| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| azo0663 | azo3230 | azo0663 | azo3230 | Probable CDP-alcohol phosphatidyltransferase family protein; Catalysis of the reaction: CDP + alcohol = CMP + phosphatidyl alcohol. Entry name Q8PQ18 Primary accession number: Q8PQ18 InterPro IPR000462; CDP-OH_P_trans. Pfam PF01066; CDP-OH_P_transf; 1. Identities = 114/203 (56%),Prediction: Signal peptide Signal peptide probability: 0.988 Number of predicted TMHs: 3; Family membership. | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | 0.532 |
| azo0663 | nadD | azo0663 | azo3607 | Probable CDP-alcohol phosphatidyltransferase family protein; Catalysis of the reaction: CDP + alcohol = CMP + phosphatidyl alcohol. Entry name Q8PQ18 Primary accession number: Q8PQ18 InterPro IPR000462; CDP-OH_P_trans. Pfam PF01066; CDP-OH_P_transf; 1. Identities = 114/203 (56%),Prediction: Signal peptide Signal peptide probability: 0.988 Number of predicted TMHs: 3; Family membership. | Nicotinate-nucleotide adenylyltransferase; Catalyzes the reversible adenylation of nicotinate mononucleotide (NaMN) to nicotinic acid adenine dinucleotide (NaAD). | 0.469 |
| azo0663 | pgsA | azo0663 | azo1649 | Probable CDP-alcohol phosphatidyltransferase family protein; Catalysis of the reaction: CDP + alcohol = CMP + phosphatidyl alcohol. Entry name Q8PQ18 Primary accession number: Q8PQ18 InterPro IPR000462; CDP-OH_P_trans. Pfam PF01066; CDP-OH_P_transf; 1. Identities = 114/203 (56%),Prediction: Signal peptide Signal peptide probability: 0.988 Number of predicted TMHs: 3; Family membership. | CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase (PGP synthase). It catalyses the conversion of CDP-diacylglycerol and glycerol-3-phosphate to CMP and 3-(3-phosphatidyl)-glycerol 1-phosphate in the commited step to the synthesis of acidic phospholipids. It is an integral membrane protein. A number of related enzymes are quite similar in both sequence and catalytic activity, including Saccharamyces cerevisiae YDL142c, now known to be a cardiolipin synthase. Entry name :-SWISSPROT:PGSA_ECOLI Prim. accession # P06978 Identities = 50% InterPro IPR000462; CDP-OH_P_trans. I [...] | 0.474 |
| azo0663 | ygaD1 | azo0663 | azo0508 | Probable CDP-alcohol phosphatidyltransferase family protein; Catalysis of the reaction: CDP + alcohol = CMP + phosphatidyl alcohol. Entry name Q8PQ18 Primary accession number: Q8PQ18 InterPro IPR000462; CDP-OH_P_trans. Pfam PF01066; CDP-OH_P_transf; 1. Identities = 114/203 (56%),Prediction: Signal peptide Signal peptide probability: 0.988 Number of predicted TMHs: 3; Family membership. | Probable CinA-related protein; Hypothetical 17.2 kDa protein 1 in recA 5region. TREMBL:Q9KUH9: 54% identity, 64% similarity CinA is the first gene in the competence-inducible (cin) operon, and is thought to be specifically required at some stage in the process of transformation [1]. This is a C-terminal region of putative competence-damaged proteins from the cin operon InterPro:IPR008136; CinA_C. Pfam: PF02464; CinA cinA_cterm: competence/damage-inducible p No signal peptide. No transmembrane helices; High confidence in function and specificity. | 0.483 |
| azo2315 | azo3230 | azo2315 | azo3230 | Conserved hypothetical tyrosine/serine phosphatase,; Conserved hypothetical protein. | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | 0.552 |
| azo3229 | azo3230 | azo3229 | azo3230 | Putative hydrolase; Probable Hydrogenase expression/formation protein hupH. SIMILARITY:Belongs to the hupH/hyaF family SPROT:P48340: 37% identity, 54% similarity InterPro: IPR002725; DUF45. Pfam: PF01863; DUF45 Nonsecretory protein (Signal P predicted) No transmembrane helices (TMHMM predicted); High confidence in function and specificity. | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | 0.677 |
