Stigm_00090 : CDS information

close this sectionLocation

Organism
StrainSga15
Entry nameStigmatellin
Contig
Start / Stop / Direction14,345 / 21,466 / + [in whole cluster]
14,345 / 21,466 / + [in contig]
Location14345..21466 [in whole cluster]
14345..21466 [in contig]
TypeCDS
Length7,122 bp (2,373 aa)
Click on the icon to see Genetic map.

close this sectionAnnotation

Category1.1 PKS
Productpolyketide synthase
Product (GenBank)StiA protein
Gene
Gene (GenBank)stiA
EC number
Keyword
Note
Note (GenBank)
Reference
ACC
PmId
[11809757] The biosynthesis of the aromatic myxobacterial electron transport inhibitor stigmatellin is directed by a novel type of modular polyketide synthase. (J Biol Chem. , 2002)
comment
S. aurantiacaにおいてstigmatellin形成を担う遺伝子セットの報告。

stiA (7122 bp)
ACPL-(0-84), KS-(85-508), ATL-(608-926), AT-(1049-1367), DH-(1378-1598), KR-(1962-2214), ACP-(2225-2327)

myxalamid、myxothiazol、soraphenの生合成PKSの最初のmoduleと同じようにATが2つある珍しい構成だが、それらと違って特殊なstarter unitをロードするわけではなくacetyl-CoAを利用する。

1つめのAT(ATL)がstarter unitを認識し、2つめのAT(AT1)が伸長unitをロードすると考えられている。

[13C]acetate and [13C]propionate取り込み実験で、polyketideを合成する基質が確認されている。

close this sectionPKS/NRPS Module

0
1
acetyl-CoA
methylmalonyl-CoA
ACP1..65
KS84..459
AT605..922
AT1046..1362
DH1416..1587
KR1962..2141
ACP2241..2314

