KEGG   Anolis carolinensis (green anole): 100558297Help
Entry
100558297         CDS       T01608                                 

Gene name
usp28
Definition
ubiquitin specific peptidase 28
Orthology
K11849  
ubiquitin carboxyl-terminal hydrolase 25/28 [EC:3.1.2.15]
Organism
acs  Anolis carolinensis (green anole)
Brite
Enzymes [BR:acs01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.2  Thioester hydrolases
    3.1.2.15  ubiquitin thiolesterase
     100558297 (usp28)
Peptidases [BR:acs01002]
 Cysteine Peptidases
  Family C19: ubiquitin-specific protease family
   100558297 (usp28)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
Position
Un
AA seq 1078 aa AA seqDB search
MEKELMKQNLKKLLFKDTGQNSSVLINQLREITGIQDPLFLHEALKAANGNLVQAVGFLS
EAHAKESSQEGTATEASYGGRSVLVLEQAAGKCLLATMHHSLALHIIRSKRYQKRHSSTP
VRLLLALYLPGRPCVCDVTENTNRSKRKRCEVWGEQTTLNDWRRNGEWPVGLKNIGNTCW
FSAVIQSLFQLPEFRRLVLSYTPDSGSDNCCSRSKKRNIAFMLELQCLFALMLGTRRKFV
DPTAALELLRGAFRSPEEQQQDVSEFTHKLLDWLEDAFQLAANVNSQNKSENPMVQLFYG
TFLSEGIHEGKAFSKIETFGQYPLQVNGYKDLQECLEGAILEKETEASSSSQSVQYRQER
WFTKLPPVLTFELSRFEFNQSLGQPEKIHNKLEFPQVVYMDRFLYSNKGLIQAKREEIKR
LKEQITVLQQKLEQYMRYGSGAGRFPLLDMLQYVLEFASSRPLTANTEASTESQISKPPF
IQSRVTVTPSEGGDEASASQAASPPEEASGPLRSSTPPVEMPESPAPHGITEEEVHLVMT
CLQRWRREVEQDINDLKDSIALLSASVDQMYCDPRLQQVPYHLHAVLVHEGQANAGHYWA
YIYHQPRKCWLKYNDVSVTESSWEELERDSFGGLRNASAYCLMYINKKLPHFAVDYDDGQ
TQAEVEALPLGLKQHIQADNWQLEQEVAEWEEQASKMAQIDQSSSSIESQYLSSDSGQED
SSPSDSRVGLLSSQHATIAKAQTALAIDKAADAFNKDGVEAAYNQVMLSPAMQGVILAIA
KARQTFDRDGSEAGLVKAFREEYARLYALSTEEPTPQNDPRLQHVLIYLLQNKAPQQVVE
RTLLEQFADKNLSYDERSISIMQVARAKLKEIGPNEMDMEEYKKWHEDYSLFRKVSLYLL
TGLEFYQNKQYCEALTYLIHACENNLALQKKGPKRGADGALIALYRRKCLLKLNDMAAAL
LDSNKDLDVGEGLGLLGEVIIPCVHIIAKHNLSQDDLEAIELMRGGWCDYMCCLLSSSLA
EELQLKLNELLSRLFDCSSEGLILKEPPKIRPNSPYDLCSRFAAVMESIHGASPVTVK
NT seq 3237 nt NT seq  +upstreamnt  +downstreamnt
atggagaaggagctcatgaagcagaatttgaaaaagttactttttaaagacactggacaa
aactccagtgttctcatcaaccagctgagagagatcacaggcatccaagatcctttgttc
ctccatgaggccttaaaggctgccaatggaaaccttgtgcaggcggttggcttcctctct
gaggctcatgccaaagaatccagccaagagggcacagccacagaggcatcctatggtgga
agaagtgtgcttgtcctggagcaggcagcaggcaagtgccttttagccactatgcatcat
tctcttgccctgcacatcattaggagtaagagataccagaagcggcatagctctacccca
gtgcggttacttcttgcactatatctacctggcaggccctgtgtgtgtgacgtgactgaa
aacacaaatcgctcaaagaggaaacgttgcgaggtctggggagagcaaactaccctgaac
gactggcggagaaatggagaatggccggtggggctgaaaaacattggaaacacttgctgg
tttagtgcagtcatacagtctcttttccagcttcccgaattccggcggctggtgctcagc
tacactccagactctggaagtgacaactgctgcagccgaagcaaaaagaggaatatcgcc
ttcatgctggaactccagtgcctttttgccctaatgctgggaacgcgccgcaaatttgtg
