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101.
102.
Andreas Heine Gloria Herrmann Thorsten Selmer Felix Terwesten Wolfgang Buckel Klaus Reuter 《Proteins》2014,82(9):2041-2053
Clostridium propionicum is the only organism known to ferment β‐alanine, a constituent of coenzyme A (CoA) and the phosphopantetheinyl prosthetic group of holo‐acyl carrier protein. The first step in the fermentation is a CoA‐transfer to β‐alanine. Subsequently, the resulting β‐alanyl‐CoA is deaminated by the enzyme β‐alanyl‐CoA:ammonia lyase (Acl) to reversibly form ammonia and acrylyl‐CoA. We have determined the crystal structure of Acl in its apo‐form at a resolution of 0.97 Å as well as in complex with CoA at a resolution of 1.59 Å. The structures reveal that the enyzme belongs to a superfamily of proteins exhibiting a so called “hot dog fold” which is characterized by a five‐stranded antiparallel β‐sheet with a long α‐helix packed against it. The functional unit of all “hot dog fold” proteins is a homodimer containing two equivalent substrate binding sites which are established by the dimer interface. In the case of Acl, three functional dimers combine to a homohexamer strongly resembling the homohexamer formed by YciA‐like acyl‐CoA thioesterases. Here, we propose an enzymatic mechanism based on the crystal structure of the Acl·CoA complex and molecular docking. Proteins 2014; 82:2041–2053. © 2014 Wiley Periodicals, Inc. 相似文献
103.
Roy Anderson James Truscott T. Deirdre Hollingsworth 《Philosophical transactions of the Royal Society of London. Series B, Biological sciences》2014,369(1645)
A combination of methods, including mathematical model construction, demographic plus epidemiological data analysis and parameter estimation, are used to examine whether mass drug administration (MDA) alone can eliminate the transmission of soil-transmitted helminths (STHs). Numerical analyses suggest that in all but low transmission settings (as defined by the magnitude of the basic reproductive number, R0), the treatment of pre-school-aged children (pre-SAC) and school-aged children (SAC) is unlikely to drive transmission to a level where the parasites cannot persist. High levels of coverage (defined as the fraction of an age group effectively treated) are required in pre-SAC, SAC and adults, if MDA is to drive the parasite below the breakpoint under which transmission is eliminated. Long-term solutions to controlling helminth infections lie in concomitantly improving the quality of the water supply, sanitation and hygiene (WASH). MDA, however, is a very cost-effective tool in long-term control given that most drugs are donated free by the pharmaceutical industry for poor regions of the world. WASH interventions, by lowering the basic reproductive number, can facilitate the ability of MDA to interrupt transmission. 相似文献
104.
Lin Han Hwa Sung Lee Jung Hwan Yoon Won Suk Choi Yong Gyu Park Suk Woo Nam Jung Young Lee Won Sang Park 《Gene》2014
The damage incurred in osteoarthritis (OA) is mediated by a variety of cytokines, growth factors and inflammatory mediators. The importance of the interleukin-17 (IL-17) family in inflammatory and autoimmune disease is becoming increasingly apparent. Microsatellite association mapping reveals a primary osteoarthritis susceptibility locus on chromosome 6p12.3-q13. IL-17A and IL-17F genes that resided on chromosome 6p12.3-q13 are believed to play an important role in the primary OA susceptibility. We investigated the allele and genotype of IL-17A G-197A and IL-17F T7488C in 302 OA patients and 300 healthy subjects as controls. We employed a PCR-SSCP assay to identify the genotypes IL-17A G-197A and IL-17F T7488C. For IL-17A G-197A, there were significant differences in frequencies of genotype and allele of IL-17A G-197A between OA patients and controls (both p < 0.0001). For IL-17F T7488C, there were no significant differences in the allele frequency and genotype distribution for IL-17F T7488C between OA patients and controls (p = 0.938 and p = 0.1735, respectively). In conclusion, current study showed that polymorphism of IL-17A G-197A may be closely associated with susceptibility to the development of OA in the Korean population. However, there was no relationship between IL-17F T7488C polymorphism and OA susceptibility. 相似文献
105.
目的:探讨长半衰期药物(t1/2〉24h)在无清洗期时生物等效性研究中的AUC和Cmax的计算,通过无清洗期的实验数据推算出正常清洗期的数据。方法:利用SPSS软件,建立二室模型口服药物在无清洗期时的半衰期为100小时的生物等效性模型,通过优化AUC和Cmax的计算方法,降低药物残留对第二周期药物浓度的影响,进而增加AUC和Cmax的计算的精确性,最后用较精确的方法推算出正常清洗期的AUC和Cmax,利用精确的数据进行生物等效性的进一步验证。结果:在无清洗期的状态下,取样时间在大于0.8个半衰期时,平均值法计算的Auc和Cmax的结果误差小于5%,变异系数小于25%,较为精确,生物等效性研究进一步验证了这一观点。结论:在无清洗期的情况下,生物等效性研究最小的采样时间为0.8个半衰期。 相似文献
106.
