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1.
Developmental mutants isolated from wild-caught Xenopus laevis by gynogenesis and inbreeding 总被引:4,自引:0,他引:4
Xenopus laevis obtained from indigenous African populations are a rich source of mutants affecting development. Gynogenesis and inbreeding were used to isolate mutants affecting development from wild-caught Xenopus laevis females. Fourteen mutants were recovered from eight females tested. One mutant was recovered from each of two females. This load of 1.875 developmental mutants per female is similar to that found in the axolotl (Ambystoma mexicanum), a urodele amphibian, and is only slightly less than the load of mutants with major developmental effects found in Drosophila and man. These results suggest that the anuran amphibian Xenopus laevis, an ancestrally tetraploid species, has undergone extensive diploidization of developmentally important loci and that gynogenesis and inbreeding of wild-caught animals can provide adequate mutants at diploid loci for developmental genetic studies. 相似文献
2.
Hellmuth Broda Doug Brugge Keiichi Homma J. Woodland Hastings 《Cell biochemistry and biophysics》1986,8(1):47-67
Populations ofGonyaulax polyedra, in two different phases, about 11 h apart, were mixed, and the intensity of their spontaneous bioluminescence glow recorded for about 2 wk under conditions of constant dim (35±3 μE/m2/s) white light and constant temperature (19.0±0.3°C). The phases and amplitudes of glow signals recorded from mixed cultures were compared with those obtained from the arithmetic sum of the intensity data from two control vials. Peaks in control cultures generally remained separate, but there was a spontaneous increase in the period beginning 6–11 d after the onset of constant conditions. This did not occur in cultures in which the medium was exchanged with fresh medium every 2 d. In the actual mixes of two cultures there was a merging of the two subpeaks in the signal, which did not occur when the medium was exchanged. The results indicate that conditioning of the medium by cells may affect the period of the circadian rhythm and that this might result in a type of communication. Supported by the Deutsche Forschungsgemeinschaft; present address 相似文献
3.
Scott E. Johnson M. Xenia G. Ilagan Raphael Kopan Doug Barrick 《The Journal of biological chemistry》2010,285(9):6681-6692
4.
A protein dynamics study of photosystem II: the effects of protein conformation on reaction center function 总被引:2,自引:0,他引:2
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Molecular dynamics simulations have been performed to study photosystem II structure and function. Structural information obtained from simulations was combined with ab initio computations of chromophore excited states. In contrast to calculations based on the x-ray structure, the molecular-dynamics-based calculations accurately predicted the experimental absorbance spectrum. In addition, our calculations correctly assigned the energy levels of reaction-center (RC) chromophores, as well as the lowest-energy antenna chlorophyll. The primary and secondary quinone electron acceptors, QA and QB, exhibited independent changes in position over the duration of the simulation. QB fluctuated between two binding sites similar to the proximal and distal sites previously observed in light- and dark-adapted RC from purple bacteria. Kinetic models were used to characterize the relative influence of chromophore geometry, site energies, and electron transport rates on RC efficiency. The fluctuating energy levels of antenna chromophores had a larger impact on quantum yield than did their relative positions. Variations in electron transport rates had the most significant effect and were sufficient to explain the experimentally observed multi-component decay of excitation in photosystem II. The implications of our results are discussed in the context of competing evolutionary selection pressures for RC structure and function. 相似文献
5.
Li H Hong Y Nukui S Lou J Johnson S Scales S Botrous I Tompkins E Yin C Zhou R He M Jensen J Bouzida D Alton G Lafontaine J Grant S 《Bioorganic & medicinal chemistry letters》2011,21(1):584-587
A novel series of pyrrolopyrazole-based protein kinase C β II inhibitors has been identified from high-throughput screening. Herein, we report our initial structure-activity relationship studies with a focus on optimizing compound ligand efficiency and physicochemical properties, which has led to potent inhibitors with good cell permeability. 相似文献
6.
7.
