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【背景】抗生素的无序使用加剧了耐药性金黄色葡萄球菌超级菌株的出现,由其引发的感染已成为最难解决的感染性疾患。在生物体系外构建AgrA/C双组分系统的跨膜信号转导过程,对解决金黄色葡萄球菌的耐药性问题和发现新型抗菌药物具有重要的研究意义。【目的】人工模拟构建金黄色葡萄球菌AgrA/C双组分信号转导模型,为生物体外研究金黄色葡萄球菌双组分信号转导的机制及以其为靶点的药物筛选提供新途径。【方法】在大肠杆菌宿主细胞中大量表达AgrA和Agr C蛋白,利用亲和层析和分子筛凝胶层析对其进行分离纯化,利用非放射性凝胶阻滞实验(EMSA)检测AgrA蛋白活性,并检测Agr C激酶活性;进而利用脂质体介导法在体外组装AgrA/C双组分信号转导模型,应用EMSA方法进行评价。【结果】分离纯化得到AgrA和Agr C蛋白,二者纯度均达到90%以上,均具有活性。在生物体系外构建了金黄色葡萄球菌AgrA/C双组分信号转导模型,该系统可增强AgrA对DNA的延滞作用,具有信号传递功能。【结论】初步构建AgrA/C双组分信号转导模型,该模型具有信号传递能力,有望作为针对金黄色葡萄球菌开发新型抗菌药物的筛选平台。 相似文献
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F.Michael Hoffmann 《Trends in genetics : TIG》1991,7(11-12)
Genetic studies on Drosophila Abl and, more recently, on mouse c-Abl and c-Src indicate that the functions of these non-receptor tyrosine kinases may duplicate activities of other molecules within signal transduction pathways. In Drosophila, second-site mutations have been recovered that disrupt the redundant functions so that the Abl tyrosine kinase is essential to the formation of axonal connections in the embryonic central nervous system and for attachment of embryonic muscles to the body wall. Molecular isolation and analysis of the genes identified by these second-site mutations should define the molecular basis for the genetic redundancy. 相似文献
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Evolutionary history of the enolase gene family 总被引:4,自引:0,他引:4
The enzyme enolase [EC 4.2.1.11] is found in all organisms, with vertebrates exhibiting tissue-specific isozymes encoded by three genes: alpha (alpha), beta (beta), and gamma (gamma) enolase. Limited taxonomic sampling of enolase has obscured the timing of gene duplication events. To help clarify the evolutionary history of the gene family, cDNAs were sequenced from six taxa representing major lineages of vertebrates: Chiloscyllium punctatum (shark), Amia calva (bowfin), Salmo trutta (trout), Latimeria chalumnae (coelacanth), Lepidosiren paradoxa (South American lungfish), and Neoceratodus forsteri (Australian lungfish). Phylogenetic analysis of all enolase and related gene sequences revealed an early gene duplication event prior to the last common ancestor of living organisms. Several distantly related archaebacterial sequences were designated as 'enolase-2', whereas all other enolase sequences were designated 'enolase-1'. Two of the three isozymes of enolase-1, alpha- and beta-enolase, were discovered in actinopterygian, sarcopterygian, and chondrichthian fishes. Phylogenetic analysis of vertebrate enolases revealed that the two gene duplications leading to the three isozymes of enolase-1 occurred subsequent to the divergence of living agnathans, near the Proterozoic/Phanerozoic boundary (approximately 550Mya). Two copies of enolase, designated alpha(1) and alpha(2), were found in the trout and are presumed to be the result of a genome duplication event. 相似文献
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Information processing in neurobiological systems is commonly thought to rely on the assessment of a signal-to-noise ratio
as the key mechanism of signal detection; it assumes and requires that both signal and noise are concurrently available. An
alternative theory holds that detection proceeds by the system appreciating any instantaneous input by the input’s departure
from the moving average of past activity. The evidence reviewed here suggests that this latter transduction mechanism provides
a unique, formal account of the highly dynamic, neuroadaptative plasticity (i.e., tolerance, dependence, sensitization) that
ensues upon μ-opioid receptor activation. The mechanism would appear already to operate with the receptor-G protein coupling
that occurs upon agonist binding to μ-opioid receptors, and also with highly integrated responses such as whole-organism analgesia.
The mechanism may perhaps operate ubiquitously with further neuronal and non-neuronal, cell surface, and intracellular-signaling
systems, and may govern the experience-dependent regulation of synaptic strength. The transduction mechanism defines a continuously
evolving process; the process’s most peculiar feature is that it makes any input generate not one but two outcomes that are
paradoxical, or opposite in sign. 相似文献
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Two-component systems in plant signal transduction 总被引:16,自引:0,他引:16
In plants, two-component systems play important roles in signal transduction in response to environmental stimuli and growth regulators. Genetic and biochemical analyses indicate that sensory hybrid-type histidine kinases, ETR1 and its homologs, function as ethylene receptors and negative regulators in ethylene signaling. Two other hybrid-type histidine kinases, CKI1 and ATHK1, are implicated in cytokinin signaling and osmosensing processes, respectively. A data base search of Arabidopsis ESTs and genome sequences has identified many homologous genes encoding two-component regulators. We discuss the possible origins and functions of these two-component systems in plants. 相似文献
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Two-component systems that link environmental signals to cellular responses are viewed as the primary mode of signal transduction in prokaryotes. By analyzing information encoded by 145 prokaryotic genomes, we found that the majority of signal transduction systems consist of a single protein that contains input and output domains but lacks phosphotransfer domains typical of two-component systems. One-component systems are evolutionarily older, more widely distributed among bacteria and archaea, and display a greater diversity of domains than two-component systems. 相似文献
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Upon bacterial infection, insects secrete a set of synthesized antibacterial proteins into the hemolymph and initiate synergistic
destruction of invaders. Cecropin is one such antibacterial protein which is also found in vertebrates. To study the evolutionary
history and mechanism of the Cecropin gene family, we determined DNA sequences of one isogenic In(3R)C and six isofemale lines of Drosophila melanogaster as well as one line of D. simulans and of D. yakuba. The phylogenetic analysis of these sequences together with those published for D. virilis and Sarcophaga peregrina reveals frequent gene re-organization. It was also found that silent nucleotide differences within D. melanogaster are quite heterogeneous across the gene region of approximately 3 kilobases and the extent of polymorphism is unusually usually
high. These data suggest that the Cecropin gene region of D. melanogaster underwent intragenic recombination as well as introgression from a closely related sibling species, D. simulans.