close this sectionSequence

selected fasta
>polyketide synthase [StiA protein]
MTQLASRLGVGSESIDPRERFSRYGIDSRDTKSLLAELGALLKRPLSPTLAWTYPTVEAL
SRHLAGEADVSGGERADTLGVDQDEPIAIIGMAGRFPKAPDVESFWSLLRDGVDAITEVP
PERWDLDAFYSVGLKSPGKMNTRWGGFLDQVDQFDPLFFGISPREAIQMDPQQRLALELS
WEALESAGVAVDSLMDSRTGVFMGAMWSDYAKLTRGALGLIGPHTATGQDSSIIAARVSY
FLGLRGPSLTVNTACSSALVAVHLACQSLRNGEAAMALAGGVNLLLSPESSVAMSQLGAL
SPDGRCKAFDARANGYVRGEGGGVVVLTPLSRAIANGYPVLCVIRGSAVNNDGFSNGLTA
PNPRAQEEVLRDAYARAGVSPDKVHYVETHGTGTVLGDPIEANALSAVLGVNRPAERPLI
LGSVKTNIGHLEAASGIAGLMKVVLSIQHRAIPPNLHFEQPNPYIRFEELRLLVPKSLHP
WPNEGESALAGISSFGFGGTNCHLVLEAPSPGSAHIAPLAAETPEELSLLARQARDAVSV
VGSQVELADLCFSVAARCREGSQRLALIARSPAELAAQVDGFLAGEKRPGLLRGEVTSGG
SQKPVFVFSGTGSQWPGMGRELLRTEPVFRGAIERCDRALRGLSGWSMLEELSAGEASSR
LKECSGLQTAIFAIQVGLAALWRSWGIEPAGVVGHSIGEVAAAHVAGILNLEDAARVIHH
LSRLMGRLSGQGAMIVVDLSAEEANRLLREWERHVVVAACNAPASTVLSGAREVIEELGA
ELERRGIAAHTVRIDTPSHSPLMDPFMGELAEVLAGLSPRVAAVPMVSTVTGAFLKAEEC
TAAYWVRNLREPVLFSQALTKLFEQDLRLFLELSPHPILARSVEQCLKGEGRQGVVLASM
RRGENEGACMRESLGRLFTLGTSVAWQALYPAEAKRVELPMGLGTGSLDAELRGSARLLP
LSAHTAEALEDAARALQASIAKHPDVRLDDLCYSASVGKSVHAHRLAFVTDSKRALVEHL
DDFLKGESRPGRIAGVCATGEPKKVVFVFPGQGSQWQGMGRQLLRQEPVFREAIEECDAA
IRSCAGWSLIDALQADEPHSRLGSIEVIQPTLFAIEVALAALWRSWGVVPDAVVGHSMGE
TAAACVAGALRLTDAARVICERSQLLRRVAGQGGMALVELSLEQAREMLSRKDGRVSIGA
SNSPRSTVLSGDAIALEEILRELEAQGTFCRRVKVDVASHSPQVDPLKDDLLRVLSTIAP
RAATVPLYSTVTGEPIEGARMDASYWMRNLREPVLFGQAIERLAGDGHGVFVELSPHPIL
LPSIDQTLRHKSHKGVVLPSLRREEPERAVLLESLGTLFTGGGRVDFRGLHPLGGHRVRL
PHLPWQRQRFWLDMDVAAAGAASVGAAWHPGGGSEHPLLGHRLPSLAHAPACHVWENKLS
RSAVSYLDDHRVGGTVVLPGTSYIEMALAAAAKGSGKKTVSLRDVELREKMSFLETASRT
VQLSLIQEEAGHSSFRLHGRSTPDEPWTLHGGGTVHVEEGDGPPSADPVLWAAVETVRLQ
GKEVSASDAYEAMHAQGNEYGPLFRGIEQMWVRDAELVARLRVPEPLEQELPEYRFHPAA
LDLGLQALIVLAAEHGCEGLALPTRLESIRAHASPGARMWCHVRLNPVREAASFSGEVLF
LDESGQRLAELQGARFQILGEGSRPHDGGRLVDWLHEVEWQPAPVPVPTAEPSSQGRWVL
FADGTGVAEGLAAQIAARGEPCIRVLPGMAFAEAEDGHFVVDPEQPEDVRKLFGALSRTS
TIPLRGIVHLWSLDAPSPEEGGVDALSRARRLGSGSVLSLIQGLNAAELAQKPRLWLVTR
GVQAVGSAGPGAGAVAQSPLWGLGQVVAYEHAELRCTRVDLAPVSVPGEEQTLLQELLAP
