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Dynamics of fat cell turnover in humans 总被引:1,自引:0,他引:1
Spalding KL Arner E Westermark PO Bernard S Buchholz BA Bergmann O Blomqvist L Hoffstedt J Näslund E Britton T Concha H Hassan M Rydén M Frisén J Arner P 《Nature》2008,453(7196):783-787
Obesity is increasing in an epidemic manner in most countries and constitutes a public health problem by enhancing the risk for cardiovascular disease and metabolic disorders such as type 2 diabetes. Owing to the increase in obesity, life expectancy may start to decrease in developed countries for the first time in recent history. The factors determining fat mass in adult humans are not fully understood, but increased lipid storage in already developed fat cells (adipocytes) is thought to be most important. Here we show that adipocyte number is a major determinant for the fat mass in adults. However, the number of fat cells stays constant in adulthood in lean and obese individuals, even after marked weight loss, indicating that the number of adipocytes is set during childhood and adolescence. To establish the dynamics within the stable population of adipocytes in adults, we have measured adipocyte turnover by analysing the integration of 14C derived from nuclear bomb tests in genomic DNA. Approximately 10% of fat cells are renewed annually at all adult ages and levels of body mass index. Neither adipocyte death nor generation rate is altered in early onset obesity, suggesting a tight regulation of fat cell number in this condition during adulthood. The high turnover of adipocytes establishes a new therapeutic target for pharmacological intervention in obesity. 相似文献
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We conducted a greenhouse study in which 'Hobble Creek' mountain big sagebrush ( Artemisia tridentata ssp. vaseyana ) seeds were planted at various depths in soil to determine the optimal planting depth. Results showed that the optimal planting depth is 5 mm or less. 相似文献
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An established population of a neotropical cichlid fish, Cichlasoma managuense , was found in a spring pool in the Virgin River basin, Utah. Presence of this predatory species poses an additional threat to the native fish fauna of the Virgin River, which already has suffered multiple impacts of water development and introduced fishes. 相似文献
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Sloan JL Johnston JJ Manoli I Chandler RJ Krause C Carrillo-Carrasco N Chandrasekaran SD Sysol JR O'Brien K Hauser NS Sapp JC Dorward HM Huizing M;NIH Intramural Sequencing Center Group Barshop BA Berry SA James PM Champaigne NL de Lonlay P Valayannopoulos V Geschwind MD Gavrilov DK Nyhan WL Biesecker LG Venditti CP 《Nature genetics》2011,43(9):883-886
We used exome sequencing to identify the genetic basis of combined malonic and methylmalonic aciduria (CMAMMA). We sequenced the exome of an individual with CMAMMA and followed up with sequencing of eight additional affected individuals (cases). This included one individual who was identified and diagnosed by searching an exome database. We identify mutations in ACSF3, encoding a putative methylmalonyl-CoA and malonyl-CoA synthetase as a cause of CMAMMA. We also examined a canine model of CMAMMA, which showed pathogenic mutations in a predicted ACSF3 ortholog. ACSF3 mutant alleles occur with a minor allele frequency of 0.0058 in ~1,000 control individuals, predicting a CMAMMA population incidence of ~1:30,000. ACSF3 deficiency is the first human disorder identified as caused by mutations in a gene encoding a member of the acyl-CoA synthetase family, a diverse group of evolutionarily conserved proteins, and may emerge as one of the more common human metabolic disorders. 相似文献