コーパス検索結果 (1語後でソート)
通し番号をクリックするとPubMedの該当ページを表示します
1 s ideal for analysing ligand regulation of a sensor histidine kinase.
2 regulation of the sensor domain of the YycG sensor histidine kinase.
3 gnated absA1, which is predicted to encode a sensor histidine kinase.
4 and extensive structural flexibility in the sensor histidine kinase.
5 rter interacting with a two-component system sensor histidine kinase.
6 are commonly located at the amino termini of sensor histidine kinases.
7 in with primary structural features found in sensor histidine kinases.
8 romes (BphPs) with homology to two-component sensor histidine kinases.
10 led by two-component systems that comprise a sensor histidine kinase and a cognate DNA binding respon
11 re typically composed of a membrane-spanning sensor histidine kinase and a cytoplasmic response regul
12 nt regulatory systems (2CRs) consisting of a sensor histidine kinase and a DNA-binding response regul
15 , which is comprised of genes for a putative sensor histidine kinase and two response regulators and
17 transduction systems with membrane-embedded sensor histidine kinases are believed to recognize envir
22 t signal transduction system, comprised of a sensor histidine kinase (ArsS) and a response regulator
24 Upon receipt of a stimulus, a homodimeric sensor histidine kinase autophosphorylates and then tran
27 l and glubolar C-terminal structure, and the sensor histidine kinase BovK contains eight transmembran
28 t signals binding to sensor domains activate sensor histidine kinases by causing localized strain and
30 In the prototypical two-component system, a sensor histidine kinase catalyzes its autophosphorylatio
33 41, a pea-nodulating endosymbiont, encodes a sensor histidine kinase containing a LOV domain at the N
36 amino terminus of signaling proteins such as sensor histidine kinases, cyclic-di-GMP synthases/hydrol
38 gnal transduction proteins such as bacterial sensor histidine kinases, designed to transition between
40 volves specific sensing of ethanolamine by a sensor histidine kinase (EutW), resulting in autophospho
41 in Caulobacter crescentus consisting of the sensor histidine kinase FixL, its cognate response regul
43 s comprised of receptors that are similar to sensor histidine kinases, histidine-containing phosphotr
45 ly involves two-component systems in which a sensor histidine kinase (HK) autophosphorylates in respo
46 two-component systems (TCS) which comprise a sensor histidine kinase (HK) containing a phosphorylatab
47 ails signal-induced autophosphorylation of a sensor histidine kinase (HK) followed by phosphoryl tran
51 addition, we show that signaling between the sensor histidine kinase HssS and the response regulator
52 of autophosphorylation in vitro of the HK17 sensor histidine kinase, indicating that this is the lig
53 e Bacillus anthracis BA2291 gene codes for a sensor histidine kinase involved in the induction of spo
55 ospho-AbsA2), generated by the cognate AbsA1 sensor histidine kinase, is required for normal growth p
56 f contact positions in the Bacillus subtilis sensor histidine kinase KinA and by restoration of activ
57 that biofilm formation was dependent on the sensor histidine kinase KinD and in particular on an ext
64 issense mutations in bfmS, which encodes the sensor histidine kinase of the BfmRS two-component syste
65 to be a membrane-bound, PAS-domain-bearing, sensor histidine kinase of two-component regulatory syst
68 f the stomach, the organism expresses two pH-sensor histidine kinases, one, HP0165, responding to a m
69 plasmic domain of the Bacillus subtilis PhoR sensor histidine kinase, part of a two-component system
70 we present the report of a c-di-GMP sensing sensor histidine kinase PdtaS (Rv3220c), which binds to
71 s monitor environmental parameters through a sensor histidine-kinase/phosphatase, which phosphorylate
72 study on the tandem sensor domains of a dual-sensor histidine kinase PPHK (phosphorylation-responsive
73 However, the PYP domain (Ppr-PYP) from the sensor histidine kinase Ppr in Rhodospirillum centenum,
79 s have indicated that the TCS comprising the sensor histidine kinase RgfC and the response regulator
80 Newman and some other S. aureus strains, the sensor histidine kinase SaeS has an L18P (T53C in saeS)
81 esents a template for signal transduction in sensor histidine kinases.Sensor histidine kinases (SHK)
82 and bound to and inhibited the intramembrane sensor histidine kinase SGO_1180, thus preventing activa
86 nella oneidensis directly interacts with the sensor histidine kinase (SO2145), binds NO in a 5-coordi
87 anonical system consists of a membrane-bound sensor histidine kinase that autophosphorylates in respo
90 ansduction pathways, typically composed of a sensor histidine kinase that receives the input stimuli
92 gnalling pathways, which typically involve a sensor histidine kinase that specifically phosphorylates
94 Sporulation is regulated by at least five sensor histidine kinases that are activated in response
95 ed by the phosphorelay consisting of several sensor histidine kinases, the Spo0F response regulator,
96 stimulus via phosphotransfer from a cognate sensor histidine kinase to a specific aspartate residue.
97 TolR protein was engineered as a functional sensor histidine kinase (TolRSK) and an independent resp
99 his study, we report the identification of a sensor histidine kinase, VpsS, which can control biofilm
101 the HisKA domain of B. subtilis sporulation sensor histidine kinases, which interacts with Spo0F.
102 e gene (mesS) encoding the predicted cognate sensor (histidine) kinase yielded a mutant with the same
104 n by any of the extracellular domains of the sensor histidine kinase YycG or the associated proteins