KEGG   Trichoplax adhaerens (placozoan): TRIADDRAFT_49690
Entry
TRIADDRAFT_49690  CDS       T01069                                 
Name
(RefSeq) hypothetical protein
  KO
K00700  1,4-alpha-glucan branching enzyme [EC:2.4.1.18]
Organism
tad  Trichoplax adhaerens (placozoan)
Pathway
tad00500  Starch and sucrose metabolism
tad01100  Metabolic pathways
Module
tad_M00854  Glycogen biosynthesis, glucose-1P => glycogen/starch
Brite
KEGG Orthology (KO) [BR:tad00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00500 Starch and sucrose metabolism
    TRIADDRAFT_49690
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:tad04147]
    TRIADDRAFT_49690
Enzymes [BR:tad01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.1  Hexosyltransferases
    2.4.1.18  1,4-alpha-glucan branching enzyme
     TRIADDRAFT_49690
Exosome [BR:tad04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   TRIADDRAFT_49690
SSDB
Motif
Pfam: Alpha-amylase_C CBM_48 Alpha-amylase
Other DBs
NCBI-GeneID: 6749239
NCBI-ProteinID: XP_002108766
JGI: 49690
UniProt: B3RLP8
LinkDB
AA seq 671 aa
MTSSGLSKLENLFQEDPYLKPHRDNFVARYDRMKNILHHINEFMGGLDNFTQGYKYFGFN
QLEDGSITYREWAPAAANLALIGEFNQWNRNSHQLKKNEFGVWEITLPPKSNGTPVIPHA
SLVKVEVTSIHGDKVDHISPWIKYAVPSRTYLAYDGIYWQTAQPYTFKYPKPKKPLSLKI
YECHVGISSPEPKIASYNHFREKVLPRIADLGYNCIQMMAVMEHTYYASFGYQVTNFFAV
SSRYGTPEELKSLIDTAHSMGITVLLDLVHSHASKNVLDGLNQFDGTDACYFHSGPQGMH
PLWDIQRFLLSNLRWYMDNYMFDGFRFDGVTSMLYHNHGTQGFSGNYEEYFGPNTDIDAV
AYLMLANYFLHTFYPDVITIAEDVSGMPGMCREIEYGGIGFDYRLAMAIPDMWIKMLKEE
KDEEWKMGHVTFILTNHRYKEKVIAYAESHDQALVGDKTIAFWLMDKEMYTNMSNLTTLT
PVIERGLALHKMIRLITFGLGGQSYLNFSGNEFGHPEWLDFPRVGNNESYSYARRQYNLV
DDDLLRYQYLYRFDKEMIRLEDIYPWLSSDKNYVSCNHEDDKVIVFEREQLLFCFNFHPY
KSFPDYTIGADRAGKYRVVLDTDHEKFGGQNRINYNTEYFTTPKPWHNRSNSLQVYLPCR
TAFVLAQSTKT
NT seq 2016 nt   +upstreamnt  +downstreamnt
atgacgtcatctgggctatccaaactggaaaatctttttcaagaagatccatacttgaag
ccacatcgtgataattttgttgcaaggtacgaccgaatgaagaacatcttgcatcatatt
aacgaatttatgggcgggcttgacaattttactcagggctacaagtattttggctttaat
caattagaggatggctcaataacctatcgagaatgggcgccagcagctgcgaaccttgct
ttaatcggagaatttaatcaatggaacagaaattcacatcaattaaagaaaaatgaattt
ggtgtatgggaaattactttgccgcctaaatcgaatgggacaccagttattcctcatgct
tcccttgtcaaggttgaggttacttcaattcatggcgacaaggtagatcatatatcaccc
tggattaagtatgccgttccttctagaacgtatttggcttatgatggtatatactggcaa
acagcacaaccatacacgttcaaatatccaaaaccgaaaaagcctctatcgttaaaaata
tatgagtgtcatgtcggtatctcttcgcccgagccaaaaatagcctcttataaccacttt
agagaaaaagtcctacctcgaattgcggatttagggtataattgcatacaaatgatggcc
gttatggaacatacttactatgcaagctttggttaccaagtaactaatttctttgctgta
tcaagtcgttatggtacgcctgaagaattaaaatcattaattgatacagcccattcaatg
gggataacagtccttctggatcttgtccatagtcacgcgtctaaaaatgtgttagatgga
ttgaatcagtttgacggtacagatgcttgttatttccattctggacctcaaggaatgcat
cccctttgggatatacaacgatttctgttgtccaatttacgctggtacatggataattac
atgtttgacggatttcgatttgatggcgtcacatcaatgttatatcacaatcatggtacc
caaggatttagcggaaactatgaggaatattttggccctaataccgacattgatgcagtg
gcatacctaatgctggctaattatttcttgcatacattctatccggatgtcattacaatt
gcagaggacgtttcaggcatgccaggaatgtgtcgtgaaattgaatacggtggcatcggc
tttgattaccgattggccatggcaattcctgatatgtggattaaaatgcttaaggaagag
aaggatgaggaatggaagatgggccatgtcacgtttattttgacaaatcatcggtacaag
gaaaaagtaattgcatacgcagaaagccacgatcaagcattggtcggtgataagactatt
gctttctggttaatggataaggagatgtacacgaatatgtcaaacctgaccacattaacc
ccagttatagaacgaggtttagctctacacaagatgattaggctaataacctttggccta
ggaggccagagttatttaaatttttctggaaacgagtttggtcaccctgaatggttagat
tttccacgtgtaggaaataacgagagctacagttacgctagaaggcaatataatttagtc
gatgatgacttgcttcgttatcagtatctttatcgatttgataaggaaatgatacgctta
gaagatatatacccatggttatcaagcgataaaaactatgtgagttgtaatcacgaagat
gataaagtaatagtatttgaaagagaacagttgctgttttgttttaattttcatccatac
aaaagttttccggattatacgattggtgctgatagggctggaaaatatcgagttgtttta
gatacagatcatgaaaaattcggaggtcagaatcgaattaattacaacacggagtatttt
actaccccaaaaccttggcataaccggtcgaactccttacaggtatatttaccatgtcgg
accgctttcgtactggcacagagcacgaagacatga

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