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91.
92.
Hyaluronan lyase (Hyal) is a surface enzyme occurring in many bacterial organisms including members of Streptococcus species. Streptococcal Hyal primarily degrades hyaluronan‐substrate (HA) of the extracellular matrix. This degradation appears to facilitate the spread of this bacterium throughout host tissues. Unlike purely endolytic degradation of its other substrates, unsulfated chondroitin or some chondroitin sulfates, the degradation of HA by Hyal proceeds by processive exolytic cleavage of one disaccharide at a time following an initial endolytic cut. Molecular dynamics (MD) studies of Hyal from Streptococcus pneumoniae are presented that address the enzyme's molecular mechanism of action and the role of domain motions for processive functionality. The analysis of extensive sub‐microsecond MD simulations of this enzyme action on HA‐substrates of different lengths and the connection between the domain dynamics of Hyal and the translocation of the HA‐substrate reveals that opening/closing and twisting domain motions of the Hyal are intimately linked to processive HA degradation. Enforced simulations confirmed this finding as the domain motions in SpnHyal were found to be induced by enforced substrate translocation. These results establish the dynamic interplay between Hyal flexibility and substrate translocation and provide insight into the processive mechanism of Hyal. Proteins 2009. © 2008 Wiley‐Liss, Inc. 相似文献
93.
Siladitya Pal Alkiviadis Tsamis Salvatore Pasta Antonio D'Amore Thomas G. Gleason David A. Vorp Spandan Maiti 《Journal of biomechanics》2014
Aortic dissection (AoD) is a common condition that often leads to life-threatening cardiovascular emergency. From a biomechanics viewpoint, AoD involves failure of load-bearing microstructural components of the aortic wall, mainly elastin and collagen fibers. Delamination strength of the aortic wall depends on the load-bearing capacity and local micro-architecture of these fibers, which may vary with age, disease and aortic location. Therefore, quantifying the role of fiber micro-architecture on the delamination strength of the aortic wall may lead to improved understanding of AoD. We present an experimentally-driven modeling paradigm towards this goal. Specifically, we utilize collagen fiber micro-architecture, obtained in a parallel study from multi-photon microscopy, in a predictive mechanistic framework to characterize the delamination strength. We then validate our model against peel test experiments on human aortic strips and utilize the model to predict the delamination strength of separate aortic strips and compare with experimental findings. We observe that the number density and failure energy of the radially-running collagen fibers control the peel strength. Furthermore, our model suggests that the lower delamination strength previously found for the circumferential direction in human aorta is related to a lower number density of radially-running collagen fibers in that direction. Our model sets the stage for an expanded future study that could predict AoD propagation in patient-specific aortic geometries and better understand factors that may influence propensity for occurrence. 相似文献
94.
岷江上游典型时期景观格局变化及驱动力初步分析 总被引:18,自引:6,他引:18
岷江上游地区是我国一个重要的大尺度、复合型生态过渡带,也是一个生态系统脆弱区,研究其景观格局的变化,对于构筑我国的生态格局安全具有十分重要的意义.本研究利用岷江上游地区1986、1995、2000年3个时期的TM影像,分析了3个时期的景观特征以及变化.结果表明,岷江上游整体景观水平以草地景观为基质、森林景观以及其他景观类型作为斑块镶嵌其中.森林景观面积经历了从1986~1995年的上升,而后到2000年的下降过程;草地景观高盖度草面积不断减少;同时,森林景观和草地景观斑块总数一直增加,破碎化趋势明显.岷江上游景观格局变化的驱动因子主要是日益增加的人口数量而导致的人为干扰,包括对土地利用方式与利用强度的改变、森林资源的掠夺性开采、草地资源的过度放牧以及气候、土壤等自然因素的变化. 相似文献
95.
AutoDock is a small-molecule docking program that uses an energy function to score docked ligands. Here AutoDock's grid-based method for energy evaluation was exploited to evaluate the force exerted by Fusarium oxysporum Cel7B on the atoms of docked cellooligosaccharides and a thiooligosaccharide substrate analog. Coupled with the interaction energies evaluated for each docked ligand, these forces give insight into the dynamics of the ligand in the active site, and help to elucidate the relative importance of specific enzyme-substrate interactions in stabilizing the substrate transition-state conformation. The processive force on the docked substrate in the F. oxysporum Cel7B active site is less than half of that on the docked substrate in the Hypocrea jecorina Cel7A active site. Hydrogen bonding interactions of the enzyme with the C2 hydroxyl group of the glucosyl residue in subsite -2 and with the C3 hydroxyl group of the glucosyl residue in subsite +1 are the most significant in stabilizing the distorted14B transition-state conformation of the glucosyl residue in subsite -1. The force calculations also help to elucidate the mechanism that prevents the active site from fouling. 相似文献
96.