AGDDQVALRGRERHVPRLTRCRTDEVAGRSTDLRAGAIRSDGCYLITGGLGGLGLTIAKW
LVARGARHLVLVGRRGASDAAEIALGQMRGAGAECLVMKADVANTSEVEELVGTIQRKMP
PLRGIFHAAGLLDDGTVLQLTQARLRSVMAPKVEGAWNLHRATLGASLDFFVLFSSAASL
VGIPGQGNYAAGNAFLDALAGLRKARGLACQSIQWGPWSEIGLAAEQDNRGERLALRGMG
SLNPREGLEALEALLSPGEPLRERARIGVLRLDARRWCKSYPAIRSSPLFSVLLAGERNA
KQVLERSGLRARLNEEPARTRRAALESFLREEAAQVLRLPPARIDLSRSLQTLGMDSLLS
LELRNRLEANLELTLPATVLWNYPTLSALAPFLAERMGIQLNGVEEPPQAVESPSVSEED
GAAMLKMLEQFQELSNEDLLGMLSDDKEDEVSS
selected fasta
>polyketide synthase [StiA protein]
GTGACGCAACTTGCGTCAAGGCTGGGCGTCGGTTCTGAGTCCATCGACCCACGTGAGCGC
TTCAGTCGCTACGGCATCGACTCGCGGGATACGAAGTCCCTACTGGCAGAGTTGGGTGCG
TTGCTGAAAAGGCCGCTTTCACCCACGCTGGCTTGGACTTATCCGACGGTCGAAGCCTTG
TCGCGGCATCTGGCGGGCGAGGCGGATGTCTCAGGCGGCGAAAGGGCTGACACCCTGGGG
GTCGATCAGGACGAGCCGATCGCGATCATCGGCATGGCCGGTCGTTTTCCGAAGGCGCCC
GATGTCGAGTCCTTCTGGTCCTTGTTGCGTGATGGGGTGGATGCCATCACGGAGGTGCCA
CCGGAGCGATGGGACCTCGACGCGTTCTACAGTGTCGGCCTGAAATCGCCTGGGAAGATG
AATACCCGTTGGGGTGGGTTCCTTGACCAGGTGGATCAGTTTGATCCGCTCTTCTTTGGT
ATTTCTCCGCGCGAAGCGATCCAAATGGATCCGCAGCAGCGCCTCGCGCTCGAACTCTCA
TGGGAGGCTTTGGAGAGCGCGGGTGTCGCGGTGGACTCACTCATGGACAGCCGCACGGGT
GTGTTCATGGGTGCGATGTGGAGCGACTATGCGAAGCTCACACGCGGCGCCCTGGGCCTG
ATTGGGCCTCACACCGCCACGGGGCAGGACAGCAGCATCATCGCCGCCCGTGTCTCTTAT
TTCCTGGGGTTGAGAGGCCCCAGCCTCACGGTCAACACGGCTTGTTCCTCGGCACTGGTG
GCCGTCCACCTCGCGTGCCAGAGCCTCCGAAATGGCGAGGCCGCGATGGCTCTCGCGGGG
GGCGTCAACCTCCTGCTTTCGCCCGAGAGCTCGGTCGCGATGTCGCAACTCGGGGCACTG
TCGCCGGACGGACGCTGTAAGGCGTTTGATGCGCGCGCCAACGGGTATGTTCGAGGGGAG
GGAGGGGGCGTTGTCGTCCTGACGCCTTTGTCACGGGCAATCGCCAACGGCTATCCCGTT
CTCTGTGTCATCCGCGGGAGCGCGGTCAACAACGACGGCTTCAGCAATGGGCTGACCGCG
CCCAATCCTCGAGCACAGGAAGAGGTGCTGCGCGATGCCTACGCCCGCGCGGGGGTGAGC
CCGGACAAAGTTCACTATGTCGAGACGCATGGGACCGGCACCGTGCTGGGTGATCCCATC
GAGGCCAATGCCCTGAGCGCCGTGCTGGGCGTGAATCGCCCTGCGGAACGGCCACTGATC
CTGGGTTCTGTCAAGACGAACATCGGCCACCTGGAGGCGGCCTCTGGAATCGCAGGACTC
ATGAAGGTGGTGCTGTCGATCCAGCACCGGGCGATCCCGCCCAACCTTCACTTCGAGCAG
CCCAATCCCTACATCCGTTTCGAAGAACTCCGCCTGCTTGTTCCCAAGTCATTGCACCCT
TGGCCGAATGAAGGCGAGTCGGCACTCGCGGGCATCAGCTCTTTTGGCTTTGGTGGAACG
