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91.
Yibao Ma Yuanxi Xu Bryan D. Yestrepsky Roderick J. Sorenson Meng Chen Scott D. Larsen Hongmin Sun 《PloS one》2012,7(10)
Staphylococcus aureus is a major human pathogen and one of the more prominent pathogens causing biofilm related infections in clinic. Antibiotic resistance in S. aureus such as methicillin resistance is approaching an epidemic level. Antibiotic resistance is widespread among major human pathogens and poses a serious problem for public health. Conventional antibiotics are either bacteriostatic or bacteriocidal, leading to strong selection for antibiotic resistant pathogens. An alternative approach of inhibiting pathogen virulence without inhibiting bacterial growth may minimize the selection pressure for resistance. In previous studies, we identified a chemical series of low molecular weight compounds capable of inhibiting group A streptococcus virulence following this alternative anti-microbial approach. In the current study, we demonstrated that two analogs of this class of novel anti-virulence compounds also inhibited virulence gene expression of S. aureus and exhibited an inhibitory effect on S. aureus biofilm formation. This class of anti-virulence compounds could be a starting point for development of novel anti-microbial agents against S. aureus. 相似文献
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94.
HSP90 mRNA在胃癌和大肠癌中表达的研究 总被引:1,自引:0,他引:1
目的为探讨胃癌和大肠癌细胞HSP90 mRNA表达的特点.方法利用核酸原位杂交技术,对79例胃肠癌组织进行检测.结果表明HSP90 mRNA在胃癌和大肠癌中的阳性率分别为55.56%(15/27)和69.23%(36/52).mRNA表达与病理类型、分化程度和有否淋巴结转移有相关性.结论 HSP90 mRNA在胃肠癌中有较高表达,检测HSP90 mRNA可以作为提示预后的重要临床指标. 相似文献
95.
鳜鱼Mx蛋白全长cDNA的克隆和序列分析 总被引:1,自引:0,他引:1
Mx蛋白是一类由I型干扰素诱导表达的抗病毒蛋白.本研究以感染了鳜传染性脾肾坏死病毒(Infectious spleen and kidney necrosis virus,ISKNV)的鳜鱼为材料,提取肝脏总RNA,通过逆转录-聚合酶链式反应(RT-PCR)扩增出Mx蛋白基因的核心片段序列,再应用3'和5'快速扩增cDNA末端(RACE)方法PCR扩增Mx蛋白cDNA末端,最终获得鳜鱼Mx蛋白cDNA序列(GenBank登陆号AY392097).序列分析表明鳜鱼Mx蛋白cDNA含有2391bp,其中编码区长1881bp,编码627个氨基酸残基,推测蛋白质分子量大小为7.15kDa.鳜鱼Mx蛋白具有脊椎动物Mx蛋白共有的结构特征一个三联体GTP结合区域(GXXXSGKS/T、DXXG、T/NKXD);一个发动蛋白家族的典型结构特征序列(LPRGS/KGIVTR);以及C端高度保守的Leu拉链结构域.鳜鱼Mx蛋白全基因的获得为下一步研究鱼类Mx蛋白的抗病毒活性、作用机制,以及干扰素的检测奠定了基础. 相似文献
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97.
Water dynamics clue to key residues in protein folding 总被引:1,自引:0,他引:1
Meng Gao Xin-Qiu Yao Zhen-Su She 《Biochemical and biophysical research communications》2010,392(1):95-10887
A computational method independent of experimental protein structure information is proposed to recognize key residues in protein folding, from the study of hydration water dynamics. Based on all-atom molecular dynamics simulation, two key residues are recognized with distinct water dynamical behavior in a folding process of the Trp-cage protein. The identified key residues are shown to play an essential role in both 3D structure and hydrophobic-induced collapse. With observations on hydration water dynamics around key residues, a dynamical pathway of folding can be interpreted. 相似文献
98.
Burmite (Burmese amber) from the Hukawng Valley in northern Myanmar is a remarkable valuable and obviously the most important amber for studying terrestrial diversity in the mid-Cretaceous.The diversity of Burmite inclusions is very high and many new taxa were found,including new order,new family/subfamily,and new genus.Till the end of 2016,14 phyla,21 classes,65 orders,279 families,515 genera and 643 species of organisms are recorded,which are summized and complied in this catalogue.Among them,587 species are arthropods.In addtion,the specimens which can not be identified into species are also listed in the paper.The information on type specimens,other materials,host and deposition of types are provided. 相似文献
99.
Hai Hu Hong Li Feng Jiao Ting Han Meng Zhuo Jiujie Cui Yixue Li Liwei Wang 《Journal of hematology & oncology》2017,10(1):158
Background
Multiple primary cancers (MPC) have been identified as two or more cancers without any subordinate relationship that occur either simultaneously or metachronously in the same or different organs of an individual. Lynch syndrome is an autosomal dominant genetic disorder that increases the risk of many types of cancers. Lynch syndrome patients who suffer more than two cancers can also be considered as MPC; patients of this kind provide unique resources to learn how genetic mutation causes MPC in different tissues.Methods
We performed a whole genome sequencing on blood cells and two tumor samples of a Lynch syndrome patient who was diagnosed with five primary cancers. The mutational landscape of the tumors, including somatic point mutations and copy number alternations, was characterized. We also compared Lynch syndrome with sporadic cancers and proposed a model to illustrate the mutational process by which Lynch syndrome progresses to MPC.Results
We revealed a novel pathologic mutation on the MSH2 gene (G504 splicing) that associates with Lynch syndrome. Systematical comparison of the mutation landscape revealed that multiple cancers in the proband were evolutionarily independent. Integrative analysis showed that truncating mutations of DNA mismatch repair (MMR) genes were significantly enriched in the patient. A mutation progress model that included germline mutations of MMR genes, double hits of MMR system, mutations in tissue-specific driver genes, and rapid accumulation of additional passenger mutations was proposed to illustrate how MPC occurs in Lynch syndrome patients.Conclusion
Our findings demonstrate that both germline and somatic alterations are driving forces of carcinogenesis, which may resolve the carcinogenic theory of Lynch syndrome.100.
Zhifei Li Clement Bommier Zhi Sen Chong Zelang Jian Todd Wesley Surta Xingfeng Wang Zhenyu Xing Joerg C. Neuefeind William F. Stickle Michelle Dolgos P. Alex Greaney Xiulei Ji 《Liver Transplantation》2017,7(18)
Hard carbon is the leading candidate anode for commercialization of Na‐ion batteries. Hard carbon has a unique local atomic structure, which is composed of nanodomains of layered rumpled sheets that have short‐range local order resembling graphene within each layer, but complete disorder along the c‐axis between layers. A primary challenge holding back the development of Na‐ion batteries is that a complete understanding of the structure–capacity correlations of Na‐ion storage in hard carbon has remained elusive. This article presents two key discoveries: first, the characteristics of hard carbons structure can be modified systematically by heteroatom doping, and second, that these structural changes greatly affect Na‐ion storage properties, which reveals the mechanisms for Na storage in hard carbon. Specifically, via P or S doping, the interlayer spacing is dilated, which extends the low‐voltage plateau capacity, while increasing the defect concentrations with P or B doping leads to higher sloping sodiation capacity. The combined experimental studies and first principles calculations reveal that it is the Na‐ion‐defect binding that corresponds to the sloping capacity, while the Na intercalation between graphenic layers causes the low‐potential plateau capacity. The understanding suggests a new design principle of hard carbon anode: more reversibly binding defects and dilated turbostratic domains, given that the specific surface area is maintained low. 相似文献