Rims1 (Mus musculus) in pENTR223.1 (Gateway donor/master vector)

Explanation of Terms

Gene:
Gene Symbol:  Rims1
Gene Name:  regulating synaptic membrane exocytosis 1
Original Clone ID:
FLH481793.01X
Keyword:
None
Species:
Mus musculus
Type:
cDNA
Vector Name:
pENTR223.1
Format: 
CLOSED
Source:
The ORFeome Collaboration
Description:
None
Comments:
None
Mutation / Discrepancy:
No / No
Publications:
None
Authors:
The ORFeome Collaboration
MmCD00297474
Price: 
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AVAILABLE
No restriction
Special MTA: None
Insert sequence: 4392nts
Open reading frame: 35 to 4426

GTACAAAAAAGCAGAAGGGCCGTCAAGGCCCACCATGTCCTCGGCCGTGGGGCCCCGAGG
TCCTCGCCCACCCACGGTGCCTCCCCCTATGCAAGAACTGCCCGACCTGAGCCACCTGAC
CGAGGAGGAGAGGAACATTATCATGGCAGTGATGGACCGGCAGAAGGAAGAGGAGGAAAA
AGAAGAGGCCATGCTCAAGTGTGTTGTCAGGGACATGGCGAAGCCTGCTGCCTGCAAAAC
ACCAAGAAATGCTGAAAGCCAGCCCCATCAACCACCACTGAACATTTTCAGATGTGTCTG
TGTTCCCAGAAAGCCAAGCAGCGAAGAGGGAGGCCCAGACAGAAACTGGAGATTGCATCA
ACAGTTTGAAAGCTACAAGGAACAAGTGAGAAAAATCGGAGAGGAAGCCAGGCGTTACCA
GGGCGAGCACAAAGATGATGCCCCGACGTGTGGAATCTGTCATAAGACAAAGTTTGCTGA
TGGATGTGGCCATCTCTGCTCCTATTGTCGCACCAAGTTCTGTGCACGCTGTGGAGGCCG
AGTGTCTCTGCGATCGAACAATGAGGACAAAGTGGTTATGTGGGTATGCAATTTATGTCG
AAAGCAACAAGAGATATTAACGAAATCTGGAGCGTGGTTCTTCGGAAGTGGTCCTCAGCA
GCCCAGTCAAGATGGGACTCTGAGTGACACGGCTACAGGTGCTGGATCTGAGGTGCCAAG
AGAAAAGAAAGCTCGGCTCCAAGAGCGATCAAGGTCTCAGACGCCCTTGAGTACAGCAGC
TGTCTCTTCCCAAGACACTGCTTCCCATGGTGCACCACTGGACAGGAACAAAGGGGCGGA
GCCCTCACAGCAAGCCTTGGGTCCTGAACAGAAGCAGGCATCAAGGTCAAGAAGTGAGCC
ACCAAGGGAAAGGAAGAAGGCTCCAGGGCTTTCAGAGCAGAATGGCAAGGGAGGCCAGAA
GAGTGAGCGCAAACGTGTCCCCAAGTCTGTGGTGCAACCCGGGGAAGGGACCGCGGATGA
ACGGGAGAGGAAGGAGAGGCGGGAAACCCGCAGGCTGGAGAAAGGGCGCTCTCAGGACTA
CCCGGACCGGCTCGAGAAACGCGAGGATGGCAGGGTGGCTGAAGACGAAAAGCAGAGGAA
GGAGGAGGAGGGCGTGTCCACGCCGGAGTACACGAGCTGCGAGGACGTGGAGCTGGAGAG
CGAGAGCGTGAGCGAGAAAGGTGACTTGGACTACTGGTTGGATCCTGCCACGTGGCATAG
CAGGGAAACGTCGCCTATTAGTTCGCATCCTGTAACGTGGCAGCCATCTAAAGAGGGGGA
CCGATTAATCGGCCGTGTTATTCTTAACAAAAGAACAACCATGCCCAAAGAATCAGGTGC
ATTATTGGGTCTCAAGGTGGTTGGAGGAAAAATGACGGACTTAGGGCGTCTTGGTGCTTT
CATCACCAAAGTAAAGAAGGGTAGCCTGGCAGATGTTGTCGGACACCTAAGAGCAGGGGA
TGAAGTTCTAGAGTGGAATGGTAAACCCCTGCCGGGAGCAACAAACGAAGAAGTTTACAA
CATTATTTTAGAATCAAAATCAGAACCTCAAGTTGAAATTATTGTTTCAAGGCCTATTGG
TGACATCCCCAGGATCCCTGAGAGTTCCCACCCTCCTCTGGAGTCCAGTTCAAGTTCCTT
TGAATCTCAGAAGATGGAAAGGCCTTCCATTTCTGTTATTTCTCCAACCAGCCCTGGAGC
TCTGAAAGATGCCCCACAAGTCTTACCAGGGCAACTCTCAGTGAAGCTGTGGTATGATAA
GGTGGGGCACCAGCTGATTGTAAATGTTCTACAAGCAACAGATCTACCCCCTAGAGTAGA
TGGGCGTCCCAGAAATCCCTATGTAAAAATGTATTTTCTTCCAGATAGAAGCGACAAGAG
TAAAAGAAGAACCAAAACGGTAAAGAAACTTCTAGAGCCAAAATGGAATCAAACATTTGT
CTACTCACACGTACATCGTCGAGATTTTCGAGAGCGAATGTTAGAAATTACTGTGTGGGA
CCAGCCAAGAGTACAGGACGAGGAGAGTGAATTTCTAGGAGAGATCCTCATAGAATTGGA
AACAGCACTTTTAGATGATGAGCCCCATTGGTATAAACTGCAGACACATGATGAATCTTC
ACTACCTCTGCCTCAGCCATCACCGTTCATGCCCAGGCGGCATATCCACGGAGAAAGCTC
CAGCAAAAAGCTACAAAGATCTCAGCGAATCAGTGATAGTGACATCTCAGATTATGAGGT
TGATGATGGTATTGGCGTAGTGCCTCCAGTGGGTTATAGAGCTAGTGCTAGAGAGAGTAA
AGCCACCACGTTAACAGTGCCAGAGCAGCAAAGAACCACACATCACCGCTCACGTTCCGT
GTCTCCTCATCGCGGCGATGATCAGGGAAGGCCTCGTTCACGTTTACCAAATGTGCCATT
ACAGAGGAGCTTAGATGAAATCCATCCAACACGAAGGTCACGTTCTCCAACCCGACACCA
TGATGCCTCCCGAAGCCTGGCCGATCACAGATCACGACATGCGGAAAGTCAATATTCGTC
AGAGCCAGACAGTGAGCTTCTCATGCTGCCCAGAGCAAAACGAGGACGAAGTGCAGAATG
CCTACACATGACCAGTGAACTGCAGCCCTCTCTTGACAGGGCTAGGAGTGCTAGTACCAA
CTGCTTGAGACCAGATACTAGTTTGCATTCACCAGAACGAGAAAGGGGTAGATGGTCCCC
CTCCCTAGCTAGGAGGCGACCTGCTAGCCCCAGGATTCAAATCCAGCATGCGTCTCCGGA
GAATGACAGGCACTCCAGAAAGTCTGAAAGATCTAGCATCCAAAAACAGTCTAGGAAAGG
CACAGCCTCTGATGCAGACAGGGTTCTCCCACCATGCCTTTCTAGAAGGGGATACGCAAT
CCCAAGAGCAACCGATCAACCGGTCATTAGGGGAAAGCATACCACTCGCTCCCGGTCGAG
CGAGCACTCTAGTATCAGAACCCTGTGTTCTATGCACCACCTTGCCCCCGGAGGGTCAGC
GCCGCCTTCTCCGCTTCTGACAAGAACGCACCGACAAGGAAGCCCCACCCAGTCACCTCC
AGCTGACACATCCTTTGGCAGTCGCCGCGGAAGACAGCTCCCACAGGTGCCGGTCCGAAG
CGGCAGTATAGAACAAGCGAGCTTAGTAGTGGAGGAACGAACGAGACAGATGAAAATGAA
GGTACACCGATTTAAGCAGACAACAGGGTCTGGGTCTAGTCAAGAACTTGACCACGAGCA
ATACTCCAAGTACAACATACATAAAGATCAGTACAGAAGCTGTGATAACGCGTCCGCCAA
GTCATCAGATAGTGATGTCAGTGATGTGTCCGCCATTTCCAGAGCCAGCAGCACCTCACG
CCTCAGCAGCACAAGCTTTATGTCAGAGCAGTCTGAGCGCCCCAGGGGCAGGATCAGTTC
ATTTACCCCCAAAATGCAAGGCAGACGGATGGGGACTTCAGGAAGAGCCATCATCAAGAG
CACCAGTGTAAGTGGAGAGATATATACACTGGAGCACAATGACGGCAGCCAGTCCGACAC
GGCCGTGGGTACCGTTGGAGCTGGTGGAAAGAAGCGGAGGTCCAGCCTGAGTGCCAAAGT
GGTAGCCATTGTGTCTCGAAGAAGCAGAAGCACATCACAGCTCAGCCAGACAGAGTCCGG
CCACAAGAAGTTAAAAAGCACCATTCAGAGGAGTACGGAAACGGGAATGGCGGCTGAAAT
GCGGAAGATGGTGAGACAGCCCAGCCGGGAGTCCACGGATGGCAGCATCAACAGTTATAG
CTCAGAAGGAAACTTAATATTTCCTGGAGTTCGCGTGGGACCTGACAGTCAGTTCAGTGA
TTTCCTTGATGGACTGGGGCCAGCCCAGCTTGTCGGCCGCCAAACCCTAGCCACCCCAGC
CATGGGCGATATCCAAATCGGGATGGAGGATAAGAAGGGTCAGTTGGAGGTTGAGGTTAT
CAGAGCCCGGAGCCTTACACAAAAACCTGGCTCCAAATCTACACCTGCTCCCTATGTGAA
AGTTTATCTTTTGGAAAATGGAGCCTGTATTGCCAAAAAGAAGACAAGAATTGCACGGAA
AACTCTCGATCCCTTGTATCAGCAGTCCCTGGTTTTTGATGAAAGTCCACAGGGTAAAGT
TCTTCAGGTGATTGTCTGGGGTGACTATGGAAGAATGGACCACAAATGCTTTATGGGTGT
GGCTCAAATCTTGTTGGAAGAACTTGATCTGTCCAGCATGGTGATTGGATGGTATAAATT
GTTCCCTCCATCCTCCCTGGTGGATCCCACACTCACTCCCCTGACCCGCCGGGCTTCCCA
ATCATCACTGGAAAGTTCGTCTGGGCCTCCCTGCATCCGGTCATAGGGCCTCATGGGCCC
AGCTTTCTTGTAC