AATTGCCACCTGGTCCTGGAAGCACCATCCCCAGGCTCCGCGCACATTGCTCCACTGGCG
GCTGAAACCCCCGAGGAACTCTCCTTGCTGGCCCGGCAGGCGAGGGACGCGGTCTCGGTC
GTTGGGTCGCAGGTCGAACTGGCGGACCTCTGCTTCTCGGTGGCGGCCCGATGTCGCGAG
GGTTCCCAGCGGTTGGCGCTCATCGCGCGCTCTCCTGCGGAGCTTGCGGCACAAGTAGAC
GGATTTCTCGCTGGAGAGAAGCGGCCAGGGCTCCTGCGCGGGGAAGTGACCTCTGGAGGT
TCTCAGAAGCCGGTCTTCGTCTTCTCCGGCACAGGTTCTCAGTGGCCCGGAATGGGCCGG
GAGCTGCTGCGCACCGAGCCCGTTTTCCGTGGGGCCATCGAGCGATGTGATCGGGCCCTG
AGGGGTCTGTCCGGCTGGTCGATGCTCGAGGAGCTGTCGGCGGGCGAGGCGAGTTCGAGG
TTGAAGGAGTGCAGTGGCCTGCAGACCGCGATCTTCGCCATCCAGGTGGGGCTCGCCGCG
CTCTGGCGGTCCTGGGGCATCGAGCCCGCGGGCGTTGTCGGCCATAGCATCGGCGAGGTG
GCTGCGGCGCATGTCGCGGGAATTCTCAACCTGGAGGATGCGGCCCGTGTCATCCACCAC
TTGAGTCGGCTGATGGGGCGGCTGTCCGGTCAAGGCGCGATGATCGTCGTCGATCTGTCC
GCGGAGGAAGCCAACCGTCTTCTGCGCGAGTGGGAAAGGCACGTTGTCGTGGCTGCGTGC
AATGCCCCGGCTTCGACGGTGCTGTCCGGTGCCCGCGAGGTCATCGAGGAGCTGGGAGCG
GAGTTGGAGCGACGCGGTATCGCCGCTCACACGGTGCGCATCGATACCCCCAGCCACAGT
CCGCTCATGGATCCATTCATGGGGGAATTGGCCGAGGTGCTGGCGGGATTGAGCCCACGG
GTCGCAGCGGTTCCGATGGTCTCCACCGTCACCGGCGCGTTCTTGAAGGCCGAGGAGTGC
ACGGCGGCCTACTGGGTGCGCAACCTGAGGGAGCCAGTGCTGTTTTCACAGGCCCTCACG
AAGCTGTTCGAACAGGATCTGCGGCTGTTCCTGGAACTCTCACCTCATCCCATCCTGGCG
CGCTCGGTCGAGCAGTGCTTGAAGGGCGAGGGGCGGCAGGGGGTTGTGCTCGCCTCGATG
CGGCGTGGAGAGAACGAAGGGGCCTGCATGCGCGAGAGCCTCGGTCGGCTCTTCACGCTC
GGTACGTCGGTGGCTTGGCAGGCGCTCTATCCGGCAGAGGCAAAGCGCGTCGAACTTCCG
ATGGGGCTGGGCACTGGCAGTTTGGACGCCGAACTTCGAGGGTCGGCCCGGCTGTTGCCG
CTGTCCGCGCATACCGCGGAGGCATTGGAAGATGCTGCTCGCGCGCTCCAGGCTTCCATC
GCGAAGCATCCCGATGTGAGGCTCGATGACCTCTGCTACTCGGCCTCCGTGGGAAAGAGT
GTTCATGCCCATCGCTTGGCATTCGTCACCGACTCGAAGCGGGCGCTGGTAGAGCACCTG
GATGACTTCTTGAAGGGAGAATCCCGGCCCGGCCGCATCGCGGGCGTCTGTGCCACGGGA
GAGCCGAAGAAGGTCGTGTTCGTCTTTCCAGGCCAGGGCTCGCAGTGGCAAGGCATGGGA
CGGCAGTTGCTTCGCCAGGAGCCGGTGTTCCGCGAAGCGATCGAAGAATGCGATGCGGCG
ATCCGGAGCTGTGCCGGGTGGTCGCTGATCGATGCGCTTCAGGCGGATGAGCCTCACTCC
CGGCTGGGGTCCATCGAAGTCATTCAGCCCACCCTGTTCGCCATTGAGGTCGCCCTGGCG
GCGCTCTGGCGCTCGTGGGGTGTGGTGCCGGATGCGGTGGTGGGCCACAGCATGGGCGAG
ACCGCGGCCGCATGTGTCGCGGGAGCGCTCCGATTGACGGACGCGGCGCGGGTGATTTGC
