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101.
de Bakker PI Burtt NP Graham RR Guiducci C Yelensky R Drake JA Bersaglieri T Penney KL Butler J Young S Onofrio RC Lyon HN Stram DO Haiman CA Freedman ML Zhu X Cooper R Groop L Kolonel LN Henderson BE Daly MJ Hirschhorn JN Altshuler D 《Nature genetics》2006,38(11):1298-1303
A general question for linkage disequilibrium-based association studies is how power to detect an association is compromised when tag SNPs are chosen from data in one population sample and then deployed in another sample. Specifically, it is important to know how well tags picked from the HapMap DNA samples capture the variation in other samples. To address this, we collected dense data uniformly across the four HapMap population samples and eleven other population samples. We picked tag SNPs using genotype data we collected in the HapMap samples and then evaluated the effective coverage of these tags in comparison to the entire set of common variants observed in the other samples. We simulated case-control association studies in the non-HapMap samples under a disease model of modest risk, and we observed little loss in power. These results demonstrate that the HapMap DNA samples can be used to select tags for genome-wide association studies in many samples around the world. 相似文献
102.
Yamanouchi J Rainbow D Serra P Howlett S Hunter K Garner VE Gonzalez-Munoz A Clark J Veijola R Cubbon R Chen SL Rosa R Cumiskey AM Serreze DV Gregory S Rogers J Lyons PA Healy B Smink LJ Todd JA Peterson LB Wicker LS Santamaria P 《Nature genetics》2007,39(3):329-337
Autoimmune diseases are thought to result from imbalances in normal immune physiology and regulation. Here, we show that autoimmune disease susceptibility and resistance alleles on mouse chromosome 3 (Idd3) correlate with differential expression of the key immunoregulatory cytokine interleukin-2 (IL-2). In order to test directly that an approximately twofold reduction in IL-2 underpins the Idd3-linked destabilization of immune homeostasis, we show that engineered haplodeficiency of Il2 gene expression not only reduces T cell IL-2 production by twofold but also mimics the autoimmune dysregulatory effects of the naturally occurring susceptibility alleles of Il2. Reduced IL-2 production achieved by either genetic mechanism correlates with reduced function of CD4(+) CD25(+) regulatory T cells, which are critical for maintaining immune homeostasis. 相似文献
103.
Franke A McGovern DP Barrett JC Wang K Radford-Smith GL Ahmad T Lees CW Balschun T Lee J Roberts R Anderson CA Bis JC Bumpstead S Ellinghaus D Festen EM Georges M Green T Haritunians T Jostins L Latiano A Mathew CG Montgomery GW Prescott NJ Raychaudhuri S Rotter JI Schumm P Sharma Y Simms LA Taylor KD Whiteman D Wijmenga C Baldassano RN Barclay M Bayless TM Brand S Büning C Cohen A Colombel JF Cottone M Stronati L Denson T De Vos M D'Inca R Dubinsky M Edwards C Florin T Franchimont D Gearry R 《Nature genetics》2010,42(12):1118-1125
We undertook a meta-analysis of six Crohn's disease genome-wide association studies (GWAS) comprising 6,333 affected individuals (cases) and 15,056 controls and followed up the top association signals in 15,694 cases, 14,026 controls and 414 parent-offspring trios. We identified 30 new susceptibility loci meeting genome-wide significance (P < 5 × 10??). A series of in silico analyses highlighted particular genes within these loci and, together with manual curation, implicated functionally interesting candidate genes including SMAD3, ERAP2, IL10, IL2RA, TYK2, FUT2, DNMT3A, DENND1B, BACH2 and TAGAP. Combined with previously confirmed loci, these results identify 71 distinct loci with genome-wide significant evidence for association with Crohn's disease. 相似文献
104.
A functional variant of SUMO4, a new I kappa B alpha modifier, is associated with type 1 diabetes 总被引:23,自引:0,他引:23
105.
Voltage-gated sodium (Na(V)) channels initiate electrical signalling in excitable cells and are the molecular targets for drugs and disease mutations, but the structural basis for their voltage-dependent activation, ion selectivity and drug block is unknown. Here we report the crystal structure of a voltage-gated Na(+) channel from Arcobacter butzleri (NavAb) captured in a closed-pore conformation with four activated voltage sensors at 2.7?? resolution. The arginine gating charges make multiple hydrophilic interactions within the voltage sensor, including unanticipated hydrogen bonds to the protein backbone. Comparisons to previous open-pore potassium channel structures indicate that the voltage-sensor domains and the S4-S5 linkers dilate the central pore by pivoting together around a hinge at the base of the pore module. The NavAb selectivity filter is short, ~4.6?? wide, and water filled, with four acidic side chains surrounding the narrowest part of the ion conduction pathway. This unique structure presents a high-field-strength anionic coordination site, which confers Na(+) selectivity through partial dehydration via direct interaction with glutamate side chains. Fenestrations in the sides of the pore module are unexpectedly penetrated by fatty acyl chains that extend into the central cavity, and these portals are large enough for the entry of small, hydrophobic pore-blocking drugs. This structure provides the template for understanding electrical signalling in excitable cells and the actions of drugs used for pain, epilepsy and cardiac arrhythmia at the atomic level. 相似文献
106.
