KEGG   Malassezia globosa: MGL_1008
Entry
MGL_1008          CDS       T01043                                 
Name
(RefSeq) hypothetical protein
  KO
K17260  actin-related protein 2
Organism
mgl  Malassezia globosa
Pathway
mgl04138  Autophagy - yeast
mgl04144  Endocytosis
mgl05100  Bacterial invasion of epithelial cells
Brite
KEGG Orthology (KO) [BR:mgl00001]
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    MGL_1008
   04138 Autophagy - yeast
    MGL_1008
 09160 Human Diseases
  09171 Infectious disease: bacterial
   05100 Bacterial invasion of epithelial cells
    MGL_1008
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:mgl04131]
    MGL_1008
  09183 Protein families: signaling and cellular processes
   04812 Cytoskeleton proteins [BR:mgl04812]
    MGL_1008
   04147 Exosome [BR:mgl04147]
    MGL_1008
Membrane trafficking [BR:mgl04131]
 Others
  Actin-binding proteins
   Arp2/3 complex
    MGL_1008
Cytoskeleton proteins [BR:mgl04812]
 Eukaryotic cytoskeleton proteins
  Actin filaments / Microfilaments
   Actin-binding proteins
    Arp2/3 complex
     MGL_1008
Exosome [BR:mgl04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   MGL_1008
  Exosomal proteins of other body fluids (saliva and urine)
   MGL_1008
  Exosomal proteins of bladder cancer cells
   MGL_1008
SSDB
Motif
Pfam: Actin MreB_Mbl
Other DBs
NCBI-GeneID: 5856045
NCBI-ProteinID: XP_001731740
UniProt: A8PW20
LinkDB
AA seq 393 aa
MGDITTPVVVDNGTGFVKVGYAGSNFPDHVFPSIVGRPILRTEERDAISATGIEVKDLMV
GEEAEAVRTYLQVTQPMEHGIVKDFEEMRHVWNYTFDEKLRIDPRGRKILLTEPPMNPKK
NREEMCRIMFEEYGFDGVYVAIQAVLTLYAQGLQTGVVVDSGDGVTHIVPVYEGFAMPHL
TRRLDVAGRDVTRHLIKLLLLRGYAFNRTADFETVRQIKEKLCYVSYDLDLDKRLADETT
SLVETYTLPDGRVIRVGSERFEAPECLFQPHLIGLEQTGMAEMLFQTIQTAAMDVRPELY
KHIVLSGGSSMYPGLPSRLEKEMKQLYLSRVLHGDGSRLGNLKIRIEDPPRRKHMVFLGG
AVLADIMKGRDSFWIGRQEWYEQGPRALERLGR
NT seq 1182 nt   +upstreamnt  +downstreamnt
atgggtgacataacgacccccgtagtcgttgataacggaacaggattcgtcaaagtaggc
tatgcaggctcgaatttccctgatcatgtgtttccgtcgatcgtcggtcggcccattctg
cggacggaagagcgtgatgccatatcagcgacgggtattgaagtgaaggacctgatggtc
ggcgaggaggccgaggctgttcgcacatacttacaagtcacgcagcctatggaacacggc
attgtcaaggactttgaagaaatgcggcacgtttggaactacacattcgacgagaagctc
cgcattgacccacgcgggcgcaagatcttattaaccgagccgccgatgaacccgaaaaag
aaccgcgaggaaatgtgccgcatcatgtttgaagagtacggtttcgatggcgtatacgta
gcgatccaggccgtcctcacactgtatgcgcaagggttgcaaacgggcgttgtcgtcgac
agcggcgatggcgtcacacacattgttcctgtgtatgagggctttgccatgccacatctg
acgcgtcgcttggacgtggctggccgcgatgtgacgcggcacctgatcaagctccttttg
cttcgtggatatgcattcaaccgaactgccgactttgaaaccgtgcggcagatcaaggag
aagctatgctatgtgagctacgacctcgatctcgataaacgccttgccgatgaaacaacc
tccctggttgagacgtacacacttcccgacggacgtgtaatccgtgtgggctcagagcgc
tttgaggcgcccgagtgcttgttccagccgcatctcattggcttggagcagacaggtatg
gccgagatgctcttccagacaatccagacagctgcaatggatgtgcgtcctgaactatac
aagcacattgtccttagtggtggcagcagcatgtatccaggcttgcctagccgcctcgaa
aaagaaatgaagcagctgtatctatcacgcgtgcttcacggtgatggctctcgtcttggc
aacttgaagatccgcatcgaagatccaccacgtcggaagcacatggtgttcctgggtggc
gctgtcctagcggacattatgaaaggtcgagacagcttctggatcggtcgacaggaatgg
tatgagcaaggaccacgcgcgcttgagcgccttggtagataa

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