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KEGG   Homo sapiens (human): 10059
Entry
10059             CDS       T01001                                 
Symbol
DNM1L, DLP1, DRP1, DVLP, DYMPLE, EMPF, EMPF1, HDYNIV, OPA5
Name
(RefSeq) dynamin 1 like
  KO
K17065  dynamin 1-like protein [EC:3.6.5.5]
Organism
hsa  Homo sapiens (human)
Pathway
hsa04217  Necroptosis
hsa04621  NOD-like receptor signaling pathway
hsa04668  TNF signaling pathway
Disease
H01020  Optic atrophy
H01900  Encephalopathy due to defective mitochondrial and peroxisomal fission
Brite
KEGG Orthology (KO) [BR:hsa00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04668 TNF signaling pathway
    10059 (DNM1L)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:hsa04131]
    10059 (DNM1L)
   03029 Mitochondrial biogenesis [BR:hsa03029]
    10059 (DNM1L)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:hsa04147]
    10059 (DNM1L)
Enzymes [BR:hsa01000]
 3. Hydrolases
  3.6  Acting on acid anhydrides
   3.6.5  Acting on GTP to facilitate cellular and subcellular movement
    3.6.5.5  dynamin GTPase
     10059 (DNM1L)
Membrane trafficking [BR:hsa04131]
 Endocytosis
  Clathrin-mediated endocytosis
   Dynamin
    10059 (DNM1L)
  Lipid raft mediated endocytosis
   Caveolin-mediated endocytosis
    10059 (DNM1L)
   RhoA-dependent endocytosis
    10059 (DNM1L)
Mitochondrial biogenesis [BR:hsa03029]
 Mitochondrial quality control factors
  Mitochondrial dynamics
   Fission and Fusion factors
    10059 (DNM1L)
   Retention of mitochondria
    10059 (DNM1L)
Exosome [BR:hsa04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   10059 (DNM1L)
SSDB
Motif
Pfam: Dynamin_M Dynamin_N GED MMR_HSR1 AAA_16 FtsK_SpoIIIE
Other DBs
NCBI-GeneID: 10059
NCBI-ProteinID: NP_036192
OMIM: 603850
HGNC: 2973
Ensembl: ENSG00000087470
UniProt: O00429 B4DYR6
Structure
Position
12:32679301..32745650
AA seq 736 aa
MEALIPVINKLQDVFNTVGADIIQLPQIVVVGTQSSGKSSVLESLVGRDLLPRGTGIVTR
RPLILQLVHVSQEDKRKTTGEENGVEAEEWGKFLHTKNKLYTDFDEIRQEIENETERISG
NNKGVSPEPIHLKIFSPNVVNLTLVDLPGMTKVPVGDQPKDIELQIRELILRFISNPNSI
ILAVTAANTDMATSEALKISREVDPDGRRTLAVITKLDLMDAGTDAMDVLMGRVIPVKLG
IIGVVNRSQLDINNKKSVTDSIRDEYAFLQKKYPSLANRNGTKYLARTLNRLLMHHIRDC
LPELKTRINVLAAQYQSLLNSYGEPVDDKSATLLQLITKFATEYCNTIEGTAKYIETSEL
CGGARICYIFHETFGRTLESVDPLGGLNTIDILTAIRNATGPRPALFVPEVSFELLVKRQ
IKRLEEPSLRCVELVHEEMQRIIQHCSNYSTQELLRFPKLHDAIVEVVTCLLRKRLPVTN
EMVHNLVAIELAYINTKHPDFADACGLMNNNIEEQRRNRLARELPSAVSRDKSSKVPSAL
APASQEPSPAASAEADGKLIQDSRRETKNVASGGGGVGDGVQEPTTGNWRGMLKTSKAEE