Rivalta I Amin M Luber S Vassiliev S Pokhrel R Umena Y Kawakami K Shen JR Kamiya N Bruce D Brudvig GW Gunner MR Batista VS 《Biochemistry》2011,50(29):6312-6315
Chloride binding in photosystem II (PSII) is essential for photosynthetic water oxidation. However, the functional roles of chloride and possible binding sites, during oxygen evolution, remain controversial. This paper examines the functions of chloride based on its binding site revealed in the X-ray crystal structure of PSII at 1.9 ? resolution. We find that chloride depletion induces formation of a salt bridge between D2-K317 and D1-D61 that could suppress the transfer of protons to the lumen. 相似文献
8.
Apidianakis Y Mindrinos MN Xiao W Tegos GP Papisov MI Hamblin MR Davis RW Tompkins RG Rahme LG 《PloS one》2007,2(12):e1356
Despite recent advances in our understanding the pathophysiology of trauma, the basis of the predisposition of trauma patients to infection remains unclear. A Drosophila melanogaster/Pseudomonas aeruginosa injury and infection model was used to identify host genetic components that contribute to the hyper-susceptibility to infection that follows severe trauma. We show that P. aeruginosa compromises skeletal muscle gene (SMG) expression at the injury site to promote infection. We demonstrate that activation of SMG structural components is under the control of cJun-N-terminal Kinase (JNK) Kinase, Hemipterous (Hep), and activation of this pathway promotes local resistance to P. aeruginosa in flies and mice. Our study links SMG expression and function to increased susceptibility to infection, and suggests that P. aeruginosa affects SMG homeostasis locally by restricting SMG expression in injured skeletal muscle tissue. Local potentiation of these host responses, and/or inhibition of their suppression by virulent P. aeruginosa cells, could lead to novel therapies that prevent or treat deleterious and potentially fatal infections in severely injured individuals. 相似文献
9.
Ryan Tewhey Masakazu Nakano Xiaoyun Wang Carlos Pabón-Peña Barbara Novak Angelica Giuffre Eric Lin Scott Happe Doug N Roberts Emily M LeProust Eric J Topol Olivier Harismendy Kelly A Frazer 《Genome biology》2009,10(10):1-13
Background
Genome sequences, now available for most pathogens, hold promise for the rational design of new therapies. However, biological resources for genome-scale identification of gene function (notably genes involved in pathogenesis) and/or genes essential for cell viability, which are necessary to achieve this goal, are often sorely lacking. This holds true for Neisseria meningitidis, one of the most feared human bacterial pathogens that causes meningitis and septicemia.Results
By determining and manually annotating the complete genome sequence of a serogroup C clinical isolate of N. meningitidis (strain 8013) and assembling a library of defined mutants in up to 60% of its non-essential genes, we have created NeMeSys, a biological resource for Neisseria meningitidis systematic functional analysis. To further enhance the versatility of this toolbox, we have manually (re)annotated eight publicly available Neisseria genome sequences and stored all these data in a publicly accessible online database. The potential of NeMeSys for narrowing the gap between sequence and function is illustrated in several ways, notably by performing a functional genomics analysis of the biogenesis of type IV pili, one of the most widespread virulence factors in bacteria, and by identifying through comparative genomics a complete biochemical pathway (for sulfur metabolism) that may potentially be important for nasopharyngeal colonization.Conclusions
By improving our capacity to understand gene function in an important human pathogen, NeMeSys is expected to contribute to the ongoing efforts aimed at understanding a prokaryotic cell comprehensively and eventually to the design of new therapies. 相似文献10.
Scott E. Wolkenberg Zhijian Zhao David D. Wisnoski William H. Leister Julie O’Brien Wei Lemaire David L. Williams Marlene A. Jacobson Cyrille Sur Gene G. Kinney Doug J. Pettibone Philip R. Tiller Sheri Smith Christopher Gibson Bennett K. Ma Stacey L. Polsky-Fisher Craig W. Lindsley George D. Hartman 《Bioorganic & medicinal chemistry letters》2009,19(5):1492-1495
Glycine transporter 1 (GlyT1) represents a novel target for the treatment of schizophrenia via the potentiation of glutamatergic NMDA receptors. The discovery of 4,4-disubstituted piperidine inhibitors of GlyT1 which exhibit improved pharmacokinetic properties, including oral bioavailability, is discussed. 相似文献