| azo3229 | azo3231 | azo3229 | azo3231 | Putative hydrolase; Probable Hydrogenase expression/formation protein hupH. SIMILARITY:Belongs to the hupH/hyaF family SPROT:P48340: 37% identity, 54% similarity InterPro: IPR002725; DUF45. Pfam: PF01863; DUF45 Nonsecretory protein (Signal P predicted) No transmembrane helices (TMHMM predicted); High confidence in function and specificity. | Conserved hypothetical membrane protein. Homology to ebA4352 of Azoarcus sp. EbN1 of 31% (gnl|keqq|eba:ebA4352(KEGG)). Has PF04401, Protein of unknown function (DUF540); IPR007496 DUF540; Uncharacterised bacterial integral membrane protein,possibly involved in cysteine biosynthesis. Speculated to be involved in sulphate transport. no signal peptide. 6 TMHs; Conserved hypothetical protein. | 0.712 |
| azo3229 | azo3233 | azo3229 | azo3233 | Putative hydrolase; Probable Hydrogenase expression/formation protein hupH. SIMILARITY:Belongs to the hupH/hyaF family SPROT:P48340: 37% identity, 54% similarity InterPro: IPR002725; DUF45. Pfam: PF01863; DUF45 Nonsecretory protein (Signal P predicted) No transmembrane helices (TMHMM predicted); High confidence in function and specificity. | Conserved hypothetical membrane protein. Homology to ne1459 of N. europaea of 49% (trembl|Q82UM4). Pfam: Cytochrome C assembly protein. no signal peptide. 8 TMHs; Conserved hypothetical protein. | 0.478 |
| azo3229 | ffh | azo3229 | azo3232 | Putative hydrolase; Probable Hydrogenase expression/formation protein hupH. SIMILARITY:Belongs to the hupH/hyaF family SPROT:P48340: 37% identity, 54% similarity InterPro: IPR002725; DUF45. Pfam: PF01863; DUF45 Nonsecretory protein (Signal P predicted) No transmembrane helices (TMHMM predicted); High confidence in function and specificity. | Signal recognition particle protein; Involved in targeting and insertion of nascent membrane proteins into the cytoplasmic membrane. Binds to the hydrophobic signal sequence of the ribosome-nascent chain (RNC) as it emerges from the ribosomes. The SRP-RNC complex is then targeted to the cytoplasmic membrane where it interacts with the SRP receptor FtsY. Interaction with FtsY leads to the transfer of the RNC complex to the Sec translocase for insertion into the membrane, the hydrolysis of GTP by both Ffh and FtsY, and the dissociation of the SRP-FtsY complex into the individual componen [...] | 0.666 |
| azo3229 | gloA2 | azo3229 | azo3228 | Putative hydrolase; Probable Hydrogenase expression/formation protein hupH. SIMILARITY:Belongs to the hupH/hyaF family SPROT:P48340: 37% identity, 54% similarity InterPro: IPR002725; DUF45. Pfam: PF01863; DUF45 Nonsecretory protein (Signal P predicted) No transmembrane helices (TMHMM predicted); High confidence in function and specificity. | Lactoylglutathione lyase; Glyoxalase I catalyzes the first step of the glyoxal pathway. S-lactoylglutathione is then converted by glyoxalase II to lactic acid. Similar to trembl|Q9HY85 (74%) and to sprot|LGUL_NEIMA (70%). Pfam (PF00903): Glyoxalase/Bleomycin resistance protein/Dioxygenase superfamily ProDom (PD002334): Glyoxalase I; High confidence in function and specificity. | 0.793 |
| azo3230 | azo0663 | azo3230 | azo0663 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Probable CDP-alcohol phosphatidyltransferase family protein; Catalysis of the reaction: CDP + alcohol = CMP + phosphatidyl alcohol. Entry name Q8PQ18 Primary accession number: Q8PQ18 InterPro IPR000462; CDP-OH_P_trans. Pfam PF01066; CDP-OH_P_transf; 1. Identities = 114/203 (56%),Prediction: Signal peptide Signal peptide probability: 0.988 Number of predicted TMHs: 3; Family membership. | 0.532 |
| azo3230 | azo2315 | azo3230 | azo2315 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Conserved hypothetical tyrosine/serine phosphatase,; Conserved hypothetical protein. | 0.552 |
| azo3230 | azo3229 | azo3230 | azo3229 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Putative hydrolase; Probable Hydrogenase expression/formation protein hupH. SIMILARITY:Belongs to the hupH/hyaF family SPROT:P48340: 37% identity, 54% similarity InterPro: IPR002725; DUF45. Pfam: PF01863; DUF45 Nonsecretory protein (Signal P predicted) No transmembrane helices (TMHMM predicted); High confidence in function and specificity. | 0.677 |
