KEGG   Alternaria alternata: CC77DRAFT_1020668
Entry
CC77DRAFT_1020668 CDS       T05291                                 
Name
(RefSeq) ARM repeat-containing protein
  KO
K12397  AP-3 complex subunit beta
Organism
aalt  Alternaria alternata
Pathway
aalt04142  Lysosome
Brite
KEGG Orthology (KO) [BR:aalt00001]
 09140 Cellular Processes
  09141 Transport and catabolism
   04142 Lysosome
    CC77DRAFT_1020668
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:aalt04131]
    CC77DRAFT_1020668
Membrane trafficking [BR:aalt04131]
 Endosome - Lysosome transport
  Others
   AP-3 complex
    CC77DRAFT_1020668
 Endosome - Golgi transport
    CC77DRAFT_1020668
SSDB
Motif
Pfam: Adaptin_N Cnd1 INTS1_R4 DUF7071
Other DBs
NCBI-GeneID: 29110696
NCBI-ProteinID: XP_018385549
JGI: 1020668
UniProt: A0A177DLC2
LinkDB
Position
Unknown
AA seq 837 aa
MESISRISSLLETARDLTLEAARDASNVRRAPTKELPSGQLKKLLDSRSERDVLEGLRRV
VTMSYRQPPSQTLPFFSHVIKNVASPSLQVKKLVYIYLLQHAEHEPDTALLSINTIQKSL
TDTNPQLRALALRVMSSIRVPVISQIVSLGIKRGSGDMSAYVRRAAALAIPKCYRLDPNT
EPQLLEYLSTLLGDKQYFVTGAAVSSFLELCPDRLDLIHPHYRSLVRKLVDMDEWGQLAT
LRLMMIYARRCFPRRTRKVKKAASASMNSKTKQSTKGFYDSESESDEEEQEQDMEEVAVL
DPDLELLLKGCQSLLQSRNAAVVIAVARTYLYLGTPEYLTQAIGPLVSLLRSAGDIQHIA
LYNIVQVCLTHPEPFVKYYTHFLVRSTDAPHIWQLKLELLTLIFPHAQLRLQSLILAELS
HFSHSGSLDPALVKESVRAIGRCSQSPATSPQTSARCLKLLLKHIGSADTHLVAESLEVI
RHLIQRDPNAHRTTVVRLAKHLDAATSPQARASIIWLVGEFAGIDPENNIAADVLRILVK
GFADEAEPAKLQIVLLAAKVYVHHLAANPPPEPKEEEPKPSPSLMDDFQEDQGGFRDEHL
ESAPQNEEPQEEKPHIIEALYNYVLLLVRYDTSYDLRDRARVYKALLATPTSTQLASLLL
LAPKPVPHIPSPSETRKGYVLGSASLVIGDEGGVGGLRGYEDLPRWVKEGNEPDPALRDE
AISNSSSTYVSAYETAKNMSAAERLDAAAGGSSRMTPDSMLSPRSLNGMGGDSSLGGASK
APQKEKTLDDWLAEEEEESGSEEETDEEEETEEESEYETDSEEETDDDDDERGNLIK
NT seq 2514 nt   +upstreamnt  +downstreamnt
atggagtccatcagtcgcatatcgagcttgctggagacagctcgcgaccttaccctcgaa
gccgcccgcgatgccagcaatgtccgccgagcccccacaaaggaactgccctcgggccag
ctcaagaagctcctcgacagcagatcagagcgcgatgtgctcgaaggactgcgcagagtc
gtcactatgtcctaccgccagccgccttcgcagaccctccccttcttctcccacgtaatc
aagaatgtcgcgtcaccgtccctccaggtcaagaagctcgtctacatctacctcctccag
catgccgaacacgaaccggataccgcgctcctctccatcaataccatacagaaatccctc
accgacacgaaccctcaactccgcgccctcgctttacgcgtcatgtccagcataagggtg
cctgtcattagccagattgttagcctgggcatcaagcgcggttctggcgacatgtcggca
tacgtgaggagagcagcagctctggcaatacccaagtgctacagattggaccctaatacc
gagccgcaactgctcgaatacctctcgacattattaggagacaaacagtacttcgtaact
ggcgcagcagtctcatctttcctggaactgtgtccagaccgtctggacctcatacacccg
cactatcgctccttggtacgaaagctagttgatatggacgagtgggggcagttggctaca
ttgcgactcatgatgatatatgcaagaagatgctttccgcgccggacgagaaaagtcaag
aaagcagccagtgccagcatgaatagtaagacgaaacaatcgacaaaaggcttctacgac
tcagaaagcgagtccgatgaggaggaacaggaacaggacatggaagaggtcgcggtgctt
gatccggaccttgaactgctactgaagggctgccaatcgctcctgcaatcccgaaatgcg
gctgtggtgatagcggtagcaaggacatacctatatcttggtactccggagtacctgacg
caggccatcggaccgttagtatccctcttgagatctgcgggtgacatccagcacatagca
ctgtacaacatcgtacaggtctgtctgacacatccggagccattcgtcaagtactacacc
cacttcctggtgcgatcgacagacgcgccacacatctggcagctcaagctagagctgctt
actctgatattccctcacgcacagttgaggctgcagagtctaatcctggccgaactgagc
catttctcgcattctggcagtctggatcccgcgctggtcaaggagtcggtgcgtgcaatt
gggcgatgttcacaaagccccgcgacaagcccacagacctcggcaagatgtctgaagttg
ctgttgaagcacattgggtccgctgatactcacctggttgctgagtcactggaggttatc
cgacatctgattcaacgggaccccaacgctcaccggacgactgtagtccggttagcaaaa
cacttggatgcagcgaccagcccccaggcacgagcgagcatcatatggctggttggagag
tttgcgggcatcgaccctgagaacaacatcgcggcagacgtcttgcgcattcttgtcaaa
ggctttgcggatgaagctgagccggcaaaacttcaaatcgtgctactggcagcaaaggtc
tatgtacatcacttggccgcaaacccgcctccagagccaaaagaagaagagcctaaaccg
agtccgtcgctgatggatgacttccaggaagaccagggcggctttagggacgaacatctt
gagtcggctccacaaaacgaggaacctcaagaggagaagccacacattatcgaggcacta
tacaactatgtactcctactcgtgagatacgacacctcgtacgatctccgcgaccgcgcc
cgcgtgtacaaggcgcttttggcgacaccaacatcgacacaactcgcgtcgctcttactt
ctcgcaccgaaaccagtaccacacattccgagtccaagtgaaacaaggaaaggttacgtg
ctcggcagtgccagtcttgttataggcgacgaaggcggcgtcggtggtctgcgaggctat
gaagatctgcctcgctgggtcaaagaggggaacgaaccagatccggctctgcgcgatgag
gccatctcaaactcttcttcaacatacgtttccgcctatgagactgcgaagaacatgtct
gcagcagaaaggctagacgctgcagccggtggtagtagcaggatgacacctgacagcatg
ttgagtccgcgaagtctgaatggcatgggtggagattctagtcttggcggggcgagtaag
gcgccgcaaaaagagaagacgctcgacgactggcttgcggaagaagaggaggagagcggc
agcgaagaggaaaccgatgaggaagaagagacagaggaggagagcgagtacgaaacagac
agtgaagaggagactgatgatgacgacgacgaaagaggtaatctcatcaagtag

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