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排序方式: 共有190条查询结果,搜索用时 421 毫秒
161.
Ikram MA Fornage M Smith AV Seshadri S Schmidt R Debette S Vrooman HA Sigurdsson S Ropele S Taal HR Mook-Kanamori DO Coker LH Longstreth WT Niessen WJ DeStefano AL Beiser A Zijdenbos AP Struchalin M Jack CR Rivadeneira F Uitterlinden AG Knopman DS Hartikainen AL Pennell CE Thiering E Steegers EA Hakonarson H Heinrich J Palmer LJ Jarvelin MR McCarthy MI Grant SF St Pourcain B Timpson NJ Smith GD Sovio U;Early Growth Genetics Consortium Nalls MA Au R Hofman A Gudnason H van der Lugt A Harris TB 《Nature genetics》2012,44(5):539-544
During aging, intracranial volume remains unchanged and represents maximally attained brain size, while various interacting biological phenomena lead to brain volume loss. Consequently, intracranial volume and brain volume in late life reflect different genetic influences. Our genome-wide association study (GWAS) in 8,175 community-dwelling elderly persons did not reveal any associations at genome-wide significance (P < 5 × 10(-8)) for brain volume. In contrast, intracranial volume was significantly associated with two loci: rs4273712 (P = 3.4 × 10(-11)), a known height-associated locus on chromosome 6q22, and rs9915547 (P = 1.5 × 10(-12)), localized to the inversion on chromosome 17q21. We replicated the associations of these loci with intracranial volume in a separate sample of 1,752 elderly persons (P = 1.1 × 10(-3) for 6q22 and 1.2 × 10(-3) for 17q21). Furthermore, we also found suggestive associations of the 17q21 locus with head circumference in 10,768 children (mean age of 14.5 months). Our data identify two loci associated with head size, with the inversion at 17q21 also likely to be involved in attaining maximal brain size. 相似文献
162.
Ferreira MA O'Donovan MC Meng YA Jones IR Ruderfer DM Jones L Fan J Kirov G Perlis RH Green EK Smoller JW Grozeva D Stone J Nikolov I Chambert K Hamshere ML Nimgaonkar VL Moskvina V Thase ME Caesar S Sachs GS Franklin J Gordon-Smith K Ardlie KG Gabriel SB Fraser C Blumenstiel B Defelice M Breen G Gill M Morris DW Elkin A Muir WJ McGhee KA Williamson R MacIntyre DJ MacLean AW St CD Robinson M Van Beck M Pereira AC Kandaswamy R McQuillin A Collier DA Bass NJ Young AH Lawrence J Ferrier IN 《Nature genetics》2008,40(9):1056-1058
To identify susceptibility loci for bipolar disorder, we tested 1.8 million variants in 4,387 cases and 6,209 controls and identified a region of strong association (rs10994336, P = 9.1 x 10(-9)) in ANK3 (ankyrin G). We also found further support for the previously reported CACNA1C (alpha 1C subunit of the L-type voltage-gated calcium channel; combined P = 7.0 x 10(-8), rs1006737). Our results suggest that ion channelopathies may be involved in the pathogenesis of bipolar disorder. 相似文献
163.
Heparanase involvement in physiology and disease 总被引:2,自引:0,他引:2
Nasser NJ 《Cellular and molecular life sciences : CMLS》2008,65(11):1706-1715
Heparanase is an endoglycosidase that degrades heparan sulfate on the cell surface and extracellular matrix. The physiological functions of heparanase include heparan sulfate turnover, embryo development, hair growth, and wound healing. Heparanase is implicated in a variety of pathologies, such as tumor growth, angiogenesis, metastasis, inflammation, and glomerular diseases. Heparanase overexpression in a variety of malignant tumors suggests that it could be a target for anti-cancer therapy. 相似文献
164.