GAGAGGAGCCAACTGCTGCGGCGCGTGGCCGGACAGGGCGGCATGGCGTTGGTGGAGCTC
AGCTTGGAGCAGGCCCGCGAGATGCTGAGTCGTAAGGACGGGCGTGTTTCGATTGGCGCC
AGTAACAGCCCGCGCTCGACCGTGCTCTCGGGCGACGCCATCGCGCTGGAAGAGATTCTG
CGCGAGCTCGAGGCCCAGGGAACCTTCTGCCGCCGGGTGAAGGTCGACGTCGCCTCGCAT
AGCCCGCAGGTGGATCCGCTCAAGGACGATCTTCTTCGCGTGCTTTCCACCATCGCTCCG
CGCGCCGCCACGGTTCCCCTGTATTCAACCGTGACGGGCGAGCCCATCGAGGGCGCGCGG
ATGGATGCGTCCTATTGGATGCGCAACCTGCGCGAGCCGGTTCTCTTTGGTCAGGCCATC
GAGCGGCTCGCTGGGGATGGACACGGGGTCTTCGTAGAACTCAGCCCGCATCCCATTCTG
CTGCCCTCGATCGATCAGACGCTGCGGCACAAGAGCCATAAGGGCGTTGTCCTTCCGTCG
CTGCGTCGAGAGGAGCCAGAAAGGGCTGTGTTGCTCGAGTCGCTCGGCACGCTCTTTACG
GGGGGAGGACGCGTCGATTTTCGCGGGCTCCATCCGCTCGGTGGGCACCGAGTCCGTCTG
CCGCATTTGCCTTGGCAGCGTCAGCGGTTCTGGCTCGACATGGACGTGGCAGCCGCAGGG
GCCGCTTCCGTCGGCGCCGCGTGGCATCCCGGTGGCGGTTCGGAACATCCCCTTTTGGGT
CACCGCCTTCCTTCGCTCGCCCACGCACCCGCGTGCCATGTCTGGGAAAACAAGCTGAGT
CGCTCGGCTGTGTCCTATTTGGACGATCACCGTGTCGGGGGCACCGTGGTATTGCCCGGC
ACGTCGTACATCGAGATGGCGCTTGCCGCTGCCGCGAAAGGCTCCGGCAAGAAGACCGTC
TCGCTCAGGGATGTCGAACTCCGGGAAAAGATGAGCTTCTTGGAGACGGCGTCTCGCACT
GTTCAGCTCTCCCTGATTCAAGAAGAAGCCGGACACAGCTCATTCCGGCTGCACGGCCGT
TCTACTCCGGATGAACCGTGGACCCTGCACGGCGGGGGGACGGTACACGTTGAGGAGGGG
GACGGTCCCCCATCGGCGGATCCGGTGCTCTGGGCAGCGGTGGAGACGGTTCGCCTCCAG
GGCAAGGAGGTCTCCGCCTCCGATGCGTATGAGGCGATGCATGCGCAGGGCAACGAGTAT
GGGCCCCTGTTTCGAGGTATCGAGCAGATGTGGGTTCGGGACGCGGAACTCGTGGCGCGG
CTGCGTGTCCCGGAACCACTCGAGCAGGAACTGCCGGAATATCGATTCCACCCGGCGGCG
CTCGACCTGGGCCTCCAAGCTTTGATTGTTCTGGCGGCGGAGCATGGTTGTGAGGGCCTG
GCCCTGCCGACCCGTTTGGAGAGCATTCGGGCACATGCCAGTCCAGGCGCTCGAATGTGG
TGCCATGTCCGGCTGAATCCGGTTCGGGAAGCGGCTTCTTTCAGCGGAGAAGTCCTGTTT
CTCGACGAGTCTGGTCAGCGGCTTGCCGAACTTCAGGGCGCGCGTTTCCAGATTCTCGGA
GAGGGTTCTCGACCACACGACGGCGGGCGCTTGGTGGACTGGCTCCACGAGGTGGAGTGG
CAGCCAGCGCCAGTGCCAGTGCCTACCGCGGAGCCCTCGTCCCAGGGACGCTGGGTTCTC
TTCGCCGACGGAACTGGGGTGGCGGAAGGGCTTGCCGCCCAGATCGCGGCACGGGGTGAG
CCCTGCATTCGCGTGTTGCCCGGCATGGCCTTCGCGGAGGCGGAAGACGGCCATTTCGTA
GTTGATCCAGAGCAGCCGGAGGATGTGCGAAAGCTCTTCGGGGCGCTCTCGCGCACTTCG
ACGATTCCCCTGCGCGGAATCGTCCACCTCTGGAGCCTCGATGCGCCGTCTCCAGAGGAA
