Any feedback?
Please rate this page
(sequences.php)
(0/150)

BRENDA support

Sequence of M2X6J7_GALSU

EC Number:3.2.1.84

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
glucan 1,3-alpha-glucosidase
M2X6J7
Galdieria sulphuraria
945
109295
Reaction
Hydrolysis of terminal (1->3)-alpha-D-glucosidic links in (1->3)-alpha-D-glucans
Other sequences found for EC No. 3.2.1.84

General information:

Sequence
show sequence in fasta format
  0 MRIIPSKVAI IIIIFFLLYI VSRCSGAKWA DLCKCEELSF CRRNRVTDQT PLEGNLLFPE
 60 TRVREGSVKA QQVKVKGVVG DSLYAILESR VGNVSTDLVL QVFPLTGGSF RITIAEEQAP
120 LLRFDAKDAL KEPFPLGHFD LSPYHDVEAT LLWNEGKKLI LKYVPFELLV FSNNQSLYPD
180 IVVNHHRLTK LEVLQNHSNH FCAALEETHL ANDNISIVEN MSTNTKEDSL LQLYCQNAFE
240 ETVHGHLDQK KRGLEAVSMD IMFPFGQHLY GLAERATDLS LSFTKDSLYG SVYSEPYRFY
300 NLDVFEYETQ KPLGLYGSIP VLYTLEEKST SGCLWLNAAE TFVDIFPSNW SQESSLASHF
360 ISETGLLDVV LFPGGKTPQD VFNQYLLVTG RPAMTQRFAL GYHQSRWNYR DQMDTLAVNQ
420 RFDQFNIPCD VIWLDIEHTN GKRYFTWDME KFPDPSSLLK RIGDNGRKLV TIVDPHIKVD
480 NDYFVYREAK ANQFFIRKQN EEEEYSGWCW AGLSSYLDFV SKKVRNWWST RFQFRYYPHF
540 GDNLYTWIDM NEPTVFDGPE NTIPKSVIHL DGWEHRQVHN MYGFYMHKAT YDGLLQSRNF
600 SDRPFVLSRS FFAGSHRYGA VWTGDNQANW EHLRYSIPMI LSLQISGMIL SGADVGGFFF
660 DPDPELLIRW YEVAAFQPFF RAHAHEDTRR REPWEFDAQT TTLIRKAILR RYELLPYWYT
720 LFAASSSVNC EADFETCGPP MRPMFWEFSY DKETWKEQTE WMIGNALLVA PILEKDSLFR
780 TVYLPPGNVS HQEQWFDLFS TDSKKRSIAQ RGFVQVNAPL GRHIVFQRGG TIVPFRNRTR
840 RSTVCMERDP IGLRIALDHD GKAKGLIYLD DGRSFLYESG HFRLAKYLWN STGTLQVMIH
900 PLGNKPFVGS DIIIEQIVVY GMKQQPKRAY VSSQLNNATL HFSST
Download this sequence
in fasta format
Download all sequences for 3.2.1.84
in fasta format
in csv (Excel, OpenOffice) format
Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
35334340
Schonknecht G.,Chen W.H.,Ternes C.M.,Barbier G.G.,Shrestha R.P.,Stanke M.,Brautigam A.,Baker B.J.,Banfield J.F.,Garavito R.M.,Carr K.,Wilkerson C.,Rensing S.A.,Gagneul D.,Dickenson N.E.,Oesterhelt C.,Lercher M.J.,Weber A.P.
Gene transfer from bacteria and archaea facilitated evolution of an extremophilic eukaryote.
Science
339
1207-1210
2013