Carg24571-RA (mRNA) Silver-seed gourd (SMH-JMG-627) v2

Overview
NameCarg24571-RA
TypemRNA
OrganismCucurbita argyrosperma subsp. argyrosperma cv. SMH-JMG-627 (Silver-seed gourd (SMH-JMG-627) v2)
DescriptionBAG family molecular chaperone regulator 7-like
LocationCarg_Chr19: 2186579 .. 2192525 (+)
Sequence length2092
RNA-Seq ExpressionCarg24571-RA
SyntenyCarg24571-RA
Sequences
The following sequences are available for this feature:

Gene sequence (with intron)

Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
CCAAAAAGTACTTACATTCAACTGACATTTACGAATTTCTCTCCCTCCCTCGATCCTTTCAAACCGTTGTCTTGTTCTTTCTGCGCCTGAGTTGAAGCCCACCATTTCAGACTGTCCACCGAAAGCAACGCGCCGTCGTGCTTAACTTTCAGAGGCGTTTCCCTTACGCTTCGCTTTCTCTTCCACTCAGCTTCCTCAGCTCTCACCGATTCTTCTGACCTATTGAAACCATGAGCAGATTCAGCAGATTCGAGCTGATTGACCGCTACTACTCTCACTGTCCTTCTCTTCTACTCACCGAGGCTGAGACCTCCATTGTCCTCCCCAAACCTCTCGCATTCCCCTTCCATTCCTTTGTTGAAGAAGTGGATGACTTCGATTTCGCCTTCGACTTGTTGAGTCATCGGCGTGTTCGACCTTCCGCGTTTGATGTCTTCGATTCCTTCGCCGATCTGGTTCGGATCGATGAGGCGCCGTTGGTTTCGTCTTACCGGCGGATTCGGAGAGTTGAGAAATCGAGAGATGAGGTTTTGTTGCAGAAGTTGAGCGATCGAGTTAGTGAGCTCGAGGCGCGGTTTGATCGGTTGAGTAGAGCGAGGGTTAGTGGTTATGGTGATCGGAAGTACTCGTTTACGAAGGAAATTAAAGGAGTGGAGAAGAATAGCGTCGATCGGAAGTATAAGCTGGTAGCTGAGATCAAAGATGGGAAGAAGATCAAGGAGGGCAACAATGGTGGAGTTTTGCAGAACTACAAGTGGAGTGCTGAGATTAAAGGGAAGAACGAGAGAGATCCAATCAGGAAATACACTGTGGAGGTTTCAACTGGAAATGGAAACGAGAGTACAGAAAAGAAGGATGAGAAGAAAAAGAAGGGGAAGAAAGTCGGGAATGAGACGCGTGTGGTTGAGATTGACGACACTGAAGATCAAGGAGCTGTTGTCTTAAGACAGGTATCGACATTAATTGATAAGTTTTTCATAATAGTTCCAAAATCTGGTGGTATTCGTAGAATTTTATCGTTGTTTCTCTTTCTTGTTTGTTTTTCTGCCTTGGAAATTGGTAATTCTTATATGAACAAGATTGATGAATTGCTTGAGCTTGGATTGCCTTTTCAATGGACGCTTAAAACTAATGAAGGGATTCGTTTCCTGTAAAATCATATTGCAAGGAGCAAATACTCGATCAATTTGAAGAGATATAGATCTGTTTCTGTAGGTTGAATTCAAAAGCTTTACTGAAAGGAACATCCTTTTTTTTGGCCAGTTACTTCAAGTATATAATAGAGAAGAAAAGGTGGGAAGTTTTTGTGCCTTGAAAACGTGGTAGAGGATGGAGTTTGTTAGCCTCTTCCAGACCCCACTTATTATTGATTAGGTAAATAGTTTCTGATTGTACCCGATCCTTTCTTATCTGGCTATTTGAAAACTCTCTTGAAATGCCCCAGCTAACGATCGTATCTGGCTATTTGAAAACTCTCTTGAAATGCCCCAGCTAACTACTCGCTTAAGTGTCGAATGGTTTTTTGAGTGCATTTAATCAATCGATCCTTGGATTACGTGTGTAGGATGACTCCCCTCTGGTGAAGTGAAGGGATCATTTTCAAAAGCCGAAAGCAAAATTCCAGTCAAAGAAAACGGACAAGCCAAAGGGCCGGAAAAAGCGAAAAAAAAAAAAAAAAAAGTCTTTAATATGCAACTTTCTAAATATTTAATGAACTCAGCTCCATGTTTAGTTTTCTAAGCTTGCAGTTTCAACTTAGTCGATCATTAAAAATGTTGCAGCTAAGTGCATATACTTATAAAGGGTATTTCTCCTAAGGTTTTTAAAACGCATATGCTAGAGAGAGGCTTCCACACCCTTATAAAGGGTGTTTCTTCTCTTCCCCAACCGATGTGGAATCTCACAATCCACCCTCCCTATGGGGCCAGAGTCCTCGCTAGCACTTGTTCCCTTCTCCAATCAATGTGGGACCTCCCCAATCCACCCTCCTTAGAGACCCAGCGTCCTTGCTGGCACACCGCCTCGTGTCCAATCCCCTTCGGGGCTCAGCCTCCTCGCTGGCACATCGCCCAGTATCTGGCTCTGATACTATTTGTAACAGCTCAAGCCCACCATTAGCAGATATTGTCCTCTTTGGGCTTTCCCAAGGAGAGGTTTCCACACCCTTATAAAGGGTGTTCCATTCTACTCGCCAACCGTCCTGTCTCATTTAGTTTTTCAATTCAGAATTCTATTGTCAAGTTTTACTGTTACAGGAAATATATAGGGAACTTATGAAATGTATTTTTGTGGTGCAAGGCATTTGCGAAGAGAACTAGAGTTGTGGAGAATAAGAAGGGTAAGAAGAAGGAGTTGTCTCCTCAAGAAGCAGCTCTTATCATTCAGTTAAGTTTCAGAGAATACTTAATTCACAGGTCAAAGGTTCTCCGTGCTCTTAGAGATCTGTCAATTGCCAAGACAAAGTTGAAGGAGATCAGAGAATCCTTCAATAACTTTGCTTACTGTCAGCGGCTAGCTCGGGATGCAGAGGAGCGCCAGAGGTTCACTGAAAAAATAATTGTGTTGCTCCTCACTGTCGATGCTATTGAGGTGAATATCTCTCTCTTCTTTCTACTAGTAAATTAGCACGTGAAGTATATGTTTGTTAATATATTATATTATAACTATATTAATCTTAATTCCTTTTCAAATGTTGACTTTTGTTCTACAAAATGATATATATTTTTAACGTGTAAGACGTTTCATTATCCTGTTATTACAATGATCACAATTGTTGGTGTTAGTGGGTATAATCCTACATTAAAGAATAATCATGTATTTCTCAGCATGTAGGAGTACCCTCATTTCTTTTTATAGACCTTGTATACTATTATTTGATTTCTCTTCGTGTTTTGTTATTTAGAACAACGTTTTTTATTCAAAGAGTAATGCGCCTTTTAAGATCCCTGTAGTCTTGTTCTTTGCTTTAGATTTCAATAGTCCTAAATTAATTGTTTTCTTGACAGTTTGACTTGATCGTAATCTCTCACTTGAGTATTAACCAGCATATTATCTTCCTTCTTTCCTTGAAAGAAACTACATCGCTTACTTCATGTAGAGTATTTCTTTGGTTCATCTGTCTATTTCTTTGTTTCATCTGTCTGTTTTAGTTTCATGTTCTTTGATTTGTTCTTTCAAATGTTTTGACCGATGTTGCTCAACTTGTTATATACCCTGTTTCCTTGTTGTATCATATGGATTTCTTACTATTCATACTTTTAAGTTAGATTCCTTCCTGCAGCATCAATTGTTTTTTAAGGTAAAAATACTTGTATCGTTTATGTGTTTCTTATTTTGTTTCGATCTAACAAAGGATCGAAAATGAAATGTTCAAACAAGCAAAGGTTTGCTCTCTCCCCTCTCCTCTTTCTATTCTCCGAACCTAGCGTTCATCCATTCTTAGCCTTCATCCATCTTAGGGTTCATCCATTTTAGCCTTCTTATGAATGAAAATTTTAGTTTTATTTGAGGCTCTTGTAGAATATAAGGCTTTTTAGAAGCTGTAGTGTCTGAAAGGATTTCTTTTTCATCAATCCTTTTGGCTTGGATCTTTTCAAGATTGGAAAAAAAAAAAAAAAAAATGGTTCTAGCCTTTTCTCCATTGTTGTTTATCACAAGCAACTTCTTGGTTTGAGGAAGTTAGTTGACGTTATGCAGTATCCATTAACATCTCACTTCTTTAGACATGCTGAGTGAGTTTGAGATCTTTCGGTTAAGTAAGAAGGTGAATCGTTTTTGTTGGATTTTCACCTTATTCTATGTCTCTAGATCTTTCAACTCAACGTCATTAGATCAAAAAAATAAAAGATTTTGAAGTTTGGATTAGAAAGAAAGGAAAAAGAAGTAGTCTTTACAAATTTTAGTGATTGATTTTTGGATTCCCAACAGTTTGCTCATTATAAATGGAAGGATGTTAAGGAAACATTAGAAAAGTATCTTCACGGTTTGGTGGTCATCGGTCCTTTTATGAGCTGTAAGGCATTGTTGTAAGTAGAAGAGCGGTAACACAAAAGTTTTGCAATGAAAAATGGATAACTTTTGAAACTTGCATTTGAAAATTGAAAAGTGGTCATGAGATGAGCACTCTCATCTAGAGTTTATCGAAGGTTATGGAGGATGAGTTTCAGTCACAAACTTTTTCTTTTCCTTTTTTCTCTCCTTTTCGAGTTTATACCCTTTGAGTTAAAACTATTTTAATTTATTTTATATTTAAACTAAATAAAAAGAGTTTTCATCAAATTCAAGAAATTGAGGCATTAGGCTTCCCAGGAGAAGTTCACAGTTTGGTTTGGGTCGGTTTGATATTTGACTTCCGAAGAAAACCTGCTTCGTAAAATCGATCCAAATGATTTTAAAACTGTTTGCATTCTGTTTCATTTACGGCTTCTCTGGTCTGGTTGTCAAATAGTTGTTTTATGGTGAAGGGAGGTGCTCTTCCTTCCTCCACGTCGTGATACTGGTTGTTGTAACAGCTCACCGCTAGCAGATATTGTCTTCTTTGGGCTTGTCTTTAAGGTTTTTAAAACGCGTCTGCTAGGGATAGGTTTCTACACCCTTATAAAGAATATTTCGTTCTCCTCTCCAACTGATGTGGGATCTTACCGTTGTCGTTTGGCTCTCTGCTTTATTTGCTATTTTGCAATTTAATTGACTTGAGAGAAGTAAGAGATTTTTAATGATATTGAGAAGTCCTGGGGAGAGGTTTGGTCTTCTGTTAAATTTGTTGCTTCCTTTTGGGCATCTATTTCTAAAGAATTTGTAACCATCTTTAGTTTTTGTTTTATTTGGATTGAAGTCGCTGCTTATATTTTATTACCATTATATACATATATATATATATATATCTTGTAGCTAGCTTAGTTTCTAGGCTCTTGTTTTAATTACAAGTTCCAGTTGCGTCATTCTAGGAGTCGGTCATATGTTTCTTCAAGCACAATCTAAAACTTTTCTTGTCAAACATGAAAGCTTATATACTTATTCAGTTGATTGCGAGATAAATAAACAATGACCTGAGACATACAAATGTAAGGGATTGATACATTGCATTTCTTTTGTAGGGAGTTGATCTGATGGTGCGAACTTCAAAGAGGTCAATGGTAATCGAGCTAGAAGCCATGCTTGAGGTGGTCGATCCCCAACCTGTTAAAAGATCGATTTCCTTTCGGAGAAGAACGTTCGATATGCCTAGTGGAAGCATCAATAAGGAAATTGCAGCTGGTGTAGCCCAGGTAGTCGAGTTGATCGATCAAGCAGAGAACAGTGTCAATGCTCATGAGGCCTCTGAATAAAGAGACGTGGTTTCTCATACTACTGCCTCTTTCGAGTTTCGAGTAACGGTTCCTGTAGAAGATGGAGCGGCGGCCTTACACCTTCGGTATGTTTTACAGAGCTGAGCTTTTGATTATGCAGTAACAACGTTCATGTAGAAGATGAAGTGTTTATGCTTGTGTTATGTCCAAACTATATTTTTACCTAATCTTTGCTATTTGGATTGATATCTATCTATGTCATATGAAACCTTTGGACTGCTGTGTTTTACTGCAATTTCTTTCCCATTTTCTTCTATTTCAACTTCCATGGCATCTTGATCATGACTGCAGCAATGGAGAATAGCTATTTAAGTTGCTCAAAAGATGGCACATAGCCAACTTGGAGAAGTTCGTGAAGGACTTGATCACGAACATAGAACATCCATTTCGACATATTTTTTTTCGAGAATGAAACCCGAGATGACCAATTTGGACACTGATATCATCATACCAAAGTATAAGGGTTGCAATAGGCCTAAACTCAATTTCACGAAAGAGTTTATGTAACCAGATATTTCAGCCATTCATGAATATAATATAGATTTGAGTCGAACATTATGAATAAAATGAGACTTAGCGACTATAGGTTAGTAGAAATC

