Difference between revisions of "Os01g0100100"

From RiceWiki
Jump to: navigation, search
m (Function)
m (Function)
Line 3: Line 3:
 
==Annotated Information==
 
==Annotated Information==
 
===Function===
 
===Function===
*Rab GTPase involved in membrane transport. They are important regulators in plasma membrane traffic and multivesicular membrane transport. <references /1>The performance of its function is combined with the cycle between GTP and GDP conformations. In their activated, GTP-bound state, RAB GTPases localize at membranes, where they recruit effector molecules and promote downstream reactions including tethering of transport vesicles or organelles to target membranes required for docking and fusion. Hydrolysis of GTP causes the release of RAB GTPases into the cytosol in a RAB GDP dissociation inhibitor-dependent manner.Activation and inactivation of GTPases are regulated by guanine nucleotide exchange factors and by GTPase activating proteins; these regulators drive the GTPase cycle of RAB proteins. <references /2> <references /3>
+
*Rab GTPase involved in membrane transport. They are important regulators in plasma membrane traffic and multivesicular membrane transport.The performance of its function is combined with the cycle between GTP and GDP conformations. In their activated, GTP-bound state, RAB GTPases localize at membranes, where they recruit effector molecules and promote downstream reactions including tethering of transport vesicles or organelles to target membranes required for docking and fusion. Hydrolysis of GTP causes the release of RAB GTPases into the cytosol in a RAB GDP dissociation inhibitor-dependent manner.Activation and inactivation of GTPases are regulated by guanine nucleotide exchange factors and by GTPase activating proteins; these regulators drive the GTPase cycle of RAB proteins.
*In addition to the plasm membrane, Rab GTPase also participates in the transport of the proglutelin from the Golgi to the protein storage vacuole (PSV). Also, it functions in keeping the general structural organization of the endomembrane system in developing rice seeds.<references /4>
+
*In addition to the plasm membrane, Rab GTPase also participates in the transport of the proglutelin from the Golgi to the protein storage vacuole (PSV). Also, it functions in keeping the general structural organization of the endomembrane system in developing rice seeds.
  
 
===Expression===
 
===Expression===
Line 10: Line 10:
  
 
===Evolution===
 
===Evolution===
*The average G+C content in rice is higher than in ''Arabidopsis'', but there are no any CpG islands in chromosome 1, indicating a neutral nucleotide distribution in this region. Also, there are a lot of tandem repeats. Some predicted genes were functionally characterized by homology to known proteins using BLASTP. All most all of these genes are also found in ''Arabidopsis''.<references /5>
+
*The average G+C content in rice is higher than in ''Arabidopsis'', but there are no any CpG islands in chromosome 1, indicating a neutral nucleotide distribution in this region. Also, there are a lot of tandem repeats. Some predicted genes were functionally characterized by homology to known proteins using BLASTP. All most all of these genes are also found in ''Arabidopsis''.
*This gene encodes Putative GTPase-activating protein, and molecular function is Rab GTPase activator activity, which is homologous with ''Arabidopsis thaliana''. Also, it is conserved in human, chimpanzee, Rhesus monkey, dog, cow, mouse, rat, chicken, zebrafish, fruit fly, mosquito, C.elegans, S.pombe, rice, and frog, and this gene is the one of this super-gene family.<references /5>
+
*This gene encodes Putative GTPase-activating protein, and molecular function is Rab GTPase activator activity, which is homologous with ''Arabidopsis thaliana''. Also, it is conserved in human, chimpanzee, Rhesus monkey, dog, cow, mouse, rat, chicken, zebrafish, fruit fly, mosquito, C.elegans, S.pombe, rice, and frog, and this gene is the one of this super-gene family.
  
 
==Labs working on this gene==
 
==Labs working on this gene==

Revision as of 02:34, 30 May 2014

Please input one-sentence summary here.

Annotated Information

Function

  • Rab GTPase involved in membrane transport. They are important regulators in plasma membrane traffic and multivesicular membrane transport.The performance of its function is combined with the cycle between GTP and GDP conformations. In their activated, GTP-bound state, RAB GTPases localize at membranes, where they recruit effector molecules and promote downstream reactions including tethering of transport vesicles or organelles to target membranes required for docking and fusion. Hydrolysis of GTP causes the release of RAB GTPases into the cytosol in a RAB GDP dissociation inhibitor-dependent manner.Activation and inactivation of GTPases are regulated by guanine nucleotide exchange factors and by GTPase activating proteins; these regulators drive the GTPase cycle of RAB proteins.
  • In addition to the plasm membrane, Rab GTPase also participates in the transport of the proglutelin from the Golgi to the protein storage vacuole (PSV). Also, it functions in keeping the general structural organization of the endomembrane system in developing rice seeds.

