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hypC

Gene
hypC
Protein
Noranthrone monooxygenase
Organism
Aspergillus flavus (strain ATCC 200026 / FGSC A1120 / NRRL 3357 / JCM 12722 / SRRC 167)
Length
210 amino acids
Function
Monooxygenase that converts norsolorinic acid anthrone to norsolorinic acid during aflatoxin biosynthesis.
Similarity
Belongs to the anthrone oxygenase family.
Mass
23.567 kDa
Sequence
MEDLRDLSPRDLHKARGAKEEFKNVFLLADGELTVHASFSRIFTRRTNKMGTEYVAVLTGSFLTGAMMNLHLLTIPILIETTRQPAQLVHQWSRIFYSGHRKGPGIALVTGALYGYAAWAKYSVGEPWHHWMVAGVTTVSMVPYTWMFMNATNTALFHAEDQFEKGGVEISLQESVRLVGKWDWLNTVRALFPLAGSVMGMLGVCGVVRY

Gene
hypC
Protein
Monooxygenase hypC
Organism
Dothistroma septosporum (strain NZE10 / CBS 128990)
Length
185 amino acids
Function
Monooxygenase; part of the fragmented gene cluster that mediates the biosynthesis of dothistromin (DOTH), a polyketide toxin very similar in structure to the aflatoxin precursor, versicolorin B (PubMed:12039746, PubMed:17683963, PubMed:22069571, PubMed:23207690, PubMed:23448391). The first step of the pathway is the conversion of acetate to norsolorinic acid (NOR) and requires the fatty acid synthase subunits hexA and hexB, as well as the polyketide synthase pksA (PubMed:16649078, PubMed:23207690). PksA combines a hexanoyl starter unit and 7 malonyl-CoA extender units to synthesize the precursor NOR (By similarity). The hexanoyl starter unit is provided to the acyl-carrier protein (ACP) domain by the fungal fatty acid synthase hexA/hexB (By similarity). The second step is the conversion of NOR to averantin (AVN) and requires the norsolorinic acid ketoreductase nor1, which catalyzes the dehydration of norsolorinic acid to form (1'S)-averantin (PubMed:23207690). The cytochrome P450 monooxygenase avnA then catalyzes the hydroxylation of AVN to 5'hydroxyaverantin (HAVN) (PubMed:23207690). The next step is performed by adhA that transforms HAVN to averufin (AVF) (PubMed:23207690). Averufin might then be converted to hydroxyversicolorone by cypX and avfA (PubMed:23207690). Hydroxyversicolorone is further converted versiconal hemiacetal acetate (VHA) by moxY (PubMed:23207690). VHA is then the substrate for the versiconal hemiacetal acetate esterase est1 to yield versiconal (VAL) (PubMed:23207690). Versicolorin B synthase vbsA then converts VAL to versicolorin B (VERB) by closing the bisfuran ring (PubMed:16649078, PubMed:23207690). Then, the activity of the versicolorin B desaturase verB leads to versicolorin A (VERA) (PubMed:23207690). DotB, a predicted chloroperoxidase, may perform epoxidation of the A-ring of VERA (PubMed:23207690). Alternatively, a cytochrome P450, such as cypX or avnA could catalyze this step (PubMed:23207690). It is also possible that another, uncharacterized, cytochrome P450 enzyme is responsible for this step (PubMed:23207690). Opening of the epoxide could potentially be achieved by the epoxide hydrolase epoA (PubMed:23207690). However, epoA seems not to be required for DOTH biosynthesis, but other epoxide hydrolases may have the ability to complement this hydrolysis (PubMed:23207690). Alternatively, opening of the epoxide ring could be achieved non-enzymatically (PubMed:23207690). The next step is the deoxygenation of ring A to yield the 5,8-dihydroxyanthraquinone which is most likely catalyzed by the NADPH dehydrogenase encoded by ver1 (PubMed:23207690). The last stages of DOTH biosynthesis are proposed to involve hydroxylation of the bisfuran (PubMed:23207690). OrdB and norB might have oxidative roles here (PubMed:23207690). An alternative possibility is that cytochrome P450 monoogenases such as avnA and cypX might perform these steps in addition to previously proposed steps (PubMed:23207690).
Similarity
Belongs to the anthrone oxygenase family.
Mass
20.026 kDa
Sequence
MLRAATNLYSPPNTGKMSPKTIGSDVGIEVIPVMTGTFLSGAMMSLFLLTIPVILETTTVPSQLLNQWHRIFYRGHIQGPLISIATGLLYSYAAYQRSQRGAAWKPFAVSAAVTVAMIPFTWVFMANVNNSLFRAVAVTEKGGEGNWNEAQGLVRSWGAWNAVRALFPLSGAVLGLLSTCKIVSF

Gene
hypC
Protein
Hydrophobin-2
Organism
Agaricus bisporus
Length
115 amino acids
Similarity
Belongs to the fungal hydrophobin family.
Mass
11.471 kDa
Sequence
MFSRVLVAALVALPVLVSASPTPGGYPDSTTVVSQCNVGELHCCNTQQTPDHTNAAGGLLGAAANVGALLGFDCTPISVIGIGGNNCAAQPVCCEANEFTGLINALSCSPINVNL

