KEGG   Actinomadura parvosata subsp. kistnae: BKM31_47505
Entry
BKM31_47505       CDS       T04759                                 
Name
(GenBank) endoglucanase
  KO
K01179  endoglucanase [EC:3.2.1.4]
Organism
noa  Actinomadura parvosata subsp. kistnae
Pathway
noa00500  Starch and sucrose metabolism
noa01100  Metabolic pathways
noa02020  Two-component system
Brite
KEGG Orthology (KO) [BR:noa00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00500 Starch and sucrose metabolism
    BKM31_47505
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    BKM31_47505
Enzymes [BR:noa01000]
 3. Hydrolases
  3.2  Glycosylases
   3.2.1  Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
    3.2.1.4  cellulase
     BKM31_47505
SSDB
Motif
Pfam: Glyco_hydro_9 CBM_2 fn3 CBM_3 Ig_DSCAM-DSCAML_C CBM49 GH97_C NDNF YbbR Big_5 Big_3_3 Pur_ac_phosph_N Big_6
Other DBs
NCBI-ProteinID: AQZ71189
UniProt: A0A1V0AM02
LinkDB
Position
10498849..10501611
AA seq 920 aa
MIAAASLVLPLSVGAGPAAHAAAPAFAYGEALQKSLWFYEAQQSGALPGWNRVSWRGNSG
MNDGKDVGVDLTGGWYDAGDHVKFGFPMAFSATMLAWGAVEYRDAYAGSGQLTHLLNNLK
FVNDYFIKAHPSANVLYGQVGNGGTDHAWWGPAEAMAMNRPAYKIDASCGGSDLAGETAA
AMAASSIVFRPTNPSYADTLVTHAKQLYSFADTVRKKYSDCISDAQGYYNSWSGYNDELV
WGAIWLYRATNDASYLAKAESGYANLGTEPQTTTKSYKWTIAWDDKSYGAYVLLHKLTGK
QQYLDDANRWLDWWTVGVNGSKVAYSPGGQAVLDRWGSLRYAANTAFAALVHSDTITDAT
RKARYHDFAVRQINYALGDNPRNSSYLIGFGANPPKNPHHRTAHGSWTDQITNPEQTRHT
LYGALVGGPPDPNDAYTDKRDDYVMNEVATDYNAGFTSALARLYKEYGGAPAANFPVAET
PDGPEIFVEAGVNASGSNFTEIKALVRNQSAWPARVLSDGSFRYYFTLDGSTTASQISVS
SAYTQCKAPTLHQASGSTYYVEIDCSGQVIAPAGQSQHRREVQFRISSSGTWDPANDWSY
KNIPTTPGTTPVRTANITLYSGATKIWGEPPGPVEEDTTAPSKPGKPAVSAITGSSARLS
WTASTDNVGVTGYDVYLGSTKVGTATTTTFDLSGLTPATDYTAHVVARDAAGNTSAQSDG
TAFTTTGTVDGTPPSKPGKPSVSGITATGARVSWAASTDDVGVTGYDVYLGSAKAGTATT
TSLDLSGLTPGTAYTVTVVARDAAGNTSAASDGTAFTTTDAQAGGCTATYKVTSSWGGAY
QAEVTVKNTGTSATGGWTVSWSSQNSITQLWGGKHTVSGGTVTVRNETWNGALAPGASTT
FGFIANGTSTTPDPITCTPS
NT seq 2763 nt   +upstreamnt  +downstreamnt
ctgatcgctgcggcgtcgctggtcctgcccctctccgtaggggcggggccggcggcccac
gccgcggcgcccgccttcgcctacggcgaggccctgcagaagtcgctgtggttctacgag
gcccagcagtcgggcgcgctgcccggctggaaccgcgtctcctggcgcgggaactcgggc
atgaacgacggcaaggacgtcggcgtggacctcacgggcggctggtacgacgcgggcgac
cacgtcaagttcggcttcccgatggcgttctccgccaccatgctggcctggggcgcggtg
gagtaccgcgacgcgtacgcgggctcgggccagctcacccacctgctcaacaacctcaag
ttcgtcaacgactacttcatcaaggctcacccgtcggcgaacgtgctctacggccaggtc
ggcaacggcggcacggaccacgcctggtggggcccggccgaggcgatggcgatgaaccgg
