KEGG   Prionailurus viverrinus (fishing cat): 125173497
Entry
125173497         CDS       T09889                                 
Symbol
KIF5C
Name
(RefSeq) kinesin heavy chain
  KO
K10396  kinesin family member 5 (plus-end-directed kinesin ATPase) [EC:5.6.1.3]
Organism
pviv  Prionailurus viverrinus (fishing cat)
Pathway
pviv04144  Endocytosis
pviv04728  Dopaminergic synapse
pviv04814  Motor proteins
pviv05010  Alzheimer disease
pviv05012  Parkinson disease
pviv05014  Amyotrophic lateral sclerosis
pviv05016  Huntington disease
pviv05020  Prion disease
pviv05022  Pathways of neurodegeneration - multiple diseases
pviv05132  Salmonella infection
pviv05223  Non-small cell lung cancer
Brite
KEGG Orthology (KO) [BR:pviv00001]
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    125173497 (KIF5C)
  09142 Cell motility
   04814 Motor proteins
    125173497 (KIF5C)
 09150 Organismal Systems
  09156 Nervous system
   04728 Dopaminergic synapse
    125173497 (KIF5C)
 09160 Human Diseases
  09162 Cancer: specific types
   05223 Non-small cell lung cancer
    125173497 (KIF5C)
  09171 Infectious disease: bacterial
   05132 Salmonella infection
    125173497 (KIF5C)
  09164 Neurodegenerative disease
   05010 Alzheimer disease
    125173497 (KIF5C)
   05012 Parkinson disease
    125173497 (KIF5C)
   05014 Amyotrophic lateral sclerosis
    125173497 (KIF5C)
   05016 Huntington disease
    125173497 (KIF5C)
   05020 Prion disease
    125173497 (KIF5C)
   05022 Pathways of neurodegeneration - multiple diseases
    125173497 (KIF5C)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:pviv04131]
    125173497 (KIF5C)
  09183 Protein families: signaling and cellular processes
   04812 Cytoskeleton proteins [BR:pviv04812]
    125173497 (KIF5C)
   04147 Exosome [BR:pviv04147]
    125173497 (KIF5C)
Enzymes [BR:pviv01000]
 5. Isomerases
  5.6  Isomerases altering macromolecular conformation
   5.6.1  Enzymes altering polypeptide conformation or assembly
    5.6.1.3  plus-end-directed kinesin ATPase
     125173497 (KIF5C)
Membrane trafficking [BR:pviv04131]
 Others
  Actin-binding proteins
   Others
    125173497 (KIF5C)
Cytoskeleton proteins [BR:pviv04812]
 Eukaryotic cytoskeleton proteins
  Microtubules
   Tubulin-binding proteins
    Kinesins
     125173497 (KIF5C)
Exosome [BR:pviv04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   125173497 (KIF5C)
SSDB
Motif
Pfam: Kinesin Microtub_bd FKBP15 Cnn_1N PEA2_C
Other DBs
NCBI-GeneID: 125173497
NCBI-ProteinID: XP_047728669
LinkDB
Position
C1:complement(77223688..77388219)
AA seq 957 aa
MADPAECSIKVMCRFRPLNEAEILRGDKFIPKFKGDETVVIGQGKPYVFDRVLPPSTTQE
QVYNACAKQIVKDVLEGYNGTIFAYGQTSSGKTHTMEGKLHDPQLMGIIPRIAHDIFDHI
YSMDENLEFHIKVSYFEIYLDKIRDLLDVSKTNLAVHEDKNRVPYVKGCTERFVSSPEEV
MDVIDEGKANRHVAVTNMNEHSSRSHSIFLINIKQENVETEKKLSGKLYLVDLAGSEKVS
KTGAEGAVLDEAKNINKSLSALGNVISALAEGTKTHVPYRDSKMTRILQDSLGGNCRTTI
VICCSPSVFNEAETKSTLMFGQRAKTIKNTVSVNLELTAEEWKKKYEKEKEKNKTLKNVI
QHLEMELNRWRNGEAVPEDEQISAKDQKTLEPCDNTPIIDNIAPVVAGISAEEKEKYDEE
ISSLYRQLDDKDDEINQQSQLAEKLKQQMLDQDELLASTRRDYEKIQEELTRLQIENEAA
KDEVKEVLQALEELAVNYDQKSQEVEDKTRANEQLTDELAQKTTTLTTTQRELSQLQELS
NHQKKRATEILNLLLKDLGEIGGIIGTNDVKTLADVNGVIEEEFTMARLYISKMKSEVKS
LVNRSKQLESAQMDSNRKMNASERELAACQLLISQHEAKIKSLTDYMQNMEQKRRQLEES
QDSLSEELAKLRAQEKMHEVSFQDKEKEHLTRLQDAEEMKKALEQQMESHREAHQKQLSR