Pedro F. Almaida-Pagán Alejandro Lucas-Sánchez Douglas R. Tocher 《Biochimica et Biophysica Acta (BBA)/Molecular and Cell Biology of Lipids》2014,1841(7):1003-1011
Considering membranes and membrane components as possible pacemakers of the main processes taking place inside mitochondria, changes in phospholipids or fatty acids could play a central role linking different mechanisms involved in cumulative damage to cell molecules and dysfunction during periods of high stress, such as rapid growth and aging. Changes affecting either lipid class or fatty acid compositions could affect phospholipid and membrane properties and alter mitochondrial function and cell viability. In the present study, mitochondrial oxidative status and mitochondrial membrane phospholipid compositions were analyzed throughout the life-cycle of zebrafish. TBARS content significantly increased in 18-month-old fish while aconitase activity decreased in 24-month-old fish, which have been related with oxidative damage to molecules. Mitochondria-specific superoxide dismutase decreased in 24-month-old animals although this change was not statistically significant. Age affected both mitochondrial phospholipid content and the peroxidation index of most phospholipid classes suggesting that oxidative damage to mitochondrial lipids was occurring. 相似文献
107.
108.
通过和玉米杂交诱导硬粒小麦单倍体 总被引:5,自引:1,他引:5
硬粒小麦(Triticum durum Desf.)DR147授以超甜玉米(Zea m ays L.) ss 7700的花粉后,在83.4% 的柱头上观察到花粉萌发及花粉管长入胚囊,有9.9% 的子房发生了卵细胞的单受精,1.9% 的子房发生了中央细胞的单受精,32.7% 的子房发生了双受精。尽管双受精后可同时形成胚和胚乳,但胚乳往往发育迟缓,甚至败育。硬粒小麦×玉米形成的杂合子核型高度不稳定,在最初的几次细胞分裂中,来自父本玉米的染色体逐步被排除,最后形成硬粒小麦单倍体胚。在授以玉米花粉4 h 后用100 ppm 2,4-D溶液浸蘸硬粒小麦穗部,可以有效地促进幼胚在缺乏胚乳或胚乳败育情况下的生长和发育。授粉9—13 d 后由533个硬粒小麦子房解剖出25个胚,得胚率为4.7% 。通过幼胚拯救获得11棵正常植株,植株获得率为2.1% 。根尖细胞染色体计数表明,它们为单倍体(2n= 2x= 14)。 相似文献
109.
鲤科鱼类6个正反交人工异源三倍体胚胎的染色体变化及其发育命运 总被引:1,自引:0,他引:1
采用静水压休克保留第二极体的方法,在鲤(♀)×鲢(?)、鲫(♀)×鲢(?)、白鲫(♀)×鲢(?)和鲢(♀)×鲤(?)、鲢(♀)×鲫(?)、鲢(♀)×白鲫(?)6个正反交组合中都诱导出了异源三倍体,但只有正交鲤(♀)×鲢(?)、鲫(♀)×鲢(?)和白鲫(♀)×鲢(?)3个处理组中整倍性的异源三倍体胚胎才有可能正常发育,孵化出苗;而反交鲢(♀)×鲤(?)、鲢(♀)×鲫(?)和鲢(♀)×白鲫(?)3个处理组中的异源三倍体胚胎在发育过程中不断发生染色体排除和丢失,形成非整倍体而死亡,只有少数雌核发育二倍体鲢才能孵化出苗。结果表明,鱼类人工异源三倍体胚胎的发育命运与杂交物种间的基因组大小有关。 相似文献
110.
利用染色体消除法获得太谷核不育小麦纯合体 总被引:6,自引:0,他引:6
太谷核不育小麦的育性受单个显性雄性不育基因(Ta1)控制,其不育株总是杂合(Ta1ta1)的,纯合不育株(Ta1Ta1)并不存在。实验以太谷核不育小麦(TriticumaestivumL.)为母本和玉米(ZeamaysL.)杂交,利用杂合子和幼胚细胞分裂过程中父本玉米染色体自发消除的特点,经过激素处理、幼胚拯救和染色体人工加倍,成功地获得了自然界不存在的纯合显性太谷核不育小麦新种质(Ta1Ta1),并利用“玻璃化”超低温保存方法,将这一宝贵新种质长期保存下来。 相似文献