GGTGGCGTGGATGCCTTGAGCCGGGCGCGACGCCTCGGTTCAGGCAGTGTCCTCTCGCTC
ATTCAAGGGCTCAATGCAGCGGAACTCGCTCAGAAGCCAAGGCTCTGGCTGGTCACCCGG
GGTGTCCAGGCGGTGGGCTCGGCCGGGCCTGGCGCAGGGGCGGTCGCGCAATCTCCTCTC
TGGGGTCTGGGGCAGGTCGTTGCCTATGAGCACGCGGAGTTGAGGTGCACGAGAGTGGAT
CTCGCACCCGTGTCTGTTCCTGGCGAAGAGCAGACGCTGCTCCAGGAACTCTTGGCTCCG
GCGGGAGATGACCAGGTTGCGCTGCGCGGCCGCGAGAGACATGTCCCAAGGCTGACGCGC
TGTCGCACGGATGAGGTCGCGGGCCGCTCTACGGATCTTCGCGCAGGGGCCATTCGGTCC
GATGGTTGCTATCTGATCACGGGAGGGTTGGGCGGTCTCGGTTTGACGATCGCGAAGTGG
CTCGTGGCTCGAGGAGCCAGGCACCTCGTTCTGGTGGGCAGAAGAGGGGCCTCTGATGCC
GCCGAGATAGCTTTGGGGCAGATGAGGGGGGCTGGCGCCGAGTGCCTCGTGATGAAAGCG
GACGTGGCCAACACCTCCGAGGTGGAGGAGTTGGTCGGCACGATCCAGCGAAAGATGCCT
CCCTTGAGAGGCATCTTCCACGCAGCCGGACTTCTGGATGACGGCACGGTGCTGCAACTG
ACGCAGGCGCGCTTGCGAAGCGTCATGGCGCCCAAGGTCGAGGGGGCGTGGAACCTGCAC
CGAGCGACCCTCGGGGCTTCGTTGGATTTCTTCGTCCTCTTCTCCTCCGCGGCATCGCTC
GTGGGAATTCCTGGCCAGGGCAATTACGCGGCGGGCAATGCGTTCCTCGATGCGTTGGCG
GGCTTGCGGAAGGCGCGAGGGCTCGCGTGCCAGAGCATCCAGTGGGGCCCGTGGTCCGAA
ATCGGCTTGGCGGCCGAGCAGGATAACCGGGGCGAGCGTCTGGCGCTTCGAGGCATGGGG
AGCTTGAACCCACGTGAGGGCCTGGAGGCGCTGGAGGCACTCCTTTCTCCGGGAGAGCCG
CTGCGAGAGCGGGCTCGAATCGGTGTGCTCCGGTTGGATGCTCGGCGGTGGTGCAAATCG
TACCCGGCCATTCGCTCGTCGCCGCTGTTCTCGGTGCTCCTGGCCGGAGAGCGCAACGCG
AAGCAGGTGCTAGAGCGGAGCGGTCTCCGCGCACGTCTCAACGAGGAGCCCGCGCGGACG
CGGCGTGCGGCGCTGGAGTCGTTCCTACGGGAAGAGGCCGCTCAAGTGCTTCGGTTGCCG
CCTGCGAGAATTGATCTTTCCCGATCGCTCCAGACGCTCGGGATGGATTCGCTGCTGTCG
CTGGAATTGCGAAATCGCCTGGAGGCGAACCTCGAGCTGACGCTGCCCGCGACCGTGCTG
TGGAATTACCCGACGCTCAGTGCGTTGGCCCCATTCTTGGCCGAGCGGATGGGCATTCAG
CTCAATGGCGTCGAGGAGCCGCCTCAGGCAGTGGAGTCTCCCAGCGTTTCAGAGGAGGAC
GGAGCAGCAATGCTCAAGATGTTGGAGCAGTTCCAAGAGCTCTCGAACGAGGACTTGCTC
GGCATGTTGAGCGACGACAAGGAAGACGAGGTCTCTTCATGA
[0] ACP1..65
[1] KS84..459
[1] AT605..922
[1] acetyl-CoA796..800
[1] AT1046..1362
[1] methylmalonyl-CoA1237..1241
[1] DH1416..1587
[1] KR1962..2141
[1] ACP2241..2314
[0] ACP1..195
[1] KS250..1377
[1] AT1813..2766
[1] acetyl-CoA2386..2400
[1] AT3136..4086
[1] methylmalonyl-CoA3709..3723
[1] DH4246..4761
[1] KR5884..6423
[1] ACP6721..6942