Atomic Force Microscopy (AFM) resolved the topography and mechanical properties of two distinct adhesive mucilages secreted by the marine, fouling diatom Craspedostauros australis. Tapping mode images of live cells revealed a soft and cohesive outer mucilage layer that encased most of the diatom's siliceous wall, and force curves revealed an adhesive force of 3.58 nN. High loading force, contact mode imaging resulted in cantilever 'cleaned' cell walls, which enabled the first direct observation of the active secretion of soft mucilage via pore openings. A second adhesive mucilage consisted of strands secreted at the raphe, a distinct slit in the silica wall involved in cell-substratum attachment and motility. Force measurements revealed a raphe adhesive strand(s) resistant to breaking forces up to 60 nN, and these strands could only be detached from the AFM cantilever probe using the manual stepper motor. 相似文献
97.
98.
不同灵芝子实体及其粗多糖中微量元素及重金属含量分析* 总被引:1,自引:0,他引:1
利用电感耦合等离子发射光谱-质谱联用法(ICP-MS)、原子荧光法(AFS)和原子吸收法(AAS)对不同品种灵芝子实体中的生物必需微量元素、有毒的微量元素及重金属元素的含量进行了测定,并对其营养性和安全性进行了分析。与砷、镉、汞相比,在所有品种的灵芝中重金属铅的含量相对较高,但是在对全国各地收集的灵芝及其培养基分析,灵芝对铅没有生物富集的作用。另外,灵芝粗多糖中各种元素的含量均明显高于提取用的灵芝子实体,其中铅和砷含量高于国家标准,其安全性应该受到重视。 相似文献
99.
Kirsti Hllsten Hannele Yki‐Jrvinen Pauliina Peltoniemi Vesa Oikonen Teemu Takala Jukka Kemppainen Hanna Laine Jrgen Bergman Geremia B. Bolli Juhani Knuuti Pirjo Nuutila 《Obesity (Silver Spring, Md.)》2003,11(2):257-265
Objective: Insulin resistance in obese subjects results in the impaired use of glucose by insulin‐sensitive tissues, e.g., skeletal muscle. In the present study, we determined whether insulin resistance in obesity is associated with an impaired ability of exercise to stimulate muscle blood flow, oxygen delivery, or glucose uptake. Research Methods and Procedures: Nine obese (body mass index = 36 ± 2 kg/m2) and 11 age‐matched nonobese men (body mass index = 22 ± 1 kg/m2) performed one‐legged isometric exercise during hyperinsulinemia. Rates of femoral muscle blood flow, oxygen consumption, and glucose uptake were measured simultaneously in both legs using [15O]H2O, [15O]O2, [18F]fluoro‐deoxy‐glucose, and positron emission tomography. Results: The obese subjects exhibited resistance to insulin stimulation of glucose uptake in resting muscle, regardless of whether glucose uptake was expressed per kilogram of femoral muscle mass (p = 0.001) or per the total mass of quadriceps femoris muscle. At similar workloads, oxygen consumption, blood flow, and glucose uptake were lower in the obese than the nonobese subjects when expressed per kilogram of muscle, but similar when expressed per quadriceps femoris muscle mass. Discussion: We conclude that obesity is characterized by insulin resistance of glucose uptake in resting skeletal muscle regardless of how glucose uptake is expressed. When compared with nonobese individuals at similar absolute workloads and under identical hyperinsulinemic conditions, the ability of exercise to increase muscle oxygen uptake, blood flow, and glucose uptake per muscle mass is blunted in obese insulin‐resistant subjects. However, these defects are compensated for by an increase in muscle mass. 相似文献
100.
M.J Ridout G.J Brownsey A.P Gunning V.J Morris 《International journal of biological macromolecules》1998,23(4):287-293
The molecular weight of the extracellular polysaccharide (CR1/4) produced by Acetobacter xylinum strain CR1/4 has been shown to be dependent upon growth conditions. Under normal growth conditions a high molecular weight polysaccharide (>1×106 Da) is produced. Maintaining the pH at 5 results in an order of magnitude increase in the total yield of polysaccharide, but also an order of magnitude decrease in molecular weight. Analysis of the CR1/4 polysaccharides by the techniques of atomic force microscopy and static light scattering suggests that they are double helices. In solution the molecules behave as stiff coils with a Kuhn statistical segment length of 325 nm. 相似文献