Expression

This gene is expressed in leaf epidermal cells, root, vascular tissues and stomata, with a molecular mass of 20–25 kDa.<reference /4>

Evolution

  • The average G+C content in rice is higher than in Arabidopsis, but there are no any CpG islands in chromosome 1, indicating a neutral nucleotide distribution in this region. Also, there are a lot of tandem repeats. Some predicted genes were functionally characterized by homology to known proteins using BLASTP. All most all of these genes are also found in Arabidopsis.
  • This gene encodes Putative GTPase-activating protein, and molecular function is Rab GTPase activator activity, which is homologous with Arabidopsis thaliana. Also, it is conserved in human, chimpanzee, Rhesus monkey, dog, cow, mouse, rat, chicken, zebrafish, fruit fly, mosquito, C.elegans, S.pombe, rice, and frog, and this gene is the one of this super-gene family.

Labs working on this gene

Please input related labs here.

References

<references>Takuji Sasaki, Takashi Matsumoto, Kimiko Yamamoto, et al. The genome sequence and structure of rice chromosome 1[J]Nature, 2002, 420:312-316.

Structured Information

Gene Name

Os01g0100100

Description

RabGAP/TBC domain containing protein

Version

NM_001048268.2 GI:297595880 GeneID:4326813

Length

7585 bp

Definition

Oryza sativa Japonica Group Os01g0100100, 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

Chromosome 1

Location

Chromosome 1:2167..9751

Sequence Coding Region

2449..2616,3357..3455,4457..4560,6136..6997

Expression

GEO Profiles:Os01g0100100

Genome Context

<gbrowseImage1> name=NC_008394:2167..9751 source=RiceChromosome01 preset=GeneLocation </gbrowseImage1>

Gene Structure

<gbrowseImage2> name=NC_008394:2167..9751 source=RiceChromosome01 preset=GeneLocation </gbrowseImage2>

Coding Sequence

<cdnaseq>atgtcgtcggccgcgggccaagacaacggagataccgctggggactacatcaagtggatgtgcggcgccggtggccgtgcgggcggcgccatggccaacctccagcgcggcgttggctccctcgtccgtgacattggcgacccctgcctcaacccatcccccgttaaggggagcaaaatgctcaaaccggaaaaatggcacacatgttttgataatgatggaaaggtcataggtttccgtaaagccctaaaattcattgtcttagggggtgtggatcccactattcgagctgaagtttgggaatttcttcttggctgctatgccttgagtagtacctcagagtataggaggaaactaagagctgttagaagggaaaaatatcaaattttagttagacagtgccagagcatgcacccaagcattggtacaggtgagcttgcttacgctgttggatcaaagctaatggatgtcaggactatgtcaaaagaaacccacattgcagaagaagttagcacaagtcaacaaacttcacaaaatacagctggcagtttagtagaagattcagattatggccccggtggtgcacagcagtcacaaaaaagggaaagctgtagtaaatcagctgaactagttggtttcaacgtacataatgatacctctctttatgattcttccaattttattgtgtcttctacagaagtgaataattgctcaaaagattctcaggattacaatgacatgggtgaaccaagatatgacactgagaccttcgatgattatccttctctacctgttacaaattttttctcaactgatggtgtgggcagcaatggagttgataaaaatcattgtagtttctcagttcctgaagatagattaaggcaccgtgatgaacgtatgcacagcttccaaatcaataataacatagatctcattatagagtcaaattcatgctccagtgatgtgtttagggctagcaacagtgattcagccatctttcactcagatgcatacaagcaggatagatggttagatgataatggctataacagggaagttatagattccttgaggatatctgatgcaccagaagcagattttgttgatggaaccaaatccaacagtgtggttgccagcaaagatcgagtctctgaatggctttggacactgcaccgaattggtatgctctattttttcttcacttcatcatgcaattacagtggtatcttgtga</cdnaseq>