mRNA sequence

CCAAAAAGTACTTACATTCAACTGACATTTACGAATTTCTCTCCCTCCCTCGATCCTTTCAAACCGTTGTCTTGTTCTTTCTGCGCCTGAGTTGAAGCCCACCATTTCAGACTGTCCACCGAAAGCAACGCGCCGTCGTGCTTAACTTTCAGAGGCGTTTCCCTTACGCTTCGCTTTCTCTTCCACTCAGCTTCCTCAGCTCTCACCGATTCTTCTGACCTATTGAAACCATGAGCAGATTCAGCAGATTCGAGCTGATTGACCGCTACTACTCTCACTGTCCTTCTCTTCTACTCACCGAGGCTGAGACCTCCATTGTCCTCCCCAAACCTCTCGCATTCCCCTTCCATTCCTTTGTTGAAGAAGTGGATGACTTCGATTTCGCCTTCGACTTGTTGAGTCATCGGCGTGTTCGACCTTCCGCGTTTGATGTCTTCGATTCCTTCGCCGATCTGGTTCGGATCGATGAGGCGCCGTTGGTTTCGTCTTACCGGCGGATTCGGAGAGTTGAGAAATCGAGAGATGAGGTTTTGTTGCAGAAGTTGAGCGATCGAGTTAGTGAGCTCGAGGCGCGGTTTGATCGGTTGAGTAGAGCGAGGGTTAGTGGTTATGGTGATCGGAAGTACTCGTTTACGAAGGAAATTAAAGGAGTGGAGAAGAATAGCGTCGATCGGAAGTATAAGCTGGTAGCTGAGATCAAAGATGGGAAGAAGATCAAGGAGGGCAACAATGGTGGAGTTTTGCAGAACTACAAGTGGAGTGCTGAGATTAAAGGGAAGAACGAGAGAGATCCAATCAGGAAATACACTGTGGAGGTTTCAACTGGAAATGGAAACGAGAGTACAGAAAAGAAGGATGAGAAGAAAAAGAAGGGGAAGAAAGTCGGGAATGAGACGCGTGTGGTTGAGATTGACGACACTGAAGATCAAGGAGCTGTTGTCTTAAGACAGGCATTTGCGAAGAGAACTAGAGTTGTGGAGAATAAGAAGGGTAAGAAGAAGGAGTTGTCTCCTCAAGAAGCAGCTCTTATCATTCAGTTAAGTTTCAGAGAATACTTAATTCACAGGTCAAAGGTTCTCCGTGCTCTTAGAGATCTGTCAATTGCCAAGACAAAGTTGAAGGAGATCAGAGAATCCTTCAATAACTTTGCTTACTGTCAGCGGCTAGCTCGGGATGCAGAGGAGCGCCAGAGGTTCACTGAAAAAATAATTGTGTTGCTCCTCACTGTCGATGCTATTGAGGGAGTTGATCTGATGGTGCGAACTTCAAAGAGGTCAATGGTAATCGAGCTAGAAGCCATGCTTGAGGTGGTCGATCCCCAACCTGTTAAAAGATCGATTTCCTTTCGGAGAAGAACGTTCGATATGCCTAGTGGAAGCATCAATAAGGAAATTGCAGCTGGTGTAGCCCAGGTAGTCGAGTTGATCGATCAAGCAGAGAACAGTGTCAATGCTCATGAGGCCTCTGAATAAAGAGACGTGGTTTCTCATACTACTGCCTCTTTCGAGTTTCGAGTAACGGTTCCTGTAGAAGATGGAGCGGCGGCCTTACACCTTCGGTATGTTTTACAGAGCTGAGCTTTTGATTATGCAGTAACAACGTTCATGTAGAAGATGAAGTGTTTATGCTTGTGTTATGTCCAAACTATATTTTTACCTAATCTTTGCTATTTGGATTGATATCTATCTATGTCATATGAAACCTTTGGACTGCTGTGTTTTACTGCAATTTCTTTCCCATTTTCTTCTATTTCAACTTCCATGGCATCTTGATCATGACTGCAGCAATGGAGAATAGCTATTTAAGTTGCTCAAAAGATGGCACATAGCCAACTTGGAGAAGTTCGTGAAGGACTTGATCACGAACATAGAACATCCATTTCGACATATTTTTTTTCGAGAATGAAACCCGAGATGACCAATTTGGACACTGATATCATCATACCAAAGTATAAGGGTTGCAATAGGCCTAAACTCAATTTCACGAAAGAGTTTATGTAACCAGATATTTCAGCCATTCATGAATATAATATAGATTTGAGTCGAACATTATGAATAAAATGAGACTTAGCGACTATAGGTTAGTAGAAATC