Alter G Heckerman D Schneidewind A Fadda L Kadie CM Carlson JM Oniangue-Ndza C Martin M Li B Khakoo SI Carrington M Allen TM Altfeld M 《Nature》2011,476(7358):96-100
Natural killer (NK) cells have an important role in the control of viral infections, recognizing virally infected cells through a variety of activating and inhibitory receptors. Epidemiological and functional studies have recently suggested that NK cells can also contribute to the control of HIV-1 infection through recognition of virally infected cells by both activating and inhibitory killer immunoglobulin-like receptors (KIRs). However, it remains unknown whether NK cells can directly mediate antiviral immune pressure in vivo in humans. Here we describe KIR-associated amino-acid polymorphisms in the HIV-1 sequence of chronically infected individuals, on a population level. We show that these KIR-associated HIV-1 sequence polymorphisms can enhance the binding of inhibitory KIRs to HIV-1-infected CD4(+) T cells, and reduce the antiviral activity of KIR-positive NK cells. These data demonstrate that KIR-positive NK cells can place immunological pressure on HIV-1, and that the virus can evade such NK-cell-mediated immune pressure by selecting for sequence polymorphisms, as was previously described for virus-specific T cells and neutralizing antibodies. NK cells might therefore have a previously underappreciated role in contributing to viral evolution. 相似文献
107.
Jex AR Liu S Li B Young ND Hall RS Li Y Yang L Zeng N Xu X Xiong Z Chen F Wu X Zhang G Fang X Kang Y Anderson GA Harris TW Campbell BE Vlaminck J Wang T Cantacessi C Schwarz EM Ranganathan S Geldhof P Nejsum P Sternberg PW Yang H Wang J Wang J Gasser RB 《Nature》2011,479(7374):529-533
Parasitic diseases have a devastating, long-term impact on human health, welfare and food production worldwide. More than two billion people are infected with geohelminths, including the roundworms Ascaris (common roundworm), Necator and Ancylostoma (hookworms), and Trichuris (whipworm), mainly in developing or impoverished nations of Asia, Africa and Latin America. In humans, the diseases caused by these parasites result in about 135,000 deaths annually, with a global burden comparable with that of malaria or tuberculosis in disability-adjusted life years. Ascaris alone infects around 1.2 billion people and, in children, causes nutritional deficiency, impaired physical and cognitive development and, in severe cases, death. Ascaris also causes major production losses in pigs owing to reduced growth, failure to thrive and mortality. The Ascaris-swine model makes it possible to study the parasite, its relationship with the host, and ascariasis at the molecular level. To enable such molecular studies, we report the 273 megabase draft genome of Ascaris suum and compare it with other nematode genomes. This genome has low repeat content (4.4%) and encodes about 18,500 protein-coding genes. Notably, the A. suum secretome (about 750 molecules) is rich in peptidases linked to the penetration and degradation of host tissues, and an assemblage of molecules likely to modulate or evade host immune responses. This genome provides a comprehensive resource to the scientific community and underpins the development of new and urgently needed interventions (drugs, vaccines and diagnostic tests) against ascariasis and other nematodiases. 相似文献
108.
Bifidobacteria can protect from enteropathogenic infection through production of acetate 总被引:3,自引:0,他引:3
Fukuda S Toh H Hase K Oshima K Nakanishi Y Yoshimura K Tobe T Clarke JM Topping DL Suzuki T Taylor TD Itoh K Kikuchi J Morita H Hattori M Ohno H 《Nature》2011,469(7331):543-547
The human gut is colonized with a wide variety of microorganisms, including species, such as those belonging to the bacterial genus Bifidobacterium, that have beneficial effects on human physiology and pathology. Among the most distinctive benefits of bifidobacteria are modulation of host defence responses and protection against infectious diseases. Nevertheless, the molecular mechanisms underlying these effects have barely been elucidated. To investigate these mechanisms, we used mice associated with certain bifidobacterial strains and a simplified model of lethal infection with enterohaemorrhagic Escherichia coli O157:H7, together with an integrated 'omics' approach. Here we show that genes encoding an ATP-binding-cassette-type carbohydrate transporter present in certain bifidobacteria contribute to protecting mice against death induced by E. coli O157:H7. We found that this effect can be attributed, at least in part, to increased production of acetate and that translocation of the E. coli O157:H7 Shiga toxin from the gut lumen to the blood was inhibited. We propose that acetate produced by protective bifidobacteria improves intestinal defence mediated by epithelial cells and thereby protects the host against lethal infection. 相似文献
109.
Hashish 总被引:1,自引:0,他引:1
A. R. Todd 《Cellular and molecular life sciences : CMLS》1946,2(2):55-60
Zusammenfassung Der Autor referiert über die frühere chemische Bearbeitung des Haschischproblems, wobei namentlich die Arbeiten vonCahn (bis 1933) wichtig sind. Die beiden Substanzen Cannabinol und Cannabidiol aus Haschisch sind inaktiv, der Träger der physiologischen Wirkung konnte noch nicht rein dargestellt werden. Synthetische Tetrahydrocannabinole zeigen zum Teil starke Haschischwirkung. Der Autor vermutet, daß die Struktur des natürlichen Wirkungsträgers ähnlich sein wird wie diejenige der aktiven synthetischen Produkte. 相似文献
110.
Ingrid Dahlman Iain A Eaves Roman Kosoy V Anne Morrison Joanne Heward Stephen C L Gough Amit Allahabadia Jayne A Franklyn Jaakko Tuomilehto Eva Tuomilehto-Wolf Francesco Cucca Cristian Guja Constantin Ionescu-Tirgoviste Helen Stevens Philippa Carr Sarah Nutland Patricia McKinney Julian P Shield William Wang Heather J Cordell Neil Walker John A Todd Patrick Concannon 《Nature genetics》2002,30(2):149-150
It is increasingly apparent that the identification of true genetic associations in common multifactorial disease will require studies comprising thousands rather than the hundreds of individuals employed to date. Using 2,873 families, we were unable to confirm a recently published association of the interleukin 12B gene in 422 type I diabetic families. These results emphasize the need for large datasets, small P values and independent replication if results are to be reliable. 相似文献