node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
SCM59493.1 | SCM59496.1 | ING2E5A_2697 | ING2E5A_2700 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | 0.762 |
SCM59493.1 | SCM59497.1 | ING2E5A_2697 | ING2E5A_2701 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative protein {ECO:0000313|EMBL:CCZ81441,1}; tr|R5VD33|R5VD33_9PORP;evalue=1e-098; PctID=46.60; score=366. | 0.911 |
SCM59493.1 | SCM59499.1 | ING2E5A_2697 | ING2E5A_2703 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative protein {ECO:0000313|EMBL:EGK05935,1}; tr|F8X2B9|F8X2B9_9PORP;evalue=8e-104; PctID=42.92; score=384. | 0.930 |
SCM59493.1 | SCM59500.1 | ING2E5A_2697 | ING2E5A_2704 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative protein {ECO:0000313|EMBL:EGK05934,1}; tr|F8X2B8|F8X2B8_9PORP;evalue=2e-159; PctID=40.97; score=569. | 0.930 |
SCM59493.1 | SCM59501.1 | ING2E5A_2697 | ING2E5A_2705 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative protein {ECO:0000313|EMBL:EGK05933,1}; tr|F8X2B7|F8X2B7_9PORP;evalue=3e-057; PctID=46.82; score=228. | 0.673 |
SCM59493.1 | SCM59504.1 | ING2E5A_2697 | ING2E5A_2708 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative protein {ECO:0000313|EMBL:EGK05930,1}; tr|F8X2B4|F8X2B4_9PORP;evalue=4e-089; PctID=32.89; score=336. | 0.914 |
SCM59493.1 | agl10 | ING2E5A_2697 | ING2E5A_2702 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Hexosyltransferase involved in N-glycan biosynthetic pathway that takes place under low-salt conditions (1.75 M instead of 3.4 M). Participates in the formation of the tetrasaccharide present at 'Asn-532' of S-layer glycoprotein Csg, consisting of a sulfated hexose, 2 hexoses and rhamnose. Involved in the addition of final rhamnose (sugar 4) of the tetrasaccharide on the dolichol phosphate carrier. present at 'Asn-532' of S-layer glycoprotein Csg. No effect on 'Asn-47' and 'Asn-117' glycosylation of S-layer glycoprotein Csg; sp|D4GU63|AGL10_HALVD;evalue=1e-014; PctID=27.68; score=80.5. | 0.789 |
SCM59493.1 | amsG | ING2E5A_2697 | ING2E5A_2706 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | UDP-galactose-lipid carrier transferase; Involved in the biosynthesis of amylovoran which functions as a virulence factor. May act as a sugar transferase and may be involved in the export of the repeating unit by flipping the lipid carrier to the periplasmic face of the inner membrane; sp|Q46628|AMSG_ERWAM;evalue=8e-022; PctID=44.83; score=105. | 0.874 |
SCM59493.1 | epsH | ING2E5A_2697 | ING2E5A_2699 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Putative glycosyltransferase EpsH; May be involved in the production of the exopolysaccharide (EPS) component of the extracellular matrix during biofilm formation. EPS is responsible for the adhesion of chains of cells into bundles. Required for biofilm maintenance; sp|P71057|EPSH_BACSU;evalue=2e-019; PctID=32.72; score=96.7. | 0.765 |
SCM59493.1 | tuaB3 | ING2E5A_2697 | ING2E5A_2698 | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | Teichuronic acid biosynthesis protein TuaB; Might be involved in the translocation of teichuronic acid repeating units from the inner to the outer surface of the membrane. membrane protein component regulatory system. cell wall of B.subtilis depends on phosphate availability. Under phosphate-replete growth conditions teichoic acids are present, whereas under phosphate-depleted conditions, at least part of the wall teichoic acid is replaced with teichuronic acid, a non-phosphate containing anionic polymer. The synthesis of teichuronic acid is accompanied by degradation of teichoic acid [...] | 0.792 |
