KEGG   Salmo trutta (river trout): 115165779
Entry
115165779         CDS       T08542                                 
Name
(RefSeq) acidic mammalian chitinase-like isoform X1
  KO
K01183  chitinase [EC:3.2.1.14]
Organism
stru  Salmo trutta (river trout)
Pathway
stru00520  Amino sugar and nucleotide sugar metabolism
stru01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:stru00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00520 Amino sugar and nucleotide sugar metabolism
    115165779
Enzymes [BR:stru01000]
 3. Hydrolases
  3.2  Glycosylases
   3.2.1  Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
    3.2.1.14  chitinase
     115165779
SSDB
Motif
Pfam: Glyco_hydro_18 CBM_14
Other DBs
NCBI-GeneID: 115165779
NCBI-ProteinID: XP_029574995
Ensembl: ENSSTUG00000029021
LinkDB
Position
28:21097223..21105365
AA seq 495 aa
MSSMSSLSIALALLLHAQLGSSYILSCYFTNWAQYRPPPAIYMPNDIDPCLCTHLLYAFA
TMKNNELATFEWNDVELYSQFNGLKNQNGNLKTLLSVGGWNFGSSGFSAMVASPTNRQTF
INSVIVFLRKYEFDGLDIDWEYPANRGSPPQDQQLYSVLVEEMRAAFEKEAKQTNKARLL
LSAAVSAGRDTISSAYEIPKLGQALDMINVMSYDFHGSWDPFTGECSPLYKSPADNGGFI
YFNVDYAMNYWKNHGAPAEKLMVGFPTYGNTFTLTNAANNGIGASIAGAGTPGKYTQEAG
ELAYFEICGFLKDGATKVWDTPQDVPYAYKGTQWVGYDNVKSFGIKVDWLKKNNFGGAMV
WTLDMDDYTGTYCGQGKYPLINVLKKGLNLESAPCNPPATPLPLIKGTTNGGDSGGSSSG
GSSSGGSTSGGSSSGGTTSGTSGMDSNFCVGKATGMYADPKNKNQFYNCSQGKTYFQYCA
TGLVFDTSCSCCNWS
NT seq 1488 nt   +upstreamnt  +downstreamnt
atgtcatctatgtcttctctttccatagctctagccctgctgctgcatgcacagcttggg
tcctcctacattttgtcatgctacttcacaaactgggcacagtacagaccaccccccgct
atttacatgcccaatgacattgacccatgtctgtgtacccatcttctctatgccttcgcc
accatgaagaacaacgaactggccaccttcgagtggaatgacgtagagctctatagccag
ttcaatggcctgaagaaccagaatggcaacttgaagactcttctgtctgttggaggatgg
aacttcggctcttctggattctctgccatggtggccagccccaccaaccgccagaccttc
atcaactctgtgatagtgtttctgagaaagtatgagtttgatggtctggacatcgactgg
gagtacccagccaacagagggagccctcctcaggatcagcagctctactctgttcttgtg
gaggaaatgagggcagcatttgagaaggaggctaagcagactaacaaggcccgtctcctg
ctgtctgctgctgtctccgctggaagggataccatcagctctgcttatgaaatccccaag
cttggacaggccttggacatgatcaatgtcatgtcatatgacttccacggctcctgggat
cccttcactggagagtgcagccccctgtacaagagccctgctgacaatggtggcttcatc
tacttcaatgtggactatgctatgaactactggaagaaccatggagccccagcagagaaa
ctgatggttgggttccccacctacggcaacacattcaccctgacgaatgcagctaacaac
ggaatcggagcatctattgccggggctggaactccaggcaaatacacacaggaggctgga
gagctggcttactttgagatctgtgggtttttgaaagacggagccacaaaggtttgggac
acaccacaggacgtgccgtacgcctacaaaggaacccagtgggtgggctatgacaatgtc
aagagctttgggatcaaggttgactggctgaagaagaacaactttggaggagccatggtc
tggactctcgatatggatgactataccggcacatactgtggccagggaaaatatcctctc
atcaacgtcctcaagaaaggcctcaatctggaatcagcaccttgcaatccccctgcaact
cccctgccccttattaagggaactaccaatggtggtgactctggaggcagctcgagcgga
ggcagctcgagcggaggcagcaccagtggaggcagctccagcggtgggaccaccagtggg
accagtggcatggacagtaacttctgtgttggcaaggccactgggatgtacgccgacccc
aagaacaagaaccagttctacaactgcagtcagggcaagacctacttccagtactgtgct
actggcctggtcttcgacacctcatgctcttgctgcaactggtcctaa

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