Received: 31 July 1997 / Revised: 24 October 1997 相似文献
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Skerker JM Perchuk BS Siryaporn A Lubin EA Ashenberg O Goulian M Laub MT 《Cell》2008,133(6):1043-1054
Two-component signal transduction systems are the predominant means by which bacteria sense and respond to environmental stimuli. Bacteria often employ tens or hundreds of these paralogous signaling systems, comprised of histidine kinases (HKs) and their cognate response regulators (RRs). Faithful transmission of information through these signaling pathways and avoidance of detrimental crosstalk demand exquisite specificity of HK-RR interactions. To identify the determinants of two-component signaling specificity, we examined patterns of amino acid coevolution in large, multiple sequence alignments of cognate kinase-regulator pairs. Guided by these results, we demonstrate that a subset of the coevolving residues is sufficient, when mutated, to completely switch the substrate specificity of the kinase EnvZ. Our results shed light on the basis of molecular discrimination in two-component signaling pathways, provide a general approach for the rational rewiring of these pathways, and suggest that analyses of coevolution may facilitate the reprogramming of other signaling systems and protein-protein interactions. 相似文献
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Background
Klebsiella pneumoniae is a Gram-negative, non-motile, facultative anaerobe belonging to the Enterobacteriaceae family of the γ-Proteobacteria class in the phylum Proteobacteria. Multidrug resistant K. pneumoniae have caused major therapeutic problems worldwide due to emergence of extended-spectrum β-lactamase producing strains. Two-component systems serve as a basic stimulus-response coupling mechanism to allow organisms to sense and respond to changes in many different environmental conditions including antibiotic stress.Principal Findings
In the present study, we investigated the role of an uncharacterized cpxAR operon in bacterial physiology and antimicrobial resistance by generating isogenic mutant (ΔcpxAR) deficient in the CpxA/CpxR component derived from the hyper mucoidal K1 strain K. pneumoniae NTUH-K2044. The behaviour of ΔcpxAR was determined under hostile conditions, reproducing stresses encountered in the gastrointestinal environment and deletion resulted in higher sensitivity to bile, osmotic and acid stresses. The ΔcpxAR was more susceptible to β-lactams and chloramphenicol than the wild-type strain, and complementation restored the altered phenotypes. The relative change in expression of acrB, acrD, eefB efflux genes were decreased in cpxAR mutant as evidenced by qRT-PCR. Comparison of outer membrane protein profiles indicated a conspicuous difference in the knock out background. Gel shift assays demonstrated direct binding of CpxRKP to promoter region of ompC KP in a concentration dependent manner.Conclusions and Significance
The Cpx envelope stress response system is known to be activated by alterations in pH, membrane composition and misfolded proteins, and this systematic investigation reveals its direct involvement in conferring antimicrobial resistance against clinically significant antibiotics for the very first time. Overall results displayed in this report reflect the pleiotropic role of the CpxAR signaling system and diversity of the antibiotic resistome in hyper virulent K1 serotype K. pneumoniae NTUH-K2044. 相似文献15.
An intersection of the cAMP/PKA and two-component signal transduction systems in Dictyostelium. 总被引:2,自引:0,他引:2 下载免费PDF全文
P A Thomason D Traynor G Cavet W T Chang A J Harwood R R Kay 《The EMBO journal》1998,17(10):2838-2845
Terminal differentiation of both stalk and spore cells in Dictyostelium can be triggered by activation of cAMP-dependent protein kinase (PKA). A screen for mutants where stalk and spore cells mature in isolation produced three genes which may act as negative regulators of PKA: rdeC (encoding the PKA regulatory subunit), regA and rdeA. The biochemical properties of RegA were studied in detail. One domain is a cAMP phosphodiesterase (Km approximately 5 microM); the other is homologous to response regulators (RRs) of two-component signal transduction systems. It can accept phosphate from acetyl phosphate in a reaction typical of RRs, with transfer dependent on Asp212, the predicted phosphoacceptor. RegA phosphodiesterase activity is stimulated up to 8-fold by the phosphodonor phosphoramidate, with stimulation again dependent on Asp212. This indicates that phosphorylation of the RR domain activates the phosphodiesterase domain. Overexpression of the RR domain in wild-type cells phenocopies a regA null. We interpret this dominant-negative effect as due to a diversion of the normal flow of phosphates from RegA, thus preventing its activation. Mutation of rdeA is known to produce elevated cAMP levels. We propose that cAMP breakdown is controlled by a phosphorelay system which activates RegA, and may include RdeA. Cell maturation should be triggered when this system is inhibited. 相似文献
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The review summarizes recent data and current opinions of the structural and functional organization of the known signalling systems and their functional elements. A possible role of adenylate cyclase, phosphoinositide, guanylate cyclase, tyrosine kinase systems and also of arachidonic acid, its oxygenated derivatives and of other fatty acids in intracellular signalling processes is discussed. 相似文献
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G protein multiplicity in eukaryotic signal transduction systems 总被引:28,自引:0,他引:28