Di Bernardo MC Crowther-Swanepoel D Broderick P Webb E Sellick G Wild R Sullivan K Vijayakrishnan J Wang Y Pittman AM Sunter NJ Hall AG Dyer MJ Matutes E Dearden C Mainou-Fowler T Jackson GH Summerfield G Harris RJ Pettitt AR Hillmen P Allsup DJ Bailey JR Pratt G Pepper C Fegan C Allan JM Catovsky D Houlston RS 《Nature genetics》2008,40(10):1204-1210
We conducted a genome-wide association study of 299,983 tagging SNPs for chronic lymphocytic leukemia (CLL) and performed validation in two additional series totaling 1,529 cases and 3,115 controls. We identified six previously unreported CLL risk loci at 2q13 (rs17483466; P = 2.36 x 10(-10)), 2q37.1 (rs13397985, SP140; P = 5.40 x 10(-10)), 6p25.3 (rs872071, IRF4; P = 1.91 x 10(-20)), 11q24.1 (rs735665; P = 3.78 x 10(-12)), 15q23 (rs7176508; P = 4.54 x 10(-12)) and 19q13.32 (rs11083846, PRKD2; P = 3.96 x 10(-9)). These data provide the first evidence for the existence of common, low-penetrance susceptibility to a hematological malignancy and new insights into disease causation in CLL. 相似文献
165.
A genome-wide association scan of nonsynonymous SNPs identifies a susceptibility variant for Crohn disease in ATG16L1 总被引:16,自引:0,他引:16
Hampe J Franke A Rosenstiel P Till A Teuber M Huse K Albrecht M Mayr G De La Vega FM Briggs J Günther S Prescott NJ Onnie CM Häsler R Sipos B Fölsch UR Lengauer T Platzer M Mathew CG Krawczak M Schreiber S 《Nature genetics》2007,39(2):207-211
We performed a genome-wide association study of 19,779 nonsynonymous SNPs in 735 individuals with Crohn disease and 368 controls. A total of 7,159 of these SNPs were informative. We followed up on all 72 SNPs with P 0.4), these data suggest that the underlying biological process may be specific to Crohn disease. 相似文献
166.
The search for migraine genes: an overview of current knowledge 总被引:3,自引:0,他引:3
Colson NJ Fernandez F Lea RA Griffiths LR 《Cellular and molecular life sciences : CMLS》2007,64(3):331-344
Migraine is a complex familial condition that imparts a significant burden on society. There is evidence for a role of genetic
factors in migraine, and elucidating the genetic basis of this disabling condition remains the focus of much research. In
this review we discuss results of genetic studies to date, from the discovery of the role of neural ion channel gene mutations
in familial hemiplegic migraine (FHM) to linkage analyses and candidate gene studies in the more common forms of migraine.
The success of FHM regarding discovery of genetic defects associated with the disorder remains elusive in common migraine,
and causative genes have not yet been identified. Thus we suggest additional approaches for analysing the genetic basis of
this disorder. The continuing search for migraine genes may aid in a greater understanding of the mechanisms that underlie
the disorder and potentially lead to significant diagnostic and therapeutic applications.
Received 16 December 2005; received after revision 9 October 2006; accepted 13 November 2006 相似文献
167.
Common variants in WFS1 confer risk of type 2 diabetes 总被引:10,自引:0,他引:10
Sandhu MS Weedon MN Fawcett KA Wasson J Debenham SL Daly A Lango H Frayling TM Neumann RJ Sherva R Blech I Pharoah PD Palmer CN Kimber C Tavendale R Morris AD McCarthy MI Walker M Hitman G Glaser B Permutt MA Hattersley AT Wareham NJ Barroso I 《Nature genetics》2007,39(8):951-953
We studied genes involved in pancreatic beta cell function and survival, identifying associations between SNPs in WFS1 and diabetes risk in UK populations that we replicated in an Ashkenazi population and in additional UK studies. In a pooled analysis comprising 9,533 cases and 11,389 controls, SNPs in WFS1 were strongly associated with diabetes risk. Rare mutations in WFS1 cause Wolfram syndrome; using a gene-centric approach, we show that variation in WFS1 also predisposes to common type 2 diabetes. 相似文献
168.