Protein Sequence

<aaseq>MSSAAGQDNGDTAGDYIKWMCGAGGRAGGAMANLQRGVGSLVRD IGDPCLNPSPVKGSKMLKPEKWHTCFDNDGKVIGFRKALKFIVLGGVDPTIRAEVWEF LLGCYALSSTSEYRRKLRAVRREKYQILVRQCQSMHPSIGTGELAYAVGSKLMDVRTM SKETHIAEEVSTSQQTSQNTAGSLVEDSDYGPGGAQQSQKRESCSKSAELVGFNVHND TSLYDSSNFIVSSTEVNNCSKDSQDYNDMGEPRYDTETFDDYPSLPVTNFFSTDGVGS NGVDKNHCSFSVPEDRLRHRDERMHSFQINNNIDLIIESNSCSSDVFRASNSDSAIFH SDAYKQDRWLDDNGYNREVIDSLRISDAPEADFVDGTKSNSVVASKDRVSEWLWTLHR IGMLYFFFTSSCNYSGIL</aaseq>

Gene Sequence

<dnaseqindica>283..450#1191..1289#2291..2394#3970..4831#caaggagtcctcgctgaggaagctttggatccacgacgcagctatggcctccccgcccaccaggccgccagccacaaccagctgactaggtaggcttcctaggtagggatcccatcccttcgattccctactccctcccccgattgatttgatttgatttgatttaattcgattgcctgcttttcaggtcgcatgcatcatcagatttcaatctcccttcgttccctgtccctaatccaataccaatagggagcaatcagctgctcctcgacggcgagggagatgtcgtcggccgcgggccaagacaacggagataccgctggggactacatcaagtggatgtgcggcgccggtggccgtgcgggcggcgccatggccaacctccagcgcggcgttggctccctcgtccgtgacattggcgacccctgcctcaacccatcccccgttaaggttcgcctactcctactctagctccatatggatatggattcgattagctgtctacattctatgccatcaatttgttttccatcacttctcattatacatctccattgctctctaaattaaggcttctctagctctatcctatatatatactagtactccgtatatgattctgcttcatcacttatttattcatcatcataccgtgaagctgtataagtcctgttatttgtcatttggcatatgttgtatagataacactttcagcccagggactttctattgccacttttatacatatacaatcaacatttagcatatgtatatcctgtaccgctcagttgtactgctgctttgaagataatgtttgcaaaacatatgagctcacacacgaggctagatgctgcataggctgcacaatggggtagccattttgatacttcttaatgctatttatgctggtccaaatgttcattggtagcctcaggcagagaattttagggagatattatgtcaaactccctggattcactatgattatacaatattacccattcaatccattcaaataaatttccaggtcaactcacatattgtactgaaagaagactaatttgcactaatcatatccttttatccaccagagtatatgagattgtcttctatatgcaatttacttcatatcgacatttttctgcagaattgcaaaactgacgccttgttttccatctggaattgtgcaggggagcaaaatgctcaaaccggaaaaatggcacacatgttttgataatgatggaaaggtcataggtttccgtaaagccctaaaattcattgtcttaggggtgagttaattgtttcttttgtgcttcaaaaacttgttttttcatgtattttagctgttgaagggtgtggatttttttttcagtcttaatacattaccttttagagcatgatgccccacgcgccatttgtgaatgtgtaaaatagggaagatcaaatagaacgtgacaactgtttattttattaccatgatcattgttctctttgagagtgtctgctttggaaatttcaaagaaattaatgcatatgattgcgtagctctagtttttcttaaaaaaataagcggctaggctctttatactattatgtcacagagtgtttgccttttacctgtgtatgtagctaggcataaacatttgtttgtgggtaaatacaaaaaaaaatccaatgtgtagaaactgcttataaatacataaaagttacataaatacataactgcttcaaataagcaagatttgaacataccttcacataagctttcccctaactgaaaagccatttggtataaccttatagaaattagatatagtggagatgtggaatgagctgctatcaagtcttgtttcgtgaaagcaaactgacacggtctccacagcaaacacgtccacagctttgcaattagtatctttataggaaggtcaatcagagttcattggccatatcttggaaaaaaaaggcatcagattttagtttaattatgtctatattttaggcatggattattgatcatttttgcagcagactaagtttaatgcatgtagttattttccttgattagtgattagtgttgttattttctatacaccactggcactgatagatgtgctccatgctttgcaatgcatcaaaattatcatatcgtgcctaactcatgctttgcacagatatcatttttttgtgttctggcactatctaaagaattgtctataaactaggaacaataagatcgcatcgtactattcttcacattaaaacatttcttacccccaaaattgatgtgcagggtgtggatcccactattcgagctgaagtttgggaatttcttcttggctgctatgccttgagtagtacctcagagtataggaggaaactaagagctgttagaaggtttgacactttcctgttttcagtaccaggataccttttttgtacaagcataagaccgtaagagcataaatgaattgcatttattatctagaataaaatcatgaatgttacagttatgtagtactccctccattccaatatataaggatttcaaggattcaaattttgtaccacaatataaggatttctgcactgattcccataatacccatcatttcagtgattcccaaaccaatcaaatgcatagaaagggaaaagaatcttttgacctaaccttggtattggctaaacaacctagaaatctttatattttggaaaggagggagtaggtattaatttgtttgttttttgtttattgtactaaaactgaacttctaggtaaatattcctatcctttacattttccttgtgttatttataaccatgtgtgcagaatggaaaatgatattaaaagtttaaaacaaatgtgttgctatgtttatctggagtaccaatctcaatctttttcaggcactcaaagtaacttgattagggtttagggtttaccccttttcattgtgctacctcctatacacattgttggggggatgaattggtggcatcagtactcatagtttgtctatgtaacatctacttgtgctgatgttgtatgatccatttggtttagatggcttgataagtaccccgtgcctgcacacaacaatatgacagattatatcaatacatctagggtagaggtaaatgaaagactgagattctagatattgcatacaattcctaggtatttgtggtcatggcctgtgggtgatatcgggttggatatgatccaccaaacctggagcagaaaatttctaagactagttgccagaatagaattctcttggaaatttaacagttccaaacagcctgttcacaaacccattatccattcactagcaggtgctggacagaaaatatgttgttcataggggtttgaacctgggacattaaattctgtagtacgtggtagccaacagtgccaatggctctttctttgtaatggaaggatgcgtattaaagaaattaagtagatgggttggcattgcacactaattagtaatgcaaatataccttagtttattgtgatctctgtaattataattgcatatttatattcctttttatgtctaactatcgaagcgtacctgtgctattacagataaacttattacgtcatatgttcatgttgaattgattggcgtgcgattagtcctttctgtttgcatctgcttgttttattcacttgtgaccaacaaatttataaccaacatcatgtatgccatccataccaattgttgtgcgagaaattctacgttttgcctttgttaccgattctactaattgttgctgatgaatgcgaattccgtgaaatgccatcgcacaagtgtttttattcctttgtttccatttctacggagcagggcaatcagtacagttctgaaattcttgctgagtgttctttcttttgaaagtttttacacctgtgggacaattatggaagcctgtaacctcgtttatttcttcgcttctatgcagggaaaaatatcaaattttagttagacagtgccagagcatgcacccaagcattggtacaggtgagcttgcttacgctgttggatcaaagctaatggatgtcaggactatgtcaaaagaaacccacattgcagaagaagttagcacaagtcaacaaacttcacaaaatacagctggcagtttagtagaagattcagattatggccccggtggtgcacagcagtcacaaaaaagggaaagctgtagtaaatcagctgaactagttggtttcaacgtacataatgatacctctctttatgattcttccaattttattgtgtcttctacagaagtgaataattgctcaaaagattctcaggattacaatgacatgggtgaaccaagatatgacactgagaccttcgatgattatccttctctacctgttacaaattttttctcaactgatggtgtgggcagcaatggagttgataaaaatcattgtagtttctcagttcctgaagatagattaaggcaccgtgatgaacgtatgcacagcttccaaatcaataataacatagatctcattatagagtcaaattcatgctccagtgatgtgtttagggctagcaacagtgattcagccatctttcactcagatgcatacaagcaggatagatggttagatgataatggctataacagggaagttatagattccttgaggatatctgatgcaccagaagcagattttgttgatggaaccaaatccaacagtgtggttgccagcaaagatcgagtctctgaatggctttggacactgcaccgaattggtatgctctattttttcttcacttcatcatgcaattacagtggtatcttgtgattatgttctaatttgcaaaacctattacagtggttgatgtggttagaacggatagtcatcttgatttctatggagaatcaagaaatatggctaggatgtcagatatacttgcagtttatgcatgggttgatccttccaccgggtattgccaaggtatatgcatatttcagtggcatctttttttacttcctttttggtttcttgatgtgtctaaatgggataagttgctaacaggtatgagtgatctactttcaccttttgttgttctctatgaggatgatgcagatgccttttggtgctttgagatgctactgagaaggatggtaattcacatatatttcaaattttgttgcctattagtttggtttctatgttactccatgcataatatgtgccctgttccacttcagcgtgaaaatttccagatggagggaccaacaggagttatgaagcagttgcaagcattgtggaagatcatggaaataactgatgtagaattatttgaacatttgtcaacaattggtgctgaaagccttcattttgctttccggatgctgctagtgctttttcgtcgagagctgtcctttgaggagtcacttagcatgtgggaggtgtggcatttgaagacacatgtattatcttttttcagttgttgttcttcgtaggaaagctctaatggatgtttgtttgtcagctggtgtaggtctaggggatgttggttaagccttttttatttcaaaaattgtattactagttaaatatttcaaatagtaaaatagggtacatcttcgatttaggttcaaaatcatcagaggtgtaggtagatggttcattacgattgtagttaatgtttgtgatatcatgtggcatgtgaactttatactccctcgggtcacaaatatttgacgtttaggacaagatgtggtcaaacttttaaaattttgaccgtcaataacagctcaaatgcgtagcttataaaaacacaaaaaaagatatgcggagatttgccttgcaaggtattagtgtcataatatgatacacttattagattttatagtcttattctgatataaaattgatggtcagtttcaaaagttttgaccaaatcttgttctaaacatcaaatatttatgatcggagggaacattacttataaaatgctcttcacactgcagtcttgatctgttaaccaaccgtgcttcttgctttcagatgatgtgggctgctgactttaatgaagatgtgattttacatttggaagagaattgtctggagccattgctggtagatatgaggaatgatttatcatgtgaggtgaaagaagagcaccgggtgaacagttacacaagaagaaagtccaaaagcaggaagccccatcatagaaatggtgaaatgcgtgtagcttgcaaccttggaatgaaacccaatacaagaaatcccctctgtggcttgtcaggagctactatttgggcaagacatcagcagatgccacatataagcacaaatgtgttagcaaagaatggagatgatgatctgcctatattctgcgtagcagcaatccttgtaatcaatcgccacaagataattagagaaactcgctcaatagatgatgcaatcaaggcaagtttaagtcacaacttcctttcatattgtttacaaacctcggatccatgaaattactaccaagagttacctatatttgcattagattttgtggaattcattttaggcaaaattaaaaatttgctcagacagtacaataacatgttatggccgatcatttctgcataaatgactattgattttgtcctctgctgaattgatgggtttaattagaggatgcttatttcattctgataactatcaatatttacaagttacggcaactgctaattaaaaatgatgcccagcctttctccctcttggaaaaaaagatgggtaaacctgtatatagtggtgatattgactctgctgagcagtcttccacttaaatgggaagagttaaggaaagtatagtcaggtttacttataatgcaacttattggcatattaatgcatgtttattgtttgcactcctgaagttgagttggtcaattttttccatagatgttcaatgataatatgctgaagatcaatgtaaaaagatgcgtacgcatggctatcaagctgaggaagaagtatatttacaaggtaaattgtgataagcatacatgagcaccatccatgtttttcaggtatatttacaaggtaagttctaatttggtcttgggatacagttattgaaggggggctcggaatgatgaaaaagtggaaactgaagttgagaaatcgccctggggaactagatgtttttcaaccatgaacttctcgtaattatgggtgatggaactttatatattcattagaagtccaaaaaaaatccgtatactcacggtatggattccctctttctgtttatgttttgttagagatggatgacgtacataatctgcttgtcttgtttcagggaatctgtacatatgcacagtatacttgaaaacaagagacgaagcggtggaaggataatagagaagaccgccatgttggtgtagcatcgatcgatgttgtcattgtttttgtggtgccagcccatctgccttggcactttccgtggtgatttctgataaaagtggagtactagttgttttttctttttgccaaacaatttgcgtcagctattggtggagagagaaggaatgaatgaggaatgtgtat</dnaseqindica>

External Link(s)

NCBI Gene:Os01g0100100, RefSeq:Os01g0100100