close this sectionFeature

BLASTP
Database:UniProtKB:2011_09
show BLAST table
InterPro
Database:interpro:38.0
IPR001227 Acyl transferase domain (Domain)
 [599-728]  G3DSA:3.40.366.10 [796-911]  G3DSA:3.40.366.10 [1040-1169]  G3DSA:3.40.366.10 [1237-1354]  G3DSA:3.40.366.10
G3DSA:3.40.366.10   Ac_transferase_reg
IPR006162 Phosphopantetheine attachment site (PTM)
 [2272-2287]  PS00012
PS00012   PHOSPHOPANTETHEINE
IPR009081 Acyl carrier protein-like (Domain)
 [1-101]  2.79999889404114e-13 SSF47336 [2238-2316]  1.20000117458134e-19 SSF47336
SSF47336   ACP_like
 [4-92]  4.80000000000001e-27 G3DSA:1.10.1200.10 [2244-2317]  7.79999999999999e-28 G3DSA:1.10.1200.10
G3DSA:1.10.1200.10   ACP_like
 [4-64]  6.1e-06 PF00550 [2249-2310]  4.5e-12 PF00550
PF00550   PP-binding
 [1-65]  PS50075 [2241-2314]  PS50075
PS50075   ACP_DOMAIN
IPR013968 Polyketide synthase, KR (Domain)
 [1962-2140]  5.00000000000001e-68 PF08659
PF08659   KR
IPR014030 Beta-ketoacyl synthase, N-terminal (Domain)
 [84-333]  5.69999999999998e-95 PF00109
PF00109   ketoacyl-synt
IPR014031 Beta-ketoacyl synthase, C-terminal (Domain)
 [341-459]  4.10000000000004e-45 PF02801
PF02801   Ketoacyl-synt_C
IPR014043 Acyl transferase (Domain)
 [605-922]  2.70000000000002e-86 PF00698 [1046-1362]  1.69999999999998e-103 PF00698
PF00698   Acyl_transf_1
IPR016035 Acyl transferase/acyl hydrolase/lysophospholipase (Domain)
 [603-905]  6.10002656149838e-68 SSF52151 [1044-1346]  4.30000170645869e-73 SSF52151
SSF52151   Acyl_Trfase/lysoPlipase
IPR016036 Malonyl-CoA ACP transacylase, ACP-binding (Domain)
 [730-795]  1.39999892049878e-15 SSF55048 [1171-1236]  3.1999989904635e-17 SSF55048
SSF55048   Malonyl_transacylase_ACP-bd
IPR016038 Thiolase-like, subgroup (Domain)
 [93-345]  9.60000000000004e-100 G3DSA:3.40.47.10 [346-509]  3.80000000000003e-64 G3DSA:3.40.47.10
G3DSA:3.40.47.10   Thiolase-like_subgr
IPR016039 Thiolase-like (Domain)
 [77-508]  1.19999063421924e-105 SSF53901
SSF53901   Thiolase-like
IPR016040 NAD(P)-binding domain (Domain)
 [1962-2156]  1.9e-45 G3DSA:3.40.50.720
G3DSA:3.40.50.720   NAD(P)-bd
IPR018201 Beta-ketoacyl synthase, active site (Active_site)
 [246-262]  PS00606
PS00606   B_KETOACYL_SYNTHASE
IPR020801 Polyketide synthase, acyl transferase domain (Domain)
 [607-904]  7.19996395544006e-114 SM00827 [1048-1345]  1.69998802370953e-127 SM00827
SM00827   PKS_AT
IPR020806 Polyketide synthase, phosphopantetheine-binding domain (Domain)
 [2-68]  1.19999985703101e-06 SM00823 [2246-2317]  1.70000295590054e-23 SM00823
SM00823   PKS_PP
IPR020807 Polyketide synthase, dehydratase domain (Domain)
 [1416-1587]  2.1000026783403e-39 SM00826
SM00826   PKS_DH
IPR020841 Polyketide synthase, beta-ketoacyl synthase domain (Domain)
 [87-511]  SM00825
SM00825   PKS_KS
IPR020842 Polyketide synthase/Fatty acid synthase, KR (Domain)
 [1962-2141]  9.10000425645573e-61 SM00822
SM00822   PKS_KR
SignalP No significant hit
TMHMM No significant hit
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