LLAEEKSKPIPIMPASPQKGHAVNLLDVPVPVARKLSAREQRDCEVIERLIKSYFLIVRK
NIQDSVPKAVMHFLVNHVKDTLQSELVGQLYKSSLLDDLLTESEDMAQRRKEAADMLKAL
QGASQIIAEIRETHLW
NT seq 2211 nt   +upstreamnt  +downstreamnt
atggaggcgctaattcctgtcataaacaagctccaggacgtcttcaacacggtgggcgcc
gacatcatccagctgcctcaaatcgtcgtagtgggaacgcagagcagcggaaagagctca
gtgctagaaagcctggtggggagggacctgcttcccagaggtactggaattgtcacccgg
agacctctcattctgcaactggtccatgtttcacaagaagataaacggaaaacaacagga
gaagaaaatggggtggaagcagaagaatggggtaaatttcttcacaccaaaaataagctt
tacacggattttgatgaaattcgacaagaaattgaaaatgaaacagaaagaatttcagga
aataataagggagtaagccctgaaccaattcatcttaagattttttcacccaacgttgtc
aatttgacacttgtggatttgccaggaatgaccaaggtgcctgtaggtgatcaacctaag
gatattgagcttcaaatcagagagctcattcttcggttcatcagtaatcctaattccatt
atcctcgctgtcactgctgctaatacagatatggcaacatcagaggcacttaaaatttca
agagaggtagatccagatggtcgcagaaccctagctgtaatcactaaacttgatctcatg
gatgcgggtactgatgccatggatgtattgatgggaagggttattccagtcaaacttgga
ataattggagtagttaacaggagccagctagatattaacaacaagaagagtgtaactgat
tcaatccgtgatgagtatgcttttcttcaaaagaaatatccatctctggccaatagaaat
ggaacaaagtatcttgctaggactctaaacaggttactgatgcatcacatcagagattgt
ttaccagagttgaaaacaagaataaatgttctagctgctcagtatcagtctcttctaaat
agctacggtgaacccgtggatgataaaagtgctactttactccaacttattaccaaattt
gccacagaatattgtaacactattgaaggaactgcaaaatatattgaaacttcggagcta
tgcggtggtgctagaatttgttatattttccatgagacttttgggcgaaccttagaatct
gttgatccacttggtggccttaacactattgacattttgactgccattagaaatgctact
ggtcctcgtcctgctttatttgtgcctgaggtttcatttgagttactggtgaagcggcaa
atcaaacgtctagaagagcccagcctccgctgtgtggaactggttcatgaggaaatgcaa
aggatcattcagcactgtagcaattacagtacacaggaattgttacgatttcctaaactt
catgatgccatagttgaagtggtgacttgtcttcttcgtaaaaggttgcctgttacaaat
gaaatggtccataacttagtggcaattgaactggcttatatcaacacaaaacatccagac
tttgctgatgcttgtgggctaatgaacaataatatagaggaacaaaggagaaacaggcta
gccagagaattaccttcagctgtatcacgagacaagtcttctaaagttccaagtgctttg
gcacctgcctcccaggagccctcccccgctgcttctgctgaggctgatggcaagttaatt
caggacagcagaagagaaactaaaaatgttgcatctggaggtggtggggttggagatggt
gttcaagaaccaaccacaggcaactggagaggaatgctgaaaacttcaaaagctgaagag
ttattagcagaagaaaaatcaaaacccattccaattatgccagccagtccacaaaaaggt
catgccgtgaacctgctagatgtgccagttcctgttgcacgaaaactatctgctcgggaa
cagcgagattgtgaggttattgaacgactcattaaatcatattttctcattgtcagaaag
aatattcaagacagtgtgccaaaggcagtaatgcattttttggttaatcatgtgaaagac
actcttcagagtgagctagtaggccagctgtataaatcatccttattggatgatcttctg
acagaatctgaggacatggcacagcgcaggaaagaagcagctgatatgctaaaggcatta
caaggagccagtcaaattattgctgaaatccgggagactcatctttggtga

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