Analysis | Hit | start | end | length | Note | Hit coverage | Hit length | Hit pident | Hit pcons | eValue | Hit description |
blastp_kegg | bfu:BC1G_07772 | 1 | 479 | 479 | n/a | 100.00 | 479 | 100.00 | 0.00 | 0.0 | hypothetical protein |
ssl:SS1G_07900 | 12 | 478 | 467 | Gaps:42 | 41.63 | 1117 | 74.41 | 7.10 | 1e-153 | hypothetical protein |
ssl:SS1G_06305 | 12 | 371 | 360 | Gaps:33 | 25.61 | 1464 | 43.73 | 15.73 | 1e-70 | hypothetical protein |
pno:SNOG_04238 | 12 | 362 | 351 | Gaps:17 | 35.74 | 968 | 41.33 | 20.81 | 8e-64 | hypothetical protein |
pan:PODANSg5708 | 4 | 341 | 338 | Gaps:14 | 24.42 | 1417 | 41.04 | 19.36 | 7e-63 | hypothetical protein |
ncr:NCU02057 | 9 | 344 | 336 | Gaps:13 | 26.00 | 1319 | 40.52 | 18.08 | 1e-62 | hypothetical protein |
mgr:MGG_01342 | 4 | 344 | 341 | Gaps:22 | 26.47 | 1341 | 39.72 | 17.18 | 9e-59 | MG01342.4 hypothetical protein |
fgr:FG00737.1 | 9 | 371 | 363 | Gaps:21 | 26.86 | 1370 | 39.13 | 17.93 | 3e-58 | hypothetical protein |
tml:GSTUM_00010080001 | 12 | 332 | 321 | Gaps:18 | 25.16 | 1260 | 40.69 | 21.45 | 9e-57 | hypothetical protein |
uma:UM03269.1 | 12 | 341 | 330 | Gaps:68 | 25.51 | 1482 | 32.54 | 20.90 | 1e-47 | hypothetical protein |
blastp_uniprot_sprot | sp|Q9P7Q7|MAK1_SCHPO | 15 | 365 | 351 | Gaps:29 | 21.23 | 1639 | 29.60 | 16.09 | 6e-23 | Peroxide stress-activated histidine kinase mak1 OS Schizosaccharomyces pombe GN mak1 PE 2 SV 1 |
sp|Q54U87|DHKA_DICDI | 243 | 354 | 112 | Gaps:5 | 5.35 | 2150 | 46.96 | 26.96 | 2e-21 | Hybrid signal transduction histidine kinase A OS Dictyostelium discoideum GN dhkA PE 1 SV 1 |
sp|Q54YZ9|DHKJ_DICDI | 249 | 337 | 89 | Gaps:1 | 4.27 | 2062 | 55.68 | 22.73 | 3e-21 | Hybrid signal transduction histidine kinase J OS Dictyostelium discoideum GN dhkJ PE 3 SV 2 |
sp|P0AEC5|BARA_ECOLI | 235 | 345 | 111 | Gaps:1 | 11.98 | 918 | 45.45 | 26.36 | 2e-20 | Signal transduction histidine-protein kinase BarA OS Escherichia coli (strain K12) GN barA PE 1 SV 1 |
sp|P0AEC6|BARA_ECOL6 | 235 | 345 | 111 | Gaps:1 | 11.98 | 918 | 45.45 | 26.36 | 2e-20 | Signal transduction histidine-protein kinase BarA OS Escherichia coli O6 GN barA PE 1 SV 1 |
sp|P0AEC7|BARA_ECO57 | 235 | 345 | 111 | Gaps:1 | 11.98 | 918 | 45.45 | 26.36 | 2e-20 | Signal transduction histidine-protein kinase BarA OS Escherichia coli O157:H7 GN barA PE 3 SV 1 |
sp|P59342|BARA_SHIFL | 235 | 345 | 111 | Gaps:1 | 11.98 | 918 | 45.45 | 26.36 | 2e-20 | Signal transduction histidine-protein kinase BarA OS Shigella flexneri GN barA PE 3 SV 1 |
sp|P48027|GACS_PSESY | 225 | 337 | 113 | Gaps:4 | 12.68 | 907 | 46.96 | 20.87 | 1e-19 | Sensor protein gacS OS Pseudomonas syringae pv. syringae GN gacS PE 3 SV 1 |
sp|Q869S5|DOKA_DICDI | 242 | 347 | 106 | Gaps:1 | 6.28 | 1671 | 40.95 | 29.52 | 7e-17 | Hybrid signal transduction protein dokA OS Dictyostelium discoideum GN dokA PE 1 SV 1 |
sp|Q86CZ2|DHKK_DICDI | 224 | 347 | 124 | Gaps:4 | 9.89 | 1213 | 35.00 | 25.00 | 8e-16 | Hybrid signal transduction histidine kinase K OS Dictyostelium discoideum GN dhkK PE 1 SV 1 |
blastp_pdb | no results |
