMC2267713.
 +
</ref>
 +
* <ref name="ref2">
 +
Peng X, Zhao Y, Cao J, Zhang W, Jiang H, Li X, Ma Q, Zhu S, Cheng B. CCCH-type
 +
zinc finger family in maize: genome-wide identification, classification and
 +
expression profiling under abscisic acid and drought treatments. PLoS One.
 +
2012;7(7):e40120. doi: 10.1371/journal.pone.0040120. PubMed PMID: 22792223;
 +
PubMed Central PMCID: PMC3391233.
 +
</ref>
 +
</references>
  
  ORGANISM  Oryza sativa Japonica Group
+
==Structured Information==
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
+
    [[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 4]]
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
 
            clade; Ehrhartoideae; Oryzeae; Oryza.
 
|
 
Chromosome = [[:category:Japonica Chromosome 4|Chromosome 4]]|
 
AP = Chromosome 4:1034034..1041001|
 
CDS = 1034091..1034342,1034996..1035112,1035186..1035416,1038234..1038489,1038585..1038841<br>,1039012..1039284,1039651..1039932,1040079..1040199,1040385..1040554<br>,1040647..1040745|
 
GCID = <gbrowseImage1>
 
name=NC_008397:1034034..1041001
 
source=RiceChromosome04
 
preset=GeneLocation
 
</gbrowseImage1>|
 
GSID = <gbrowseImage2>
 
name=NC_008397:1034034..1041001
 
source=RiceChromosome04
 
preset=GeneLocation
 
</gbrowseImage2>|
 
CDNA = <cdnaseq>atggccgccaccgccgccgccgccgccgcggcgcctcccgccgacccgccggactcctccccggccgcttcctcccctccgaggcccagcccggaggagctggtcgcccgtgcagtggcccccgtcaagcccgccttcctccgcccgcccctgtccgcgacgccccccaaggatgagggcaaggccaacggcggcggcgcggtggtcgcggagaagaagtccaagcgccagctcaagcgcgagcgcaagcaggaacagaaatcttcatcacatctttgtatcgaagtagggaaaagtggaaatgtgagctcttgcaaatatggtgattcttgccgtttcagccatgacatagatgcctatttggctcagaaaccagctgaccttgagggcacgtgcccatttaccaatctggaccagttgtgtccatatggactaacttgtcgatttttgggtacacataaggacatccatgcagcttctggaaatctttcagagaaacatgagataaatgctttaaacaaagacattcaaaagctcttatggaagaacaaatataagttccccaaggccagtgcacagatcaagcttcttggtcttaaggaagtcattaagagcaaaccggatgctgcaaatgatgataagaaggttaatcatgataatctagacgggaatgatgatgaaaataaagaacctctttgcaatcctcctgtaaatgcggaatgtgattctactttgtgtgaagaattggatagatcagagggagaacctttgattgataactcaattccatgtgttgaaccaaggccaacaaagaagtcaaaggttgaaagtgatgaaattgacaaacatggagcgggtactctcaacactaacacagaatctgaagatcctaatttgagtaatggattggaaccctcaaataactcaagttcttgtagaactgacctaatcacaacacctcatttacgtgaaaagaagataatagattttcgggagaagttgtaccttgctcccttgactactgtcgggaatctgccttttcggagactctgcaaaaccttgggagctgatattacttgtggagaaatggccatgtgcacaaatcttttacagggacaagcttcagagtgggctttgctgcgacggcattcatcagaggatttgtttggggtgcaaatttgtggagcctatccagatacagtagcacgaaccgttgaacttgtggataacgaatgttcagttgatttcatagacataaatatggggtgcccaattgatattgttgtcaacaaaggtgctggatcatcattgctaacaaaacctatgaggatcaaaagtattgtacaagcagcatccactgttactgaaaaacctttaactgttaaggtaagaactgctttctttgagggaaggaaccgtgctgattctatagtttccgacatctatgactggggtgcgtcagccataacagtacatggtcgatcccggcaacagcgctacagcaaacttgctgattgggattatatttaccagtgtgcccagaaagcccctgaccagttgcatgtcgttggaaatggtgatgtattctcttttactgactggaacaaacatgtttcaggctgctctaaaatatcgacaagcatgattgctcgaggtgcactcataaagccttggatatttactgaggttaaagaacaaaggcactgggatattacatctggcgagagattcaatattcttaaagattttgtgagttttggtctggaacactggggttccgattccaaaggtgttgaaacaacacgctattttttactagaatggctaagctacacctgccgctacataccggttggcctgttggatgtgatcccgcaacgtttgaactggaggcccccaagctactgtggccgtgatgatcttgaaaccctaatgatctctgattcagcagctgactggatcaggatctcagagatgttgcttggcaaagttccagaagggtttacgtttacacccaagcacaaatccaatgcttatgatcgagctgaaaacggctaa</cdnaseq>|
 