SCM59496.1 | SCM59493.1 | ING2E5A_2700 | ING2E5A_2697 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative protein {ECO:0000313|EMBL:CDA85897,1}; tr|R6E6N9|R6E6N9_9BACE;evalue=2e-122; PctID=58.65; score=445. | 0.762 |
SCM59496.1 | SCM59497.1 | ING2E5A_2700 | ING2E5A_2701 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative protein {ECO:0000313|EMBL:CCZ81441,1}; tr|R5VD33|R5VD33_9PORP;evalue=1e-098; PctID=46.60; score=366. | 0.866 |
SCM59496.1 | SCM59499.1 | ING2E5A_2700 | ING2E5A_2703 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative protein {ECO:0000313|EMBL:EGK05935,1}; tr|F8X2B9|F8X2B9_9PORP;evalue=8e-104; PctID=42.92; score=384. | 0.895 |
SCM59496.1 | SCM59500.1 | ING2E5A_2700 | ING2E5A_2704 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative protein {ECO:0000313|EMBL:EGK05934,1}; tr|F8X2B8|F8X2B8_9PORP;evalue=2e-159; PctID=40.97; score=569. | 0.887 |
SCM59496.1 | SCM59501.1 | ING2E5A_2700 | ING2E5A_2705 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative protein {ECO:0000313|EMBL:EGK05933,1}; tr|F8X2B7|F8X2B7_9PORP;evalue=3e-057; PctID=46.82; score=228. | 0.750 |
SCM59496.1 | SCM59504.1 | ING2E5A_2700 | ING2E5A_2708 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative protein {ECO:0000313|EMBL:EGK05930,1}; tr|F8X2B4|F8X2B4_9PORP;evalue=4e-089; PctID=32.89; score=336. | 0.803 |
SCM59496.1 | agl10 | ING2E5A_2700 | ING2E5A_2702 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Hexosyltransferase involved in N-glycan biosynthetic pathway that takes place under low-salt conditions (1.75 M instead of 3.4 M). Participates in the formation of the tetrasaccharide present at 'Asn-532' of S-layer glycoprotein Csg, consisting of a sulfated hexose, 2 hexoses and rhamnose. Involved in the addition of final rhamnose (sugar 4) of the tetrasaccharide on the dolichol phosphate carrier. present at 'Asn-532' of S-layer glycoprotein Csg. No effect on 'Asn-47' and 'Asn-117' glycosylation of S-layer glycoprotein Csg; sp|D4GU63|AGL10_HALVD;evalue=1e-014; PctID=27.68; score=80.5. | 0.796 |
SCM59496.1 | amsG | ING2E5A_2700 | ING2E5A_2706 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | UDP-galactose-lipid carrier transferase; Involved in the biosynthesis of amylovoran which functions as a virulence factor. May act as a sugar transferase and may be involved in the export of the repeating unit by flipping the lipid carrier to the periplasmic face of the inner membrane; sp|Q46628|AMSG_ERWAM;evalue=8e-022; PctID=44.83; score=105. | 0.859 |
SCM59496.1 | epsH | ING2E5A_2700 | ING2E5A_2699 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Putative glycosyltransferase EpsH; May be involved in the production of the exopolysaccharide (EPS) component of the extracellular matrix during biofilm formation. EPS is responsible for the adhesion of chains of cells into bundles. Required for biofilm maintenance; sp|P71057|EPSH_BACSU;evalue=2e-019; PctID=32.72; score=96.7. | 0.791 |
SCM59496.1 | tuaB3 | ING2E5A_2700 | ING2E5A_2698 | Putative acetyltransferase MJ1064; sp|Q58464|Y1064_METJA;evalue=2e-018; PctID=41.72; score=92.4. | Teichuronic acid biosynthesis protein TuaB; Might be involved in the translocation of teichuronic acid repeating units from the inner to the outer surface of the membrane. membrane protein component regulatory system. cell wall of B.subtilis depends on phosphate availability. Under phosphate-replete growth conditions teichoic acids are present, whereas under phosphate-depleted conditions, at least part of the wall teichoic acid is replaced with teichuronic acid, a non-phosphate containing anionic polymer. The synthesis of teichuronic acid is accompanied by degradation of teichoic acid [...] | 0.796 |