KEGG   Myotis davidii: 102759852Help
Entry
102759852         CDS       T02992                                 

Gene name
LPL
Definition
(RefSeq) lipoprotein lipase
  KO
K01059  
lipoprotein lipase [EC:3.1.1.34]
Organism
myd  Myotis davidii
Pathway
Glycerolipid metabolism
PPAR signaling pathway
Alzheimer's disease
Brite
KEGG Orthology (KO) [BR:myd00001]
 Metabolism
  Lipid metabolism
   00561 Glycerolipid metabolism
    102759852 (LPL)
 Organismal Systems
  Endocrine system
   03320 PPAR signaling pathway
    102759852 (LPL)
 Human Diseases
  Neurodegenerative diseases
   05010 Alzheimer's disease
    102759852 (LPL)
Enzymes [BR:myd01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.34  lipoprotein lipase
     102759852 (LPL)
Exosome [BR:myd04147]
 Exosomal proteins
  Exosomal proteins of microglial cells
   102759852 (LPL)
  Exosomal proteins of breast milk
   102759852 (LPL)
Glycosaminoglycan binding proteins [BR:myd00536]
 Heparan sulfate/Haparin
  Enzymes (General comment) Variety
   102759852 (LPL)
Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:myd00537]
 Enzymes
  102759852 (LPL)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-ProteinID: 
NCBI-GeneID: 
Position
Un
AA seq 477 aa AA seqDB search
MESKALLLVALGVWLQSLTASRGGVAADNIIGEKDFTDIESKFALRTPEDTAEDTCHIIP
GVAESVANCHFNHSSKTFVVIHGWTVTGMYESWVPKLVAALYKREPDSNVIVVDWLWRAQ
QHYPVSAGYTKLVGKDVATFINWMAEEFNYPLDNVHLLGYSLGAHAAGVAGSLTNKKVNR
ITGLDPAGPNFEYAEAPSRLSPDDADFVDVLHTFTRGSPGRSIGIQKPVGHVDIYPNGGT
FQPGCNIGEAIRVIAERGLGDVDQLVKCSHERSIHLFIDSLLNEENPSKAYRCNSKEAFE
KGLCLSCRKNRCNNVGYEINKVRAKRSSKMYLKTRSQMPYKVFHYQVKIHFSGTESDTQT
NQAFEISLYGTVAESENIPFTLPEISTNKTYSFLIYTEVDIGELLMLKLKWNSDSYFSWS
DWWSSPGFAIEKIRVKAGETQKKVIFCSREKVSRLQKGKSPVVFVKCHDKSLNKKSN
NT seq 1434 nt NT seq  +upstreamnt  +downstreamnt
atggagagcaaagcgctgctcctggtggcgctgggcgtctggctccagagtctgaccgcc
tcccgcggaggggtggccgccgacaatattataggagaaaaagattttacagacattgaa
agtaaatttgctctaaggacccctgaagacacagctgaggacacttgccacatcattcct
ggagtggcagagtctgtggctaactgccacttcaaccacagcagcaaaaccttcgtggtg
atccatggctggacggtgacgggaatgtatgagagctgggtgcccaaactcgtggctgcc
ctgtacaagagggagccagactccaacgtcatcgtggtggactggctgtggcgggcccag
cagcactacccagtgtctgcgggctacaccaagctggtggggaaagatgtggccacattt
atcaactggatggcggaggaatttaactaccctctggataatgtccatctcttgggatac
agcctgggggcccacgctgctggtgttgcaggaagtctgaccaataagaaggtcaacaga
attacgggcctagatccagctggacctaactttgaatacgcagaagctccaagtcgcctt
tctcctgatgatgcggattttgtagacgtcttacacacattcaccagagggtcaccgggc
cgaagtattggaatccagaaaccagtagggcatgttgacatttacccgaatggaggcacg
tttcaaccaggctgtaacattggggaagctatccgtgtgattgcagagagaggccttgga
gatgtggaccagctggtgaagtgttcccacgaacgctccattcatctcttcattgactct
ctgctgaatgaggaaaaccccagtaaggcctaccggtgcaattcaaaggaagcctttgag
aaagggctctgcctgagctgcaggaagaaccgttgcaacaacgtgggctatgagatcaac
aaggtcagagccaagagaagcagcaaaatgtacctgaagactcgttctcagatgccttac
aaagtcttccattaccaagtaaagatacatttttctggaactgagagtgacacacagacc
aaccaggccttcgaaatctctctgtatggcactgtggccgagagtgagaacatccccttc
accctgcctgaaatttccacaaataagacgtactctttcctcatttacacggaggtggac
atcggagaactgctgatgttgaagctcaaatggaatagcgactcctacttcagctggtcc
gactggtggagcagccctggctttgccattgagaagatcagagtgaaagcaggggagact
caaaagaaggtgatcttctgttccagggagaaagtgtctcgtctgcagaaaggaaagtca
cctgtggtatttgtgaaatgccacgacaagtctctgaataaaaagtctaactga

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