Difference between revisions of "Os11g0703900"
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===Function=== | ===Function=== | ||
| − | Hsp70 genes encode for a group of highly conserved chaperone proteins across the living systems encompassing bacteria, plants, and animals. | + | Heat shock proteins (heat shock protein, Hsp) are a class of resistance protein molecules playing an important role in the process of environmental stress[1-3]. |
| + | |||
| + | Hsp70 genes encode for a group of highly conserved chaperone proteins across the living systems encompassing bacteria, plants, and animals[4]. | ||
| + | |||
| + | Hsp70 can not only prevent proteins aggregation and help inactivated proteins refolding, but also assist the functions of transport and participate in the intracellular signal transduction, such as protein kinase C (protein kinase C, PKC) and protein phosphorylation activity (protein phosphatase)[5]. | ||
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| + | It is noted that Hsp70 may function as a negative feedback regulator of HSF activity[6-7].In this process, Hsp70 binds to denatured proteins and releases HSF leading to its activation during heat stress[6]. | ||
===Expression=== | ===Expression=== | ||
Revision as of 00:56, 3 June 2014
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Contents
Annotated Information
Function
Heat shock proteins (heat shock protein, Hsp) are a class of resistance protein molecules playing an important role in the process of environmental stress[1-3].
Hsp70 genes encode for a group of highly conserved chaperone proteins across the living systems encompassing bacteria, plants, and animals[4].
Hsp70 can not only prevent proteins aggregation and help inactivated proteins refolding, but also assist the functions of transport and participate in the intracellular signal transduction, such as protein kinase C (protein kinase C, PKC) and protein phosphorylation activity (protein phosphatase)[5].
It is noted that Hsp70 may function as a negative feedback regulator of HSF activity[6-7].In this process, Hsp70 binds to denatured proteins and releases HSF leading to its activation during heat stress[6].
Expression
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Evolution
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Labs working on this gene
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References
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Structured Information
| Gene Name |
Os11g0703900 |
|---|---|
| Description |
Heat shock protein 70 |
| Version |
NM_001075072.1 GI:115486792 GeneID:4351208 |
| Length |
4293 bp |
| Definition |
Oryza sativa Japonica Group Os11g0703900, 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 11:30612818..30617110 |
| Sequence Coding Region |
30612889..30613102,30615017..30616752 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008404:30612818..30617110 source=RiceChromosome11 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008404:30612818..30617110 source=RiceChromosome11 