AA = <aaseq>MAATAAAAAAAPPADPPDSSPAASSPPRPSPEELVARAVAPVKP                    AFLRPPLSATPPKDEGKANGGGAVVAEKKSKRQLKRERKQEQKSSSHLCIEVGKSGNV                    SSCKYGDSCRFSHDIDAYLAQKPADLEGTCPFTNLDQLCPYGLTCRFLGTHKDIHAAS                    GNLSEKHEINALNKDIQKLLWKNKYKFPKASAQIKLLGLKEVIKSKPDAANDDKKVNH                    DNLDGNDDENKEPLCNPPVNAECDSTLCEELDRSEGEPLIDNSIPCVEPRPTKKSKVE                    SDEIDKHGAGTLNTNTESEDPNLSNGLEPSNNSSSCRTDLITTPHLREKKIIDFREKL                    YLAPLTTVGNLPFRRLCKTLGADITCGEMAMCTNLLQGQASEWALLRRHSSEDLFGVQ                    ICGAYPDTVARTVELVDNECSVDFIDINMGCPIDIVVNKGAGSSLLTKPMRIKSIVQA                    ASTVTEKPLTVKVRTAFFEGRNRADSIVSDIYDWGASAITVHGRSRQQRYSKLADWDY                    IYQCAQKAPDQLHVVGNGDVFSFTDWNKHVSGCSKISTSMIARGALIKPWIFTEVKEQ                    RHWDITSGERFNILKDFVSFGLEHWGSDSKGVETTRYFLLEWLSYTCRYIPVGLLDVI                    PQRLNWRPPSYCGRDDLETLMISDSAADWIRISEMLLGKVPEGFTFTPKHKSNAYDRA                    ENG</aaseq>|
 