| azo3230 | azo3231 | azo3230 | azo3231 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Conserved hypothetical membrane protein. Homology to ebA4352 of Azoarcus sp. EbN1 of 31% (gnl|keqq|eba:ebA4352(KEGG)). Has PF04401, Protein of unknown function (DUF540); IPR007496 DUF540; Uncharacterised bacterial integral membrane protein,possibly involved in cysteine biosynthesis. Speculated to be involved in sulphate transport. no signal peptide. 6 TMHs; Conserved hypothetical protein. | 0.838 |
| azo3230 | azo3233 | azo3230 | azo3233 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Conserved hypothetical membrane protein. Homology to ne1459 of N. europaea of 49% (trembl|Q82UM4). Pfam: Cytochrome C assembly protein. no signal peptide. 8 TMHs; Conserved hypothetical protein. | 0.562 |
| azo3230 | ffh | azo3230 | azo3232 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Signal recognition particle protein; Involved in targeting and insertion of nascent membrane proteins into the cytoplasmic membrane. Binds to the hydrophobic signal sequence of the ribosome-nascent chain (RNC) as it emerges from the ribosomes. The SRP-RNC complex is then targeted to the cytoplasmic membrane where it interacts with the SRP receptor FtsY. Interaction with FtsY leads to the transfer of the RNC complex to the Sec translocase for insertion into the membrane, the hydrolysis of GTP by both Ffh and FtsY, and the dissociation of the SRP-FtsY complex into the individual componen [...] | 0.795 |
| azo3230 | gloA2 | azo3230 | azo3228 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Lactoylglutathione lyase; Glyoxalase I catalyzes the first step of the glyoxal pathway. S-lactoylglutathione is then converted by glyoxalase II to lactic acid. Similar to trembl|Q9HY85 (74%) and to sprot|LGUL_NEIMA (70%). Pfam (PF00903): Glyoxalase/Bleomycin resistance protein/Dioxygenase superfamily ProDom (PD002334): Glyoxalase I; High confidence in function and specificity. | 0.617 |
| azo3230 | nadD | azo3230 | azo3607 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Nicotinate-nucleotide adenylyltransferase; Catalyzes the reversible adenylation of nicotinate mononucleotide (NaMN) to nicotinic acid adenine dinucleotide (NaAD). | 0.671 |
| azo3230 | pgsA | azo3230 | azo1649 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase (PGP synthase). It catalyses the conversion of CDP-diacylglycerol and glycerol-3-phosphate to CMP and 3-(3-phosphatidyl)-glycerol 1-phosphate in the commited step to the synthesis of acidic phospholipids. It is an integral membrane protein. A number of related enzymes are quite similar in both sequence and catalytic activity, including Saccharamyces cerevisiae YDL142c, now known to be a cardiolipin synthase. Entry name :-SWISSPROT:PGSA_ECOLI Prim. accession # P06978 Identities = 50% InterPro IPR000462; CDP-OH_P_trans. I [...] | 0.532 |
| azo3230 | ygaD1 | azo3230 | azo0508 | Probable Hypothetical protein Ta0487. trembl:Q7W4W1:50% identity, 62% similarity InterPro:IPR001453; MoCF_biosynth. Pfam: PF00994; MoCF_biosynth; 1. Eukaryotic and prokaryotic molybdoenzymes require a molybdopterin cofactor (MoCF) for their activity. The biosynthesis of this cofactor involves a complex multistep enzymatic pathway. One of the eukaryotic proteins involved in this pathway is the Drosophila protein cinnamon molyb_syn: molybdenum cofactor synthe No signal peptide. No transmembrane helices; Function unclear. | Probable CinA-related protein; Hypothetical 17.2 kDa protein 1 in recA 5region. TREMBL:Q9KUH9: 54% identity, 64% similarity CinA is the first gene in the competence-inducible (cin) operon, and is thought to be specifically required at some stage in the process of transformation [1]. This is a C-terminal region of putative competence-damaged proteins from the cin operon InterPro:IPR008136; CinA_C. Pfam: PF02464; CinA cinA_cterm: competence/damage-inducible p No signal peptide. No transmembrane helices; High confidence in function and specificity. | 0.580 |