Lindström S Vachon CM Li J Varghese J Thompson D Warren R Brown J Leyland J Audley T Wareham NJ Loos RJ Paterson AD Rommens J Waggott D Martin LJ Scott CG Pankratz VS Hankinson SE Hazra A Hunter DJ Hopper JL Southey MC Chanock SJ Silva Idos S Liu J Eriksson L Couch FJ Stone J Apicella C Czene K Kraft P Hall P Easton DF Boyd NF Tamimi RM 《Nature genetics》2011,43(3):185-187
High-percent mammographic density adjusted for age and body mass index is one of the strongest risk factors for breast cancer. We conducted a meta analysis of five genome-wide association studies of percent mammographic density and report an association with rs10995190 in ZNF365 (combined P = 9.6 × 10(-10)). Common variants in ZNF365 have also recently been associated with susceptibility to breast cancer. 相似文献
169.
Rare MTNR1B variants impairing melatonin receptor 1B function contribute to type 2 diabetes 总被引:1,自引:0,他引:1
Bonnefond A Clément N Fawcett K Yengo L Vaillant E Guillaume JL Dechaume A Payne F Roussel R Czernichow S Hercberg S Hadjadj S Balkau B Marre M Lantieri O Langenberg C Bouatia-Naji N;Meta-Analysis of Glucose Insulin-Related Traits Consortium 《Nature genetics》2012,44(3):297-301
Genome-wide association studies have revealed that common noncoding variants in MTNR1B (encoding melatonin receptor 1B, also known as MT(2)) increase type 2 diabetes (T2D) risk(1,2). Although the strongest association signal was highly significant (P < 1 × 10(-20)), its contribution to T2D risk was modest (odds ratio (OR) of ~1.10-1.15)(1-3). We performed large-scale exon resequencing in 7,632 Europeans, including 2,186 individuals with T2D, and identified 40 nonsynonymous variants, including 36 very rare variants (minor allele frequency (MAF) <0.1%), associated with T2D (OR = 3.31, 95% confidence interval (CI) = 1.78-6.18; P = 1.64 × 10(-4)). A four-tiered functional investigation of all 40 mutants revealed that 14 were non-functional and rare (MAF < 1%), and 4 were very rare with complete loss of melatonin binding and signaling capabilities. Among the very rare variants, the partial- or total-loss-of-function variants but not the neutral ones contributed to T2D (OR = 5.67, CI = 2.17-14.82; P = 4.09 × 10(-4)). Genotyping the four complete loss-of-function variants in 11,854 additional individuals revealed their association with T2D risk (8,153 individuals with T2D and 10,100 controls; OR = 3.88, CI = 1.49-10.07; P = 5.37 × 10(-3)). This study establishes a firm functional link between MTNR1B and T2D risk. 相似文献
170.
Bradfield JP Taal HR Timpson NJ Scherag A Lecoeur C Warrington NM Hypponen E Holst C Valcarcel B Thiering E Salem RM Schumacher FR Cousminer DL Sleiman PM Zhao J Berkowitz RI Vimaleswaran KS Jarick I Pennell CE Evans DM St Pourcain B Berry DJ Mook-Kanamori DO Hofman A Rivadeneira F Uitterlinden AG van Duijn CM van der Valk RJ de Jongste JC Postma DS Boomsma DI Gauderman WJ Hassanein MT Lindgren CM Mägi R Boreham CA Neville CE Moreno LA Elliott P Pouta A Hartikainen AL Li M Raitakari O 《Nature genetics》2012,44(5):526-531
Multiple genetic variants have been associated with adult obesity and a few with severe obesity in childhood; however, less progress has been made in establishing genetic influences on common early-onset obesity. We performed a North American, Australian and European collaborative meta-analysis of 14 studies consisting of 5,530 cases (≥95th percentile of body mass index (BMI)) and 8,318 controls (<50th percentile of BMI) of European ancestry. Taking forward the eight newly discovered signals yielding association with P < 5 × 10(-6) in nine independent data sets (2,818 cases and 4,083 controls), we observed two loci that yielded genome-wide significant combined P values near OLFM4 at 13q14 (rs9568856; P = 1.82 × 10(-9); odds ratio (OR) = 1.22) and within HOXB5 at 17q21 (rs9299; P = 3.54 × 10(-9); OR = 1.14). Both loci continued to show association when two extreme childhood obesity cohorts were included (2,214 cases and 2,674 controls). These two loci also yielded directionally consistent associations in a previous meta-analysis of adult BMI(1). 相似文献