DNA = <dnaseqindica>58..309#963..1079#1153..1383#4201..4456#4552..4808#4979..5251#5618..5899#6046..6166#6352..6521#6614..6712#ccccttaaaaccctcccttgctgctatgcctcattgcctcctcaccgcgccgcaaccatggccgccaccgccgccgccgccgccgcggcgcctcccgccgacccgccggactcctccccggccgcttcctcccctccgaggcccagcccggaggagctggtcgcccgtgcagtggcccccgtcaagcccgccttcctccgcccgcccctgtccgcgacgccccccaaggatgagggcaaggccaacggcggcggcgcggtggtcgcggagaagaagtccaagcgccagctcaagcgcgagcgcaagcaggtatagccgtcgttcgcggtggacgcgaaggtggtttttgcttttaatgctccgggagtgcttgttggaatgctcatgtgcattttttcccctgcatttggatgtcatttctgctgtgtgctgtatctgttccatacaatcttactaagcgaatttgagacatgcatattttgagatcttatagtttgtagtagctatgggaaatgactgttgattcagaatcaagaactacatactgaagatacatgtaatacttaaaaaatccagaagccccataaggaatcagggatttatgttctatttaatttgccatttatgttctatttagggctttgtgctcaccatgcctcttctcatgcttgatcatagtgtaaattagtgctgtttgatattccaatggttttttctggtatctgtgttactccagtactagtaaagactacatgttgagttttgcatcatctttctttcacgaaattgtccagagctgtccctgtttcatacttccagttccatgcaatttgctcgaactttggttataaatgtatgaaattgcaatttgcttgaactttggttgtaaatgtacatgtgcatgatgctttgtaatccactcaatgtgccgatgctcaacaaaattttgttatactgtgcaggaacagaaatcttcatcacatctttgtatcgaagtagggaaaagtggaaatgtgagctcttgcaaatatggtgattcttgccgtttcagccatgacatagatgcctatttggctcaggtactgttttattgtgttgttttccctgaactttcttaggcatgcttatatctttgttattttctgtgcacagaaaccagctgaccttgagggcacgtgcccatttaccaatctggaccagttgtgtccatatggactaacttgtcgatttttgggtacacataaggacatccatgcagcttctggaaatctttcagagaaacatgagataaatgctttaaacaaagacattcaaaagctcttatggaagaacaaatataagttccccaaggccagtgcacagatcaagcttcttggtcttaaggtatataactcccaaattctggttgcgtatctatctgatataccattttctcgtttctgttaatttgctccaatattcgatctgtcgtgcataactcaattttgttggattatggatttactttcatggagttaaatttgaaggttaattggatccatgtcactgcaattttgacaaattaaaaaaatgccactactattcatcatatcggctccatgccactgaaaaattctaaaattggaaccatgccactcccgtcgcttttcccgtcctcctccctcatgccgtcctcatcccgtcgtcgccaccacaccacgtcggcctcgccttctccctgccggcgagggccgccgccgccgctgctcctccccatcctctccccgcacggaccgtgctgccgctgctactcccgctccggagagcaaccagccggaggagagctccagatctggtgccgccggcaccgccgacgaggtccgccgcggctgctcctccccgtcctcgtcgcgcgcaccgtgccgccgctgctactcccgctctggagagcaaccagccagcgagcagcgtcgcggggatccccatctcctcctctagatccgacgccgcgggcaccaccgacgagggccgccgtcgccgccgccgctcttccccatgctcttgtcatcgtcgccgccgcggccatctctggtgagcacctcgggatccccgtctcctccagatacggcgccgccggcatcgccgacgagggccgctgccgctgctcctcccccatgctcttcttgttgtcgcccgcggctcctcggcctcgccaccaagctcaccaacgattcctcctgctccgatctcctccgctgttccccgtcctcgggaacggcagcgctgcgtacctcctccgcggcacgccgccgccgccgccgacgatgacgccccggtgccccgtccacatcaagagctgttcgtcaccggcgcagcgtgttcagggagttccgtgacgcggcaccatctcccgaaacgcccgatgccgacgccaccgacgacgactacctcggggagcttgacttcgaagacgaggatggattcgacgccgactctttccttgccgcagacgtcctgtccagcgccaccatacatccatacataagaagcctcatggtgctcgagtttcgtgttccggcaaggccggctcaacaccggccaagcaatgaagcggcatggcgatgagagtgattggtggatgtgccctgctcaattgccgtgagagaggatgaggaggggaagggaaacgccgtgagagaggagacggaaaaagggacgggagtggcatggtttcaattttagaaatttccagtggcatgtagccaatatgatgaatagtagtggcatttttttaatttatcaaagttgcagtggcatggatccaattaaccctttaaagaaacacggttaccaaatacatatggtagcccttagttctatagccgtgaagaaattatggttgtagataattgtgatgcatctccaatcacaatgtatctctaactagggaaacttgatgcttgaactggcatgggtgctcctttgcagcaaattagtgcattgcacacttgcactgcaaacattctgatgcatcaatgcttgaaatttattctttccacatacaattattgctgaaatttgtaaaactgagttactatgttatttttcagaacaaattatatggtagcaaataataacaattactatcatgtccaacgaatggtgtggaaaaatggaacaccttaagtattatgctttgcatttctaaacttgctctttgtaattgttgatttgtcatggatgaaatatattgtggttgcttcttgtttgaactggtgccaactgcaattcagcgaggactctgagttgtttgtatgctactcctgagtactgttttatgtatctgccaaaaaacattttcgctagtgtcttaataagtgtatatttggtggtggcaaaaacggtagaagatgtgttgtgttgggaagccaatggagcctgtttaatagttaatgaaaagcctggtcgtacttataaatgcatataacagaattgatcatgtactacccctatctatgttttccaggcagatttttgaataatcatgtccatcaatagggcttattttgtatcccaatgcaaaagtgtgttgtttcctctgtatccctaataaatatttatctttaccttgtattctataattcatttgatgtagcacttggatagtgatagaataattagggggcaacctagtcattgtaatgccttcttggtttgtgttcaacatgaaaatattccatgctaagttgtatggatggagtatgctacagctgtttgttaggttattgtgttgcagtatgtgccctctgagcttcagttggctgatttcttgacaaatgagcagagcagagctctgcacaatttcttccttccaccattctgttcctttttatgctccttctgtgttttctatatttggcctggagccctcatgttgaatacaagtgctattcatagcccttttcaatagttagtatttagtattcagcaaatacggataagatcctggaaataattgatttcgtgtgatggcaactgctcacttggtaggtcatagctctcttggtttagatatttcatatcatacaagggcagttcatattgcacttgaattattaggatgtatgtcgatgtatctgctgagacacgaggtgcagtttagaatgttccatttgctaatattgaatttttggggtctatttgatatactttgtaatacaggaagtcattaagagcaaaccggatgctgcaaatgatgataagaaggttaatcatgataatctagacgggaatgatgatgaaaataaagaacctctttgcaatcctcctgtaaatgcggaatgtgattctactttgtgtgaagaattggatagatcagagggagaacctttgattgataactcaattccatgtgttgaaccaaggccaacaaagaagtcaaaggttgaaagtgatgaaattgacaaacatggagcgggtttgttcttgaactttaagattgccattttcaatgcatctattactcttattttgaattgttgtgttgaccttttttggaacattatggtttaggtactctcaacactaacacagaatctgaagatcctaatttgagtaatggattggaaccctcaaataactcaagttcttgtagaactgacctaatcacaacacctcatttacgtgaaaagaagataatagattttcgggagaagttgtaccttgctcccttgactactgtcgggaatctgccttttcggagactctgcaaaaccttgggagctgatattacttgtggagaaatggccatgtgcacaaatcttttacaggttaaaaaactaaataaattacctctgccctgtttcattgcatgcttttcctgtttctgattgcatgtttcttactcctattgcaaaaagttgaaccaaagcaaagttaagttaatatatctgtttgacattcttcatgagacactttattattgatatatttcatgtagggacaagcttcagagtgggctttgctgcgacggcattcatcagaggatttgtttggggtgcaaatttgtggagcctatccagatacagtagcacgaaccgttgaacttgtggataacgaatgttcagttgatttcatagacataaatatggggtgcccaattgatattgttgtcaacaaaggtgctggatcatcattgctaacaaaacctatgaggatcaaaagtattgtacaagcagcatccactgttactgaaaaacctttaactgttaaggtaatggtgcagtagctcagttatactctgttaggagctaattagcacttgaggacaaaagttctggtgatttcatccagatgtcgatctgccaatgcattgtcacatttatggtcaacagggttgaactagaatcagagctttgaaaaaccaaatattttacatgtttagcgtactttttggaaggaaaactatctatgggtggacttagcctgcttgaacattttatgtctcatgatcggtaatcaatgcaaagtttaattagagataaggtacatggggagggggctgctaagacatgtatgacatattaaaatggaaataaacactgctttgctcatattgatctctgttgcttgattccaggtaagaactgctttctttgagggaaggaaccgtgctgattctatagtttccgacatctatgactggggtgcgtcagccataacagtacatggtcgatcccggcaacagcgctacagcaaacttgctgattgggattatatttaccagtgtgcccagaaagcccctgaccagttgcatgtcgttggaaatggtgatgtattctcttttactgactggaacaaacatgtttcaggctgctctaaaatatcgacaagcatgattgctcgaggtgcactcataaaggttagtttggtgctgcagtatatgtactttaacatctatcatgagaaaaatgctataattgctagctgtaatgtcaggcttttgttccctcaagttcatgtctgctaattttgtgctaatgcatggttttttttttcacctgacagccttggatatttactgaggttaaagaacaaaggcactgggatattacatctggcgagagattcaatattcttaaagattttgtgagttttggtctggaacactggggttccgattccaaaggtaggttctctctattgccagatattggctcagattatgagttttgtgaggcctggaatgcgataatatctgctcatcatcgagttacagttttttttttcttgctgcactgaaatgctcggcatgaaatcaaattgattttgaaagggttgtcttgatcatcaaattatcatgtgtattttcaggtgttgaaacaacacgctattttttactagaatggctaagctacacctgccgctacataccggttggcctgttggatgtgatcccgcaacgtttgaactggaggcccccaagctactgtggccgtgatgatcttgaaaccctaatgatctctgattcagcagctgactgggtaagctgtcctcgttctgagtgttggatggtttctatcttttactagctatcacaagctgataatatatatcttgtctaatgtacgtacagatcaggatctcagagatgttgcttggcaaagttccagaagggtttacgtttacacccaagcacaaatccaatgcttatgatcgagctgaaaacggctaacaccattcatctctcttcaaagcttgtgcccagccttggagctccatgctgcctgataatgtttacttgaaccggcggtgtaggggagcagcatgattttgcttcacccaaacgacacaattcatgtttatttaaacatagagagctgctactagtaatatgtgatgagggaattaccgtgacaagggattatgactcccttggaccgccaaaagaaaaaatccgcttcatttctgaaggaatttttatttcggtg</dnaseqindica>|
 