LRDEIEEKQKIIDEMRDLNQKLQLEQEKLSSDYNKLKVEDQEREMKLEKLLLLNDKREQA
REDLKGLEETVSRELQTLHNLRKLFVQDLTARVKKSVELDNDDGGGSAAQKQKISFLENN
LEQLTKVHKQLVRDNADLRCELPKLEKRLRATAERVKALESALKEAKENAMRDRKRYQQE
VDRIKEAVRAKNMARRAHSAQIAKPIRPGHYPASSPTAVHAIRGGGGGSSNSTHYQK
NT seq 2874 nt   +upstreamnt  +downstreamnt
atggcggatccagccgaatgcagcatcaaagtgatgtgccggttccggcccctcaacgaa
gcggagattctccgaggggacaaattcatcccaaaatttaaaggcgatgagaccgtggtg
attgggcaagggaagccatatgtcttcgacagagtgctgcctcccagcacgacccaagag
caggtttacaatgcgtgtgcaaagcaaattgtcaaagatgtccttgaaggttataacggg
acgatttttgcatatggacagacttcatcaggaaaaacacacaccatggaggggaagcta
catgaccctcaactcatggggatcatcccaaggatcgcgcacgacatctttgaccacatc
tattccatggatgaaaacctggagtttcatatcaaggtttcctattttgagatctacttg
gacaaaatcagggacttactggatgtatccaagacgaacttggctgttcatgaagacaaa
aacagagtcccgtatgtaaaggggtgcaccgagcgctttgtgtcaagccccgaggaagtc
atggatgtgatagatgaaggcaaagcaaaccgacatgtggctgtaacaaatatgaatgaa
cacagctcgagaagtcacagtatcttcctgatcaatattaaacaagagaatgtagagact
gaaaaaaagctcagtgggaagctgtatctagttgatttggccgggagcgaaaaggtcagc
aagactggtgccgagggagctgttctcgacgaagctaaaaatatcaataaatctttgtct
gctcttggaaacgtgatctctgccttggcagaagggacaaaaacacacgtaccatatcgg
gacagcaagatgactcgaattcttcaggactctctgggtgggaactgtagaaccaccatc
gttatttgctgctctccttctgtcttcaatgaggctgagaccaagtcaacactgatgttt
gggcaaagggctaagaccatcaagaatacagtctccgtgaacctggaactgacagcggaa
gaatggaagaagaaatatgaaaaagagaaagaaaaaaacaagactctcaagaatgttatc
cagcatctggagatggagctaaacagatggagaaacggagaagctgtgcctgaggatgaa
cagatcagtgctaaagaccagaagaccttggagccctgcgataacacccccatcatagac
aatattgctcctgttgttgctggcatctctgcagaggagaaagagaagtacgacgaggag
atctccagtctctacagacaactggatgataaggatgatgaaattaaccagcagagccag
ctggctgaaaagctaaagcaacagatgttggatcaggacgagcttttggcttccacaaga
agagattatgagaagatccaggaagaactgacacgtctccagattgaaaacgaggcagcc
aaagatgaagtgaaagaagttctccaggctctggaagagctggctgtcaattatgaccag
aagtcccaggaagtagaggacaagaccagggccaatgagcagctgacagatgagctggcc
cagaagacgactacattgacaaccacacagagagagctgagccagctacaagagcttagc
aaccaccagaagaagagggctactgagatcctgaatttgctgttgaaggatctgggggag
ataggtggaattatcggcaccaatgatgtgaagactttggcagatgtgaacggagtcatt
gaggaggaattcaccatggcccgcctgtatatcagcaagatgaagtcggaggtcaaatcc
ctggtgaaccgcagcaaacagctcgagagcgcccagatggactccaacaggaagatgaat
gccagtgagcgggagctggcagcctgccagctgctcatctcccagcatgaagccaagatc
aaatccctgacagattacatgcagaacatggaacagaagaggaggcagctggaagagtcc
caagactcacttagtgaagagctggccaaactccgagcccaagaaaaaatgcacgaagtc
agcttccaggataaggaaaaggaacacctgacccgactgcaggacgccgaggaaatgaag
aaggcgctggagcagcagatggagagtcaccgggaagctcaccagaagcagctgtccaga
cttcgagatgagatcgaggagaagcagaaaatcatcgatgagatgcgggatttgaatcag
aagctgcagctagagcaggagaagctcagttctgattataacaagctgaaagtggaagac
caagagagggaaatgaagctggagaagctcttattgctcaatgataaaagggaacaagcc
agagaggacctcaaggggctggaggagacagtgtctcgagaattgcagactcttcataac
ctccggaaactctttgtccaggatctgactgcccgggtcaagaagagtgtagagctggac
aacgatgatggagggggcagtgctgcccagaagcagaaaatttccttcctggaaaataac
ctggagcagctcacgaaggttcacaaacagctggtccgggacaatgcagacctgcgctgt
gagctgcccaagctggagaagcggctgcgtgccacggcggagcgtgtcaaggccctggag
agcgcgttgaaggaggccaaggagaacgccatgcgggaccgcaagcgctaccagcaggag
gtggatcgcatcaaggaggctgttcgagccaagaatatggccaggagggcccactcagcc
cagattgccaagcccatccgccctggacactacccagcatcatctccaacggccgtccac
gccatccgagggggaggaggaggctcttcaaactccactcattaccagaaataa

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