gatcccactgcagcccttgaacttctcagaggcgccttccggtctcctgaggaacagcag
caagacgtgagtgagtttacccacaagcttctggattggctggaggacgctttccagctg
gctgcgaatgttaactcccagaataagtccgagaaccccatggttcagctcttttatgga
actttcctgtctgaaggtattcatgaaggcaaggccttctccaagattgagacctttggc
cagtatcccttgcaggtgaatggctataaggacctgcaggagtgtctggaaggagccata
ctggagaaggagactgaagcgtcttcaagcagccagtcggtgcaatacaggcaagaacgc
tggttcaccaagctgcctccggtcctgacttttgaactttcccggtttgagttcaaccag
tcacttgggcagccggagaagatacacaacaagctggagttccctcaggttgtttatatg
gacaggttcctgtacagtaacaaggggctgattcaagctaagagagaggagatcaagaga
ctgaaagagcagatcacagttctgcagcagaaattggaacaatatatgagatacggttct
ggtgcagggcgcttccccttgctagacatgctgcagtacgttcttgagtttgccagttcc
cggccattgacagccaataccgaagcctcaacagagtcccaaatttcaaagccgcctttc
atccaaagcagggtgacagtaacaccaagtgaaggaggtgatgaggcctctgcttcccaa
gccgcatctcctccggaggaagccagtgggcccttgaggtcatccacaccgcctgtggag
atgcccgagtccccagctccccatgggattacagaggaagaagtccatctggtgatgacc
tgcctgcagcggtggagaagagaggtcgagcaagacatcaacgacctgaaggactcgatt
gcgctgctgtctgcctccgttgaccagatgtactgcgaccctcgactgcagcaggtcccg
tatcacttgcatgcggtcttggtccacgaagggcaggccaatgcgggccactactgggcc
tacatctaccatcagccccggaagtgctggctcaagtacaacgatgtctctgtgacagag
tcctcctgggaagagctggagagggactccttcgggggcctgaggaatgccagcgcctac
tgcctcatgtacatcaacaagaagctgccacactttgctgttgactatgatgatgggcag
acccaggccgaagtggaggccctgcccctagggctgaagcagcacattcaggcagacaac
tggcagctggagcaggaggtggccgagtgggaggagcaggcctctaaaatggcccagatc
gaccagtcgtcatcatcgatagagtctcagtacctgtcttcagactcaggacaagaagac
tccagtccctctgacagcagggtgggcttgctctcctctcagcatgccaccattgccaag
gcgcagaccgctctagccatcgacaaggcagctgatgccttcaacaaggacggcgtagag
gcagcgtacaaccaggtgatgcttagtcctgccatgcaaggtgtgatcctggcgatagct
aaggcccgccagacctttgatcgggatgggtctgaagcggggctggttaaggcattccgc
gaggaatacgcccggctgtacgcgctctccaccgaggagccaacgccgcagaacgacccc
cgacttcagcacgttctgatctacctcctgcagaacaaagccccccaacaagtggtggaa
aggaccctcctggagcagtttgccgacaagaacctcagctacgacgaaaggtccatcagc
atcatgcaggtggcaagggccaagttgaaagagattggccccaatgagatggacatggaa
gagtacaagaaatggcacgaagactacagtttgtttcgcaaggtgtctctttacctctta
accggcttggagttctaccagaacaaacagtactgtgaggctctgacctacctgatccac
gcctgcgagaacaacctggccctgcagaagaaggggcccaagcggggcgctgatggggcg
ctcattgctctctacaggaggaaatgcctcttgaagctgaatgatatggcggcagctctg
ctggacagcaacaaagatctggacgtgggagaaggcctgggccttctgggtgaggtgatc
atcccctgcgtccacatcatcgccaagcacaacctctcccaggacgacctggaagccata
gagctcatgcggggtggctggtgcgattacatgtgttgtctgctgtcttcctcccttgca
gaagaactgcagctgaagctgaacgagctcctctcccgcctcttcgactgttcctcggag
ggcctgatcctcaaggagccgcccaagatccgccccaactcgccgtacgacctctgcagc
cgctttgccgccgtgatggagtccatccacggggcctcgccggtgaccgtcaaataa

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