Coding sequence (CDS)

ATGAGCAGATTCAGCAGATTCGAGCTGATTGACCGCTACTACTCTCACTGTCCTTCTCTTCTACTCACCGAGGCTGAGACCTCCATTGTCCTCCCCAAACCTCTCGCATTCCCCTTCCATTCCTTTGTTGAAGAAGTGGATGACTTCGATTTCGCCTTCGACTTGTTGAGTCATCGGCGTGTTCGACCTTCCGCGTTTGATGTCTTCGATTCCTTCGCCGATCTGGTTCGGATCGATGAGGCGCCGTTGGTTTCGTCTTACCGGCGGATTCGGAGAGTTGAGAAATCGAGAGATGAGGTTTTGTTGCAGAAGTTGAGCGATCGAGTTAGTGAGCTCGAGGCGCGGTTTGATCGGTTGAGTAGAGCGAGGGTTAGTGGTTATGGTGATCGGAAGTACTCGTTTACGAAGGAAATTAAAGGAGTGGAGAAGAATAGCGTCGATCGGAAGTATAAGCTGGTAGCTGAGATCAAAGATGGGAAGAAGATCAAGGAGGGCAACAATGGTGGAGTTTTGCAGAACTACAAGTGGAGTGCTGAGATTAAAGGGAAGAACGAGAGAGATCCAATCAGGAAATACACTGTGGAGGTTTCAACTGGAAATGGAAACGAGAGTACAGAAAAGAAGGATGAGAAGAAAAAGAAGGGGAAGAAAGTCGGGAATGAGACGCGTGTGGTTGAGATTGACGACACTGAAGATCAAGGAGCTGTTGTCTTAAGACAGGCATTTGCGAAGAGAACTAGAGTTGTGGAGAATAAGAAGGGTAAGAAGAAGGAGTTGTCTCCTCAAGAAGCAGCTCTTATCATTCAGTTAAGTTTCAGAGAATACTTAATTCACAGGTCAAAGGTTCTCCGTGCTCTTAGAGATCTGTCAATTGCCAAGACAAAGTTGAAGGAGATCAGAGAATCCTTCAATAACTTTGCTTACTGTCAGCGGCTAGCTCGGGATGCAGAGGAGCGCCAGAGGTTCACTGAAAAAATAATTGTGTTGCTCCTCACTGTCGATGCTATTGAGGGAGTTGATCTGATGGTGCGAACTTCAAAGAGGTCAATGGTAATCGAGCTAGAAGCCATGCTTGAGGTGGTCGATCCCCAACCTGTTAAAAGATCGATTTCCTTTCGGAGAAGAACGTTCGATATGCCTAGTGGAAGCATCAATAAGGAAATTGCAGCTGGTGTAGCCCAGGTAGTCGAGTTGATCGATCAAGCAGAGAACAGTGTCAATGCTCATGAGGCCTCTGAATAA