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggcgggcaagggcgagggtccggccatcggcatcgaccttggcacgacctactcgtgcgtgggcgtttggcagcacgaccgcgtggagatcatcgccaacgaccagggcaaccgcaccaccccctcctacgtcggcttcaccgactccgagaggctcatcggagatgctgccaagaaccaggtcgccatgaaccccatcaacaccgtctttgatgccaagcgtctcattggcaggaggtttagcgatgcttctgttcagagtgacattaagctctggcccttcaaggtgattgctggacctggtgacaagcctatgattgttgtccagtacaagggtgaggagaagcagtttgctgcagaagagatctcctccatggtcctcatcaagatgcgtgagattgctgaggcctaccttggcaccaccatcaagaatgccgttgtcactgttcctgcctacttcaatgactcccagaggcaggccaccaaggatgctggagtgattgctggtctcaatgtcatgcgtatcatcaacgagccgactgctgcagctattgcctatggtcttgataagaaggccaccagcgttggtgagaagaatgtcctcatctttgaccttggaggtggtacctttgatgtctccctccttaccattgaggagggtatctttgaggtcaaggccacagctggtgacacccatcttggtggtgaagattttgacaatcgtatggtcaaccactttgtgcaagaattcaagaggaagaacaagaaggatatcactggcaaccccagggctctcaggaggttgaggacagcttgtgagagggcaaagaggaccctgtcctccactgcccagaccaccattgagatcgattccctgtatgagggcatcgacttctactcaaccatcacccgtgccaggtttgaggagctcaacatggatctcttcaggaagtgtatggagcctgtggagaagtgcctcagggatgctaagatggacaagagctctgttcatgatgttgtccttgttggtggctccactaggatcccgagggtgcagcagctcctgcaggatttcttcaacggcaaggagctttgcaagaacatcaacccagatgaggctgttgcttatggtgctgctgtccaggctgccatcttgagtggtgagggcaacgagaaggtccaggacctcctcctgttggatgttacccctctctctctcggtttggagactgctggtggtgtcatgaccgttttgatcccaaggaacaccaccattcccaccaagaaggagcaggtcttctccacctactccgacaaccagcctggtgtgctcatccaggtttatgagggtgagaggaccaggacacgtgacaacaacctgctggggaagtttgagctctctggaatccctcctgctcccaggggtgttccacagatcactgtttgcttcgacattgatgccaatggtatcctgaacgtgtctgctgaggacaagaccaccgggcagaagaacaagatcaccattaccaacgacaagggcaggcttagcaaggaggagattgagaagatggtccaggaggccgagaagtacaagtcagaggatgaggagcacaagaagaaggtggagtccaagaacgcgctggagaactacgcctacaacatgcgcaacaccatcaaggatgagaagatcgcctcgaagctcccggcagcggacaagaagaagatcgaggatgccatcgaccaggccatccagtggctggacggcaaccagctcgctgaggctgatgagttcgatgacaagatgaaggagctggagggcatctgcaaccccatcatcgccaagatgtaccagggcgctggcgcggacatggccggcggcatggacgaggacgatgctcccccggctggcggcagcggtgctggccccaagatcgaggaggtcgactaa</cdnaseq> |
| Protein Sequence |
<aaseq>MAGKGEGPAIGIDLGTTYSCVGVWQHDRVEIIANDQGNRTTPSY VGFTDSERLIGDAAKNQVAMNPINTVFDAKRLIGRRFSDASVQSDIKLWPFKVIAGPG DKPMIVVQYKGEEKQFAAEEISSMVLIKMREIAEAYLGTTIKNAVVTVPAYFNDSQRQ ATKDAGVIAGLNVMRIINEPTAAAIAYGLDKKATSVGEKNVLIFDLGGGTFDVSLLTI EEGIFEVKATAGDTHLGGEDFDNRMVNHFVQEFKRKNKKDITGNPRALRRLRTACERA KRTLSSTAQTTIEIDSLYEGIDFYSTITRARFEELNMDLFRKCMEPVEKCLRDAKMDK SSVHDVVLVGGSTRIPRVQQLLQDFFNGKELCKNINPDEAVAYGAAVQAAILSGEGNE KVQDLLLLDVTPLSLGLETAGGVMTVLIPRNTTIPTKKEQVFSTYSDNQPGVLIQVYE GERTRTRDNNLLGKFELSGIPPAPRGVPQITVCFDIDANGILNVSAEDKTTGQKNKIT ITNDKGRLSKEEIEKMVQEAEKYKSEDEEHKKKVESKNALENYAYNMRNTIKDEKIAS KLPAADKKKIEDAIDQAIQWLDGNQLAEADEFDDKMKELEGICNPIIAKMYQGAGADM AGGMDEDDAPPAGGSGAGPKIEEVD</aaseq> |
| Gene Sequence |
<dnaseqindica>72..285#2200..3935#ctctcccactcttcctcctccccaaaccctagccgccgccgccggcgtactcgagagaaacatcagcatccatggcgggcaagggcgagggtccggccatcggcatcgaccttggcacgacctactcgtgcgtgggcgtttggcagcacgaccgcgtggagatcatcgccaacgaccagggcaaccgcaccaccccctcctacgtcggcttcaccgactccgagaggctcatcggagatgctgccaagaaccaggtcgccatgaaccccatcaacaccgtctttggtaactacttattccctgctcctcagtcctctctctttctctctctccccccttagatctcatctctaaggtcttcgtcgtcgtcgtatgctagatctactcttgcccagctcgttcagatctgttagatttgtgtgggatgctctaattaattactaccaacttagtagatctggaactcttttgacttgcagatcttgctccactcctgttgcattttgaatctgtgttgatgtgatttaagttgttggcagtgctttttgcatactatttgaatttgtggatggttagcagtcagtacactaggatttattactggatctggacagatatgctcgtttcaatcggctcgatttgctatgttgatagctaacatgttgtgcttgtcctactgccctggcgcaaatttgatccatgcattcttttcgttaaatgatttgtcaagtagtaatgcttgtttgaaaatgatattattattattattattattttaaataaatatagcctgaaacattcttagtttcgaggagaagtgatgatgtcttatccataccacatgtctgcatctcatatgatgattaatctacatcatgcactaccatctgatctcctctagctcatacagcttttaacaagttaggcgatagatgtttgctacaaacagtcaactggatttgctttcttgaaagaaaaaaaatgaaccgtgtagtttgcaacctgtgatgtaaattaacccatttactgaactacattgattatttcagtaaaatcaccatctttcggctgaggttgcatgcttagttattatatttttaccaatgatgattttgttatgtagccagatactgtactttcttatgccatttggtatctgactcattgtctacttttgtgactatgtgtctcgaaatatggcatataataagggggaacggatcttgcgacattgatggctcctgtatgagcctccaattactatatagccgtttacatgttcttatcatgttacttttccaaattagtgctgcacatcttgtctgtttgcaagtttgggttcattcatattgctgtgggcattttaatacatcttaactataatgtaaatttcttgtacatcgctaaaattttctgccttgattgagtagactcttagatgacatctatcttaccttatgcacttgattcgtatttctgttacaacattttgattacttgatgtagttcacacaagcatgacacatctctttgaaaaaaagatttcattttttaaagcaagcctaatgctttagggtgggagaagtgatgatacttaatccatacaacatttctgcatctcagatgatgatcaatctacatcatgcactaccatctgatctccccatcatacaattttttattttgttttgttggattatataactttaacatttgataaagtgccaacagatttttatacacaatttcttatagatattaccatgacagcttgcagcctgtgatgcaaaagtacccattaaactgaattacactgattattccaaacaaatcaccatctttcggctgaggttgcttgcttgtttaaaattatgaatgcttcttgcacaaccatttaggactttcggtagtttgtaatgccatttggtatctgacacatggtctgcgcttgtgactatttgtcttgaaatatggcataaaacaagggggaacggatcttgcgacattggtggttcctctatgatcctccaattactatatagctgtttacaatttgttaagttaggagcataccttttgctttgtcatcaaagtcttggttcctttgtatttctagttcagattcatttttcttcagcttttgaaacataaactcagtatatttttactgtaattgctgacattgagtcttctctgcagatgccaagcgtctcattggcaggaggtttagcgatgcttctgttcagagtgacattaagctctggcccttcaaggtgattgctggacctggtgacaagcctatgattgttgtccagtacaagggtgaggagaagcagtttgctgcagaagagatctcctccatggtcctcatcaagatgcgtgagattgctgaggcctaccttggcaccaccatcaagaatgccgttgtcactgttcctgcctacttcaatgactcccagaggcaggccaccaaggatgctggagtgattgctggtctcaatgtcatgcgtatcatcaacgagccgactgctgcagctattgcctatggtcttgataagaaggccaccagcgttggtgagaagaatgtcctcatctttgaccttggaggtggtacctttgatgtctccctccttaccattgaggagggtatctttgaggtcaaggccacagctggtgacacccatcttggtggtgaagattttgacaatcgtatggtcaaccactttgtgcaagaattcaagaggaagaacaagaaggatatcactggcaaccccagggctctcaggaggttgaggacagcttgtgagagggcaaagaggaccctgtcctccactgcccagaccaccattgagatcgattccctgtatgagggcatcgacttctactcaaccatcacccgtgccaggtttgaggagctcaacatggatctcttcaggaagtgtatggagcctgtggagaagtgcctcagggatgctaagatggacaagagctctgttcatgatgttgtccttgttggtggctccactaggatcccgagggtgcagcagctcctgcaggatttcttcaacggcaaggagctttgcaagaacatcaacccagatgaggctgttgcttatggtgctgctgtccaggctgccatcttgagtggtgagggcaacgagaaggtccaggacctcctcctgttggatgttacccctctctctctcggtttggagactgctggtggtgtcatgaccgttttgatcccaaggaacaccaccattcccaccaagaaggagcaggtcttctccacctactccgacaaccagcctggtgtgctcatccaggtttatgagggtgagaggaccaggacacgtgacaacaacctgctggggaagtttgagctctctggaatccctcctgctcccaggggtgttccacagatcactgtttgcttcgacattgatgccaatggtatcctgaacgtgtctgctgaggacaagaccaccgggcagaagaacaagatcaccattaccaacgacaagggcaggcttagcaaggaggagattgagaagatggtccaggaggccgagaagtacaagtcagaggatgaggagcacaagaagaaggtggagtccaagaacgcgctggagaactacgcctacaacatgcgcaacaccatcaaggatgagaagatcgcctcgaagctcccggcagcggacaagaagaagatcgaggatgccatcgaccaggccatccagtggctggacggcaaccagctcgctgaggctgatgagttcgatgacaagatgaaggagctggagggcatctgcaaccccatcatcgccaagatgtaccagggcgctggcgcggacatggccggcggcatggacgaggacgatgctcccccggctggcggcagcggtgctggccccaagatcgaggaggtcgactaagcgcgaaatttgctagtgatccgcgcttcaagttatcttattgcattattagtgtctcttttatgttgtgttaaaaaactttgctgctatgacttatgatgatacccttggtctgtttgggcagtccttttgaattgaagaactgcgttgggagctctatgagaactatgaattgcgtgagaaatttaattattgtggtgcttgcagcgcctattatttggtctctgtcccacgtttattatttgcatgtgcgcattgtttgctagcaattgctgttgtgcttctcagccaacatgtaaactgtttggattgtttctgatttttggatgcattttttaaagcggatagtgaaggacgg</dnaseqindica> |
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