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Rhodobacter capsulatus
Length
96 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
9.9 kDa
Sequence
MCLGIPGQIVAITDAGRMMALADVSGVKRAVNVACVAEGPLEDLLGHWALIHVGFAMSLIDEAEAARTLEALRDLGEAQETLAQMAEGAAALEGRG

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Cupriavidus necator (strain ATCC 17699 / H16 / DSM 428 / Stanier 337)
Length
90 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
9.79 kDa
Sequence
MCLAIPARLVELQADQQGVVDLSGVRKTISLALMADAVVGDYVIVHVGYAIGKIDPEEAERTLRLFAELERVQPPASEPMHGMNIHQEPA

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Escherichia coli O157:H7
Length
90 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor. HypC delivers iron-bound CO(2) to HypD where reduction to CO probably occurs. In complex with HypD, accepts the cyanide ligand generated by HypF and HypE, and also coordinates the carbon monoxide ligand.
Similarity
Belongs to the HupF/HypC family.
Mass
9.732 kDa
Sequence
MCIGVPGQIRTIDGNQAKVDVCGIQRDVDLTLVGSCDENGQPRVGQWVLVHVGFAMSVINEAEARDTLDALQNMFDVEPDVGALLYGEEK

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC)
Length
90 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor. HypC delivers iron-bound CO(2) to HypD where reduction to CO probably occurs. In complex with HypD, accepts the cyanide ligand generated by HypF and HypE, and also coordinates the carbon monoxide ligand.
Similarity
Belongs to the HupF/HypC family.
Mass
9.732 kDa
Sequence
MCIGVPGQIRTIDGNQAKVDVCGIQRDVDLTLVGSCDENGQPRVGQWVLVHVGFAMSVINEAEARDTLDALQNMFDVEPDVGALLYGEEK

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Escherichia coli (strain K12)
Length
90 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor (PubMed:15504408, PubMed:23022438). HypC delivers iron-bound CO(2) to HypD where reduction to CO probably occurs (PubMed:23851071). In complex with HypD, accepts the cyanide ligand generated by HypF and HypE, and also coordinates the carbon monoxide ligand (PubMed:15504408, PubMed:23022438). Involved in the maturation of the hydrogenase 3 (PubMed:10783387, PubMed:11292801). Also participates in the maturation of hydrogenase 1 (PubMed:11292801).
Similarity
Belongs to the HupF/HypC family.
Mass
9.732 kDa
Sequence
MCIGVPGQIRTIDGNQAKVDVCGIQRDVDLTLVGSCDENGQPRVGQWVLVHVGFAMSVINEAEARDTLDALQNMFDVEPDVGALLYGEEK

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Shigella flexneri
Length
90 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor. HypC delivers iron-bound CO(2) to HypD where reduction to CO probably occurs. In complex with HypD, accepts the cyanide ligand generated by HypF and HypE, and also coordinates the carbon monoxide ligand.
Similarity
Belongs to the HupF/HypC family.
Mass
9.732 kDa
Sequence
MCIGVPGQIRTIDGNQAKVDVCGIQRDVDLTLVGSCDENGQPRVGQWVLVHVGFAMSVINEAEARDTLDALQNMFDVEPDVGALLYGEEK

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Helicobacter hepaticus (strain ATCC 51449 / 3B1)
Length
86 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
9.765 kDa
Sequence
MCLAIPSKVVEIKDNNMAVVDTLGVSREASLDLLNESVNIGDWVLLHIGYVMSKIDEESARESLRLYEQILQSMQEEENERIEANK

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Azotobacter chroococcum mcd 1
Length
84 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
8.959 kDa
Sequence
MCLAIPVRIEELLDEQSAVACIGGLRKTINVALLDDLKVGDYVILHVGFALQKLDEAEARRTLALLAELGQLAEAEQAAQGDAS

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Azotobacter vinelandii
Length
84 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
8.983 kDa
Sequence
MCLAIPVRIEELLDEQSAVACIGGLRKTINVALLDDLKVGDYVILHVGFALQKLDEAEAQRTLALLAELGRLAEAEQAAQGEAP

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Synechocystis sp. (strain PCC 6803 / Kazusa)
Length
76 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
7.987 kDa
Sequence
MCLALPGQVVSLMPNSDPLLLTGKVSFGGIIKTISLAYVPEVKVGDYVIVHVGFAISIVDEEAAQETLIDLAEMGV

Gene
hypC
Protein
Hydrogenase maturation factor HypC
Organism
Rhizobium leguminosarum bv. viciae
Length
75 amino acids
Function
Involved in the maturation of [NiFe] hydrogenases. Involved in the biosynthesis of the Fe(CN)(2)CO cofactor.
Similarity
Belongs to the HupF/HypC family.
Mass
8.05 kDa
Sequence
MCLAIPVQVKELLPDNMAKVTLDGVSKIVSTALVDDVKVGDYVVLHVGYALAKIDPEEAERTLALIRERAMGDAA