Protein sequence predicted based on nucleotide sequence

MSSAVGPRGPRPPTVPPPMQELPDLSHLTEEERNIIMAVMDRQKEEEEKEEAMLKCVVRD
MAKPAACKTPRNAESQPHQPPLNIFRCVCVPRKPSSEEGGPDRNWRLHQQFESYKEQVRK
IGEEARRYQGEHKDDAPTCGICHKTKFADGCGHLCSYCRTKFCARCGGRVSLRSNNEDKV
VMWVCNLCRKQQEILTKSGAWFFGSGPQQPSQDGTLSDTATGAGSEVPREKKARLQERSR
SQTPLSTAAVSSQDTASHGAPLDRNKGAEPSQQALGPEQKQASRSRSEPPRERKKAPGLS
EQNGKGGQKSERKRVPKSVVQPGEGTADERERKERRETRRLEKGRSQDYPDRLEKREDGR
VAEDEKQRKEEEGVSTPEYTSCEDVELESESVSEKGDLDYWLDPATWHSRETSPISSHPV
TWQPSKEGDRLIGRVILNKRTTMPKESGALLGLKVVGGKMTDLGRLGAFITKVKKGSLAD
VVGHLRAGDEVLEWNGKPLPGATNEEVYNIILESKSEPQVEIIVSRPIGDIPRIPESSHP
PLESSSSSFESQKMERPSISVISPTSPGALKDAPQVLPGQLSVKLWYDKVGHQLIVNVLQ
ATDLPPRVDGRPRNPYVKMYFLPDRSDKSKRRTKTVKKLLEPKWNQTFVYSHVHRRDFRE
RMLEITVWDQPRVQDEESEFLGEILIELETALLDDEPHWYKLQTHDESSLPLPQPSPFMP
RRHIHGESSSKKLQRSQRISDSDISDYEVDDGIGVVPPVGYRASARESKATTLTVPEQQR
TTHHRSRSVSPHRGDDQGRPRSRLPNVPLQRSLDEIHPTRRSRSPTRHHDASRSLADHRS
RHAESQYSSEPDSELLMLPRAKRGRSAECLHMTSELQPSLDRARSASTNCLRPDTSLHSP
ERERGRWSPSLARRRPASPRIQIQHASPENDRHSRKSERSSIQKQSRKGTASDADRVLPP
CLSRRGYAIPRATDQPVIRGKHTTRSRSSEHSSIRTLCSMHHLAPGGSAPPSPLLTRTHR
QGSPTQSPPADTSFGSRRGRQLPQVPVRSGSIEQASLVVEERTRQMKMKVHRFKQTTGSG
SSQELDHEQYSKYNIHKDQYRSCDNASAKSSDSDVSDVSAISRASSTSRLSSTSFMSEQS
ERPRGRISSFTPKMQGRRMGTSGRAIIKSTSVSGEIYTLEHNDGSQSDTAVGTVGAGGKK
RRSSLSAKVVAIVSRRSRSTSQLSQTESGHKKLKSTIQRSTETGMAAEMRKMVRQPSRES
TDGSINSYSSEGNLIFPGVRVGPDSQFSDFLDGLGPAQLVGRQTLATPAMGDIQIGMEDK
KGQLEVEVIRARSLTQKPGSKSTPAPYVKVYLLENGACIAKKKTRIARKTLDPLYQQSLV
FDESPQGKVLQVIVWGDYGRMDHKCFMGVAQILLEELDLSSMVIGWYKLFPPSSLVDPTL
TPLTRRASQSSLESSSGPPCIRS*

Coding Sequence Details

Insert Sequence Verified?:
Y
Verification Method:
Sequence Verification
Reference Sequence Annotations:
Start on reference sequence 1
End on reference sequence 4392
Mutations:
None
Discrepancy:
None
5' Linker Sequence:
None
3' Linker Sequence:
None

Recommended Growth Condition:

Distributed in bacterial strain:
DH5-alpha T1 phage resistant
Antibiotic Selection:
Host Type:  bacterial    Marker:  spectinomycin
Bacterial Selection Condition: 100 ug/mL spectinomycin
Growth Condition: Growth at 37 degrees C in LB supplemented with 100 ug/mL spectinomycin.
Comments: None
Protein Expression Results:
None
Recommended expression in:
Not Applicable