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41.
D Vilchez L Boyer I Morantte M Lutz C Merkwirth D Joyce B Spencer L Page E Masliah WT Berggren FH Gage A Dillin 《Nature》2012,489(7415):304-308
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The structure of H5N1 avian influenza neuraminidase suggests new opportunities for drug design 总被引:1,自引:0,他引:1
Russell RJ Haire LF Stevens DJ Collins PJ Lin YP Blackburn GM Hay AJ Gamblin SJ Skehel JJ 《Nature》2006,443(7107):45-49
The worldwide spread of H5N1 avian influenza has raised concerns that this virus might acquire the ability to pass readily among humans and cause a pandemic. Two anti-influenza drugs currently being used to treat infected patients are oseltamivir (Tamiflu) and zanamivir (Relenza), both of which target the neuraminidase enzyme of the virus. Reports of the emergence of drug resistance make the development of new anti-influenza molecules a priority. Neuraminidases from influenza type A viruses form two genetically distinct groups: group-1 contains the N1 neuraminidase of the H5N1 avian virus and group-2 contains the N2 and N9 enzymes used for the structure-based design of current drugs. Here we show by X-ray crystallography that these two groups are structurally distinct. Group-1 neuraminidases contain a cavity adjacent to their active sites that closes on ligand binding. Our analysis suggests that it may be possible to exploit the size and location of the group-1 cavity to develop new anti-influenza drugs. 相似文献
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Mullighan CG Miller CB Radtke I Phillips LA Dalton J Ma J White D Hughes TP Le Beau MM Pui CH Relling MV Shurtleff SA Downing JR 《Nature》2008,453(7191):110-114
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Basak I. Wicky H. E. McDonald K. O. Xu J. B. Palmer J. E. Best H. L. Lefrancois S. Lee S. Y. Schoderboeck L. Hughes S. M. 《Cellular and molecular life sciences : CMLS》2021,78(10):4735-4763
Cellular and Molecular Life Sciences - Neuronal Ceroid Lipofuscinosis (NCL), also known as Batten disease, is an incurable childhood brain disease. The thirteen forms of NCL are caused by mutations... 相似文献
48.
Fluorescence detection in automated DNA sequence analysis 总被引:51,自引:0,他引:51
L M Smith J Z Sanders R J Kaiser P Hughes C Dodd C R Connell C Heiner S B Kent L E Hood 《Nature》1986,321(6071):674-679
We have developed a method for the partial automation of DNA sequence analysis. Fluorescence detection of the DNA fragments is accomplished by means of a fluorophore covalently attached to the oligonucleotide primer used in enzymatic DNA sequence analysis. A different coloured fluorophore is used for each of the reactions specific for the bases A, C, G and T. The reaction mixtures are combined and co-electrophoresed down a single polyacrylamide gel tube, the separated fluorescent bands of DNA are detected near the bottom of the tube, and the sequence information is acquired directly by computer. 相似文献
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Summary Microsomes from livers of scorbutic guineapigs showed a reduced rate of acetanilide hydroxylation. The response of scorbutic liver microsomes to the inhibitor Metyrapone (2-methyl-1,2 di (3-pyridyl)propan-1-one) was different from that of liver microsomes from non-scorbutic guinea-pigs. 相似文献
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Haemagglutinin mutations responsible for the binding of H5N1 influenza A viruses to human-type receptors 总被引:1,自引:0,他引:1
Yamada S Suzuki Y Suzuki T Le MQ Nidom CA Sakai-Tagawa Y Muramoto Y Ito M Kiso M Horimoto T Shinya K Sawada T Kiso M Usui T Murata T Lin Y Hay A Haire LF Stevens DJ Russell RJ Gamblin SJ Skehel JJ Kawaoka Y 《Nature》2006,444(7117):378-382
H5N1 influenza A viruses have spread to numerous countries in Asia, Europe and Africa, infecting not only large numbers of poultry, but also an increasing number of humans, often with lethal effects. Human and avian influenza A viruses differ in their recognition of host cell receptors: the former preferentially recognize receptors with saccharides terminating in sialic acid-alpha2,6-galactose (SAalpha2,6Gal), whereas the latter prefer those ending in SAalpha2,3Gal (refs 3-6). A conversion from SAalpha2,3Gal to SAalpha2,6Gal recognition is thought to be one of the changes that must occur before avian influenza viruses can replicate efficiently in humans and acquire the potential to cause a pandemic. By identifying mutations in the receptor-binding haemagglutinin (HA) molecule that would enable avian H5N1 viruses to recognize human-type host cell receptors, it may be possible to predict (and thus to increase preparedness for) the emergence of pandemic viruses. Here we show that some H5N1 viruses isolated from humans can bind to both human and avian receptors, in contrast to those isolated from chickens and ducks, which recognize the avian receptors exclusively. Mutations at positions 182 and 192 independently convert the HAs of H5N1 viruses known to recognize the avian receptor to ones that recognize the human receptor. Analysis of the crystal structure of the HA from an H5N1 virus used in our genetic experiments shows that the locations of these amino acids in the HA molecule are compatible with an effect on receptor binding. The amino acid changes that we identify might serve as molecular markers for assessing the pandemic potential of H5N1 field isolates. 相似文献