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001058588.1 RefSeq:Os04g0117600]|
 
}}
 
[[Category:Genes]]
 
[[Category:Japonica mRNA]]
 
[[Category:Oryza Sativa Japonica Group]]
 
[[Category:Japonica Genes]]
 
[[Category:Japonica Chromosome 4]]
 
[[Category:Chromosome 4]]
 

Latest revision as of 03:51, 28 March 2017

The rice Os04g0117600 was reported as OsC3H26 in 2012 [1] by researchers from China.

Annotated Information

Gene Symbol

  • Os04g0117600 <=> OsC3H26

Function

  • Genes in the CCCH family encode zinc finger proteins containing the motif with three cysteines and one histidine residues. [1] [2]
  • CCCH-type zinc finger proteins have essential functions in various developmental processes in plants.
  • CCCH family genes have been known to play important roles in RNA processing as RNA-binding proteins.
  • CCCH-type zinc finger proteins are RNA-binding proteins by virtue of the ability of their defining motif to directly bind to RNA, whereas most of the other zinc finger families are confirmed as DNA-binding or protein-binding proteins.

Expression

  • The expression profile indicated that most members of this subfamily are regulated by abiotic or biotic stresses, suggesting that they could have an effective role in stress tolerance.

Evolution

  • A typical CCCH protein usually contains 1–6 CCCH-type zinc finger motifs.
  • Based on the different numbers of amino acid spacers between cysteines and histidines in the CCCH motif, a consensus sequence for these was defined as C-X 4–15 -C-X 4–6 -C-X 3 -H (X represents any amino acid) based on the whole-genome analysis of rice and Arabidopsis CCCH proteins [1] [2]

You can also add sub-section(s) at will.

Labs working on this gene

  • State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, Shandong 271018, P.R. China

References

  1. 1.0 1.1 1.2 Wang D, Guo Y, Wu C, Yang G, Li Y, Zheng C. Genome-wide analysis of CCCH zinc finger family in Arabidopsis and rice. BMC Genomics. 2008 Jan 27;9:44. doi: 10.1186/1471-2164-9-44. PubMed PMID: 18221561; PubMed Central PMCID: PMC2267713.
  2. 2.0 2.1 Peng X, Zhao Y, Cao J, Zhang W, Jiang H, Li X, Ma Q, Zhu S, Cheng B. CCCH-type zinc finger family in maize: genome-wide identification, classification and expression profiling under abscisic acid and drought treatments. PLoS One. 2012;7(7):e40120. doi: 10.1371/journal.pone.0040120. PubMed PMID: 22792223; PubMed Central PMCID: PMC3391233.

Structured Information