Massilia antarctica: IV454_08405
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Entry
IV454_08405 CDS
T08186
Name
(GenBank) chitinase
KO
K01183
chitinase [EC:
3.2.1.14
]
Organism
manc
Massilia antarctica
Pathway
manc00520
Amino sugar and nucleotide sugar metabolism
manc01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
manc00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00520 Amino sugar and nucleotide sugar metabolism
IV454_08405
Enzymes [BR:
manc01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.14 chitinase
IV454_08405
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GFIT
Motif
Pfam:
Glyco_hydro_18
CBM_5_12
CBM_5_12_2
GP38
Motif
Other DBs
NCBI-ProteinID:
QPI51518
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Position
complement(1848957..1850630)
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AA seq
557 aa
AA seq
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MEYTTKSGLLIALMGGMLAACGGSGGEKSDIHGSMTKTAAAVVTCPTWNSATIYTVGNCV
TYQSKIYKAKWWTQNNVPGTEEWGPWQLTTDTPTPTPTPTPTPTPTPTPTPTPTPTPTPT
PTPTPVGGREIGSYFAQWGVYGRGYEVADIHTTKTPVNGVPTSVADQLTFVNYAFGNVYA
KNGGYECDMVTKAETGNTTPPPADAGTGGDAYADYQRSPVRTVDGKVIPWDAKLTGNFAQ
LKLLKAAHPNLKVFISLGGWSWSRFFSAAAKTDALRKQLAKSCVKQFIAGDLPVQDGRGG
PGAAKGVFDGIDIDWEYPGGGGQPYNTVDTVNDKHNYTLLMAEFRAQLDAQGKLDGKRYP
LTAAIGAGGEKIAQTEPALYSQYMDWVNVMTYDFHGGWENTTNFHAPLYRDPADPATGNL
VKYNTDDAIKTLVAAGMPKNKILLGVPFYGRGWKGVSPGPRGDGLYQAASGAAAGQYEAG
IDDYKVLMNKSGTRWTHPVTKQLYLLTTNSEWWSYDDPATIGVKMQYMRDQGLRGAFSWE
LDGDANGALTSAVWKGR
NT seq
1674 nt
NT seq
+upstream
nt +downstream
nt
atggaatacacaacaaaaagcggcctgctgatcgccctcatgggcggcatgctcgccgcg
tgcggcggtagcggcggcgaaaaatccgacattcacggcagcatgaccaaaacggcagcg
gctgtcgtgacttgccccacctggaactcggccacgatttataccgtcggcaattgcgtg
acttaccagagcaaaatctataaagccaaatggtggacccagaacaatgtccccggtacc
gaagagtggggaccatggcaactgacgacggacacgccaacgcctaccccaactccgacg
ccgactccaacgccgactccgactccgactccgactccaacgccgacgcctaccccgaca
ccaacgccaaccccggtcggcggacgtgaaatcggctcctacttcgcgcagtggggcgtg
tacggccgcggctacgaagtggccgacatccataccaccaaaacaccagtgaacggcgtg
ccgaccagcgtggccgaccagctcaccttcgtcaactacgccttcggcaatgtgtacgcc
aaaaacggcggctacgaatgcgacatggtgaccaaggccgaaaccggcaacaccacgccg
ccgccagccgacgccggcaccggcggcgacgcctacgccgattaccagcgttcccccgtg
cgcaccgtcgacggcaaggtcatcccatgggatgccaagctgaccggcaacttcgcccag
ctcaaactgctgaaagcggctcacccgaacctgaaagtcttcatttcgctgggcggctgg
agctggtcgcgcttcttctcggcggcggccaagaccgatgccctgcgcaagcagctggcc
aagtcgtgcgtcaagcaattcatcgcgggcgacttgccggtgcaggatggacgcggcggt
ccgggcgcggccaagggcgtgttcgacggtatcgatatcgactgggaatacccgggcggt
ggcggtcagccgtacaacacggtcgacaccgtcaacgacaagcacaactacaccttgctg
atggccgagttccgggcccagctcgatgcacagggcaagctcgacggcaaacgctatcca
ctgacggccgccatcggcgccggcggcgagaagattgcccagactgaacctgcgctgtat
agtcagtacatggactgggtcaacgtgatgacgtatgacttccacggcggatgggaaaac
accaccaacttccacgcgccgttgtaccgtgatcccgccgacccggcgaccggcaacctg
gtcaagtacaacaccgacgacgcgatcaagaccctggtcgcagccggcatgccgaaaaac
aaaatcctgctgggcgtgccgttctacggccgtggctggaaaggcgtgagccccggcccg
cgcggcgacggtttgtaccaggcagcaagcggcgcggcagccggccagtacgaagccggc
atcgacgactacaaggttctcatgaacaagtccggcacccgctggacccatcctgtgacc
aagcagttgtacctgctgacgaccaacagcgaatggtggagctatgacgatccggccacc
attggcgtgaagatgcagtacatgcgtgatcagggcttgcgtggcgcgttctcatgggaa
ctcgacggcgacgccaacggtgccctgaccagcgcagtatggaagggccgctaa
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