rpsblast_cdd | gnl|CDD|170954 | 239 | 343 | 105 | Gaps:1 | 11.28 | 922 | 48.08 | 25.00 | 1e-27 | PRK11107 PRK11107 hybrid sensory histidine kinase BarA Provisional. |
gnl|CDD|163083 | 234 | 343 | 110 | Gaps:9 | 12.09 | 968 | 43.59 | 20.51 | 9e-26 | TIGR02956 TMAO_torS TMAO reductase sytem sensor TorS. This protein TorS is part of a regulatory system for the torCAD operon that encodes the pterin molybdenum cofactor-containing enzyme trimethylamine-N-oxide (TMAO) reductase (TorA) a cognate chaperone (TorD) and a penta-haem cytochrome (TorC). TorS works together with the inducer-binding protein TorT and the response regulator TorR. TorS contains histidine kinase ATPase (pfam02518) HAMP (pfam00672) phosphoacceptor (pfam00512) and phosphotransfer (pfam01627) domains and a response regulator receiver domain (pfam00072). |
gnl|CDD|170758 | 252 | 336 | 85 | Gaps:1 | 8.87 | 947 | 48.81 | 17.86 | 9e-17 | PRK10841 PRK10841 hybrid sensory kinase in two-component regulatory system with RcsB and YojN Provisional. |
gnl|CDD|171123 | 254 | 335 | 82 | Gaps:3 | 9.16 | 906 | 46.99 | 24.10 | 2e-16 | PRK11466 PRK11466 hybrid sensory histidine kinase TorS Provisional. |
gnl|CDD|144196 | 261 | 326 | 66 | Gaps:1 | 98.48 | 66 | 50.77 | 21.54 | 4e-15 | pfam00512 HisKA His Kinase A (phosphoacceptor) domain. dimerization and phosphoacceptor domain of histidine kinases. |
gnl|CDD|128670 | 261 | 326 | 66 | Gaps:1 | 98.48 | 66 | 50.77 | 21.54 | 7e-15 | smart00388 HisKA His Kinase A (phosphoacceptor) domain. Dimerisation and phosphoacceptor domain of histidine kinases. |
gnl|CDD|170942 | 220 | 346 | 127 | Gaps:16 | 14.51 | 779 | 38.05 | 24.78 | 4e-14 | PRK11091 PRK11091 aerobic respiration control sensor protein ArcB Provisional. |
gnl|CDD|119399 | 261 | 322 | 62 | n/a | 95.38 | 65 | 43.55 | 22.58 | 1e-13 | cd00082 HisKA Histidine Kinase A (dimerization/phosphoacceptor) domain Histidine Kinase A dimers are formed through parallel association of 2 domains creating 4-helix bundles usually these domains contain a conserved His residue and are activated via trans-autophosphorylation by the catalytic domain of the histidine kinase. They subsequently transfer the phosphoryl group to the Asp acceptor residue of a response regulator protein. Two-component signalling systems consisting of a histidine protein kinase that senses a signal input and a response regulator that mediates the output are ancient and evolutionarily conserved signaling mechanisms in prokaryotes and eukaryotes.. |
gnl|CDD|30987 | 251 | 344 | 94 | Gaps:3 | 27.68 | 336 | 35.48 | 24.73 | 3e-13 | COG0642 BaeS Signal transduction histidine kinase [Signal transduction mechanisms]. |
gnl|CDD|117024 | 12 | 91 | 80 | Gaps:3 | 92.22 | 90 | 28.92 | 19.28 | 9e-13 | pfam08447 PAS_3 PAS fold. The PAS fold corresponds to the structural domain that has previously been defined as PAS and PAC motifs. The PAS fold appears in archaea eubacteria and eukarya. |
rpsblast_kog | gnl|CDD|35739 | 232 | 337 | 106 | Gaps:3 | 13.10 | 786 | 34.95 | 22.33 | 2e-09 | KOG0519 KOG0519 KOG0519 Sensory transduction histidine kinase [Signal transduction mechanisms]. |