Protein sequence

MSRFSRFELIDRYYSHCPSLLLTEAETSIVLPKPLAFPFHSFVEEVDDFDFAFDLLSHRRVRPSAFDVFDSFADLVRIDEAPLVSSYRRIRRVEKSRDEVLLQKLSDRVSELEARFDRLSRARVSGYGDRKYSFTKEIKGVEKNSVDRKYKLVAEIKDGKKIKEGNNGGVLQNYKWSAEIKGKNERDPIRKYTVEVSTGNGNESTEKKDEKKKKGKKVGNETRVVEIDDTEDQGAVVLRQAFAKRTRVVENKKGKKKELSPQEAALIIQLSFREYLIHRSKVLRALRDLSIAKTKLKEIRESFNNFAYCQRLARDAEERQRFTEKIIVLLLTVDAIEGVDLMVRTSKRSMVIELEAMLEVVDPQPVKRSISFRRRTFDMPSGSINKEIAAGVAQVVELIDQAENSVNAHEASE
Homology
The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
XP_022963804.12.5e-220100.00BAG family molecular chaperone regulator 7-like [Cucurbita moschata] >KAG6571693... [more]
XP_023554328.12.7e-21999.52BAG family molecular chaperone regulator 7-like [Cucurbita pepo subsp. pepo][more]
XP_022967597.11.7e-21698.06BAG family molecular chaperone regulator 7-like [Cucurbita maxima][more]
XP_038888291.14.1e-19186.20BAG family molecular chaperone regulator 7 [Benincasa hispida][more]
XP_008455225.15.3e-19186.89PREDICTED: BAG family molecular chaperone regulator 7 [Cucumis melo] >KAA0031498... [more]
Match NameE-valueIdentityDescription
Q9LVA01.6e-8144.71BAG family molecular chaperone regulator 7 OS=Arabidopsis thaliana OX=3702 GN=BA... [more]
Q9LIB33.2e-0532.26BAG family molecular chaperone regulator 8, chloroplastic OS=Arabidopsis thalian... [more]
Match NameE-valueIdentityDescription
A0A6J1HL971.2e-220100.00BAG family molecular chaperone regulator 7-like OS=Cucurbita moschata OX=3662 GN... [more]
A0A6J1HR938.0e-21798.06BAG family molecular chaperone regulator 7-like OS=Cucurbita maxima OX=3661 GN=L... [more]
A0A5A7SLK32.6e-19186.89BAG family molecular chaperone regulator 7 OS=Cucumis melo var. makuwa OX=119469... [more]
A0A1S3C0F02.6e-19186.89BAG family molecular chaperone regulator 7 OS=Cucumis melo OX=3656 GN=LOC1034954... [more]
A0A0A0K3Z07.5e-19185.92BAG domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_7G060190 PE=4 SV... [more]
Match NameE-valueIdentityDescription
AT5G62390.11.1e-8244.71BCL-2-associated athanogene 7 [more]
AT3G29310.12.3e-0632.26calmodulin-binding protein-related [more]
AT2G46240.11.6e-0422.62BCL-2-associated athanogene 6 [more]
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (SMH-JMG-627) v2
Date Performed: 2021-10-25
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
NoneNo IPR availableCOILSCoilCoilcoord: 95..122
NoneNo IPR availableMOBIDB_LITEmobidb-litedisorder_predictioncoord: 193..219
NoneNo IPR availableMOBIDB_LITEmobidb-litedisorder_predictioncoord: 202..219
NoneNo IPR availablePANTHERPTHR33322:SF3BAG FAMILY MOLECULAR CHAPERONE REGULATOR 7coord: 1..410
IPR040400BAG family molecular chaperone regulator 5/6/7/8PANTHERPTHR33322BAG DOMAIN CONTAINING PROTEIN, EXPRESSEDcoord: 1..410

Relationships

This mRNA is a part of the following gene feature(s):

Feature NameUnique NameType
Carg24571Carg24571gene


The following exon feature(s) are a part of this mRNA:

Feature NameUnique NameType
Carg24571-RA:1Carg24571-RA:1exon
Carg24571-RA:2Carg24571-RA:2exon
Carg24571-RA:3Carg24571-RA:3exon


The following five_prime_UTR feature(s) are a part of this mRNA:

Feature NameUnique NameType
Carg24571-RA:five_prime_utrCarg24571-RA:five_prime_utrfive_prime_UTR


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameType
Carg24571-RA:cdsCarg24571-RA:cdsCDS
Carg24571-RA:cdsCarg24571-RA:cds_2CDS
Carg24571-RA:cdsCarg24571-RA:cds_3CDS


The following three_prime_UTR feature(s) are a part of this mRNA:

Feature NameUnique NameType
Carg24571-RA:three_prime_utrCarg24571-RA:three_prime_utrthree_prime_UTR


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameType
Carg24571-RACarg24571-RA-proteinpolypeptide


GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0070417 cellular response to cold
biological_process GO:0034605 cellular response to heat
biological_process GO:0034620 cellular response to unfolded protein
biological_process GO:0006457 protein folding
cellular_component GO:0005783 endoplasmic reticulum
molecular_function GO:0051087 chaperone binding