ccggcgtacaagatcgacgcgtcgtgcggcgggtcggacctggcgggcgagacggcggcg
gcgatggcggcctcctcgatcgtcttccgcccgacaaatccgtcatatgccgacacgctg
gtgacgcacgccaagcagctctactccttcgccgacaccgtcaggaagaagtacagcgac
tgcatcagcgacgcccagggctactacaactcctggagcggctacaacgacgagctggtg
tggggcgcgatctggctctaccgggccacgaacgacgcctcctacctggccaaggccgag
agcggctacgccaacctgggcaccgaaccgcagaccacgaccaagtcgtacaagtggacg
atcgcctgggacgacaagtcgtacggggcgtacgtgctgctgcacaagctgaccggcaag
cagcagtacctcgacgacgccaaccgctggctcgactggtggaccgtcggcgtgaacggc
tccaaggtggcgtactcgccgggcggccaggcggtgctcgaccgctggggctcgctgcgg
tacgcggccaacacggcgttcgcggcgctcgtgcacagcgacacgatcaccgacgccacc
cgcaaggcccgctaccacgacttcgcggtgcggcagatcaactacgcgctcggtgacaac
ccgcgcaactcctcgtacctgatcggtttcggcgccaacccgccgaagaacccgcaccac
cgcacggcgcacggctcgtggaccgaccagatcaccaaccccgagcagacccgccacacc
ctgtacggcgcgctcgtcggcggcccgcccgacccgaacgacgcctacaccgacaagcgc
gacgactacgtcatgaacgaggtcgccaccgactacaacgccggtttcaccagcgcgctc
gcccgcctctacaaggagtacggcggagcgccggcggcgaacttcccggtggcggagacg
ccggacggccccgagatcttcgtcgaggccggggtgaacgcctccggcagcaacttcacc
gagatcaaggcgctcgtccgcaaccagtcggcctggcccgcgcgggtcctgtccgacggc
tcgttccgctactacttcaccctcgacggctcgacgaccgcctcgcagatcagcgtgtcg
tcggcctacacgcagtgcaaggcgccgacgctgcaccaggcgagcggcagcacgtactac
gtggagatcgactgctccgggcaggtcatcgcgcccgccgggcagtcgcagcaccgcagg
gaggtgcagttcaggatcagcagctcggggacgtgggacccggccaacgactggtcctac
aagaacatcccgaccacgccgggcacgacgccggtgcggacggcgaacatcaccctctac
agcggcgccaccaagatctggggtgagccgccaggtccggtggaagaggacacgaccgcg
cccagcaagccgggcaagcccgccgtctcggcgatcacgggctcctcggcgcggctgagc
tggaccgcctccaccgacaacgtcggcgtcaccggctacgacgtctacctggggtccacg
aaggtaggcacggccacgacgacgacgttcgacctgagcgggctcacccccgccacggac
tacaccgcccacgtggtggccagggacgcggcgggcaacacctcggcgcagtccgacggc
acggcgttcaccaccacgggcaccgtggacgggacgccgcccagcaagcccggcaaaccc
tcggtgtccgggatcaccgccacgggcgcgcgggtgagctgggcggcgtccacggacgac
gtcggcgtcaccggctacgacgtctacctcgggtccgccaaggcgggcacggccacgacg
acgtcgctcgacctgagcgggctgacgcccggcaccgcgtacacggtgaccgtggtggcc
agggacgcggcgggcaacacctcggccgcctccgacggcaccgcgttcaccaccaccgac
gcgcaggccggcgggtgcacggccacctacaaggtgaccagctcgtggggcggcgcgtac
caggcggaggtgacggtgaagaacaccggcacgtcggccaccggcggctggacggtcagc
tggagctcccagaactcgatcacgcagctctggggcggcaagcacaccgtgtccggcggg
accgtgaccgtgaggaacgagacgtggaacggggcgctcgcccccggcgcgagcaccacg
ttcggcttcatcgccaacggcacgtccaccacgcccgacccgatcacctgcaccccgtcc
tga

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