Entry
Name
(RefSeq) proline dehydrogenase 1, mitochondrial isoform X1
KO
Organism
mcix Melitaea cinxia (Glanville fritillary)
Pathway
Module
Brite
KEGG Orthology (KO) [BR:mcix00001 ]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
123663484
Enzymes [BR:mcix01000 ]
1. Oxidoreductases
1.5 Acting on the CH-NH group of donors
1.5.5 With a quinone or similar compound as acceptor
1.5.5.2 proline dehydrogenase
123663484
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SSDB
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
20:complement(7394840..7444021)
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AA seq
599 aa AA seq DB search
MALLRRLAVNAPRGVRVLSTPPPSRDELDLSFNSPKDAFKSKKTSELVRAYLVYQICSIN
WIVENNDMLMKSLRQMVGQRLFEAIMKATFYGQFVAGEDQNKIRPTLERLRSFGVKSILD
YSVEEDLSQEEAEKREVSASISACGDAQEEGQLKQYHVEQRFADRRYKVTSARTYFYLNE
AACEKNMEAFMRSIDAVADSIRAYFVIVLLFSGITKSTGLMAIKLTALGRPQLLLQLSEV
IMRARSYMHQIAGGTGNVLTHHKTIEDLQRYLGDLSSKPEVQEFMKKITSDKEGIVHLFP
WSNILDKDMGLSDSFRVPDPKTGQMRRLISQISPKEEEMFRNMLRRLNNIIKVANESDVR
IMIDAEQTYFQPAISRICLEMMRRYNKNKFLVFNTYQTYLKNTYNEIVTDLEQAQRQNFY
WGAKLVRGAYIEQERARAAAMGYEDPTCENVDATTASFHKCLKEILSRVKLIYKNSQNEQ
KDRLGIMVASHNEDTVRYAIQLMKEHDIKPGDKVVCFGQLLGMCDHITFPLGQAGYSAYK
YVPYGPVVEVLPYLSRRANENRGFLAKIKKEKGLLLKEIARRIFTGQIFYKPVGNYTPV
NT seq
1800 nt NT seq +upstream nt +downstream nt
atggctctactacgtcggctggctgtaaacgcgccccgaggcgtgcgagtgctgtccaca
ccgccaccctcccgcgacgaactcgacctgtccttcaacagtccgaaagacgcattcaaa
agcaagaaaactagcgaactagtccgggcgtatctcgtctatcaaatatgctcgatcaac
tggatagtcgagaacaacgacatgctgatgaagagtctgcggcagatggtgggccagcga
ctgttcgaagctattatgaaggctaccttctacgggcagttcgtagccggtgaagaccaa
aataaaattcggcctactcttgagaggctgcggtctttcggagtgaagtctatcctcgat
tactccgtagaggaagatctttctcaagaggaagctgagaagcgtgaagtcagcgcgtcg
atctcggcgtgtggtgatgcacaggaagaggggcaactcaagcaataccatgtggagcag
cgtttcgctgatcgtcgatacaaggttaccagcgcaaggacttacttctacctgaatgag
gccgcctgcgagaagaacatggaagcttttatgaggagcattgacgccgtcgctgattcg
atacgcgcttattttgtaatcgtattattattttcaggaataactaaaagtacaggcttg
atggctatcaaattgactgctcttgggagacctcagttactgctccaactatccgaagtg
atcatgcgtgctcgtagttacatgcaccaaatcgccggcggcactggcaacgttttgaca
catcacaaaactatcgaggacctccagaggtacctcggcgaccttagcagcaaaccggaa
gtacaggagttcatgaagaaaatcacttccgacaaagagggtattgtccacttgtttcca
tggtcaaacattttggacaaggacatgggtctttcggactcgttcagagtcccggacccg
aagaccggtcagatgaggcggctcatctcgcagatatcgccgaaggaggaagaaatgttc
aggaatatgttgagaagactgaacaatatcatcaaagtggcgaatgagtcggacgttagg
ataatgatcgacgccgaacagacttacttccaaccagctatatcgaggatctgtttggaa
atgatgaggagatataacaaaaacaagttcctagtttttaatacgtatcaaacatacctg
aagaatacttacaacgaaatcgtgacggaccttgagcaagcgcaacgacagaacttctac
tggggagcgaagttggtccgtggagcttatatagaacaggaacgagcgcgagccgcagcg
atgggctacgaagacccaacttgtgaaaacgtcgatgctactacggcgtctttccacaag
tgcttaaaggaaatcctcagcagagtcaagctcatatacaaaaattctcagaacgagcag
aaggatcgcttgggtataatggtggcgtcccacaacgaagacaccgtccgctacgccatc
caactgatgaaggagcacgacatcaagcccggggacaaggtcgtctgcttcggacagctg
ctcggcatgtgcgaccacatcaccttccctctcggtcaagcaggctactcggcgtacaaa
tacgtcccgtacggtcccgttgtcgaagtcctcccgtacttatcgcgacgcgcaaacgaa
aatcgcggcttcctcgccaagatcaagaaggaaaaaggcctcctactgaaggaaatcgct
cggcgcattttcaccggtcaaatattctacaagccggtcggtaactacacgcccgtataa