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Is it true that Experts are going to design molecule to shut down fat gene ?”

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Is it true that Experts are going to design molecule to shut down fat gene ?”

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(Reuters) – Scientists in China may have discovered how a gene responsible for obesity kicks into action and want to design a molecule to shut it down. Science | Health | China The fat mass and obesity-associated gene (FTO) sits on human chromosome 16, and several studies in the past have shown it is strongly linked to weight gain. But scientists are just beginning to figure out how the gene actually works. “This gene was identified through studies done among different ethnic groups — Caucasions, Chinese, Japanese and (South) Koreans. It has been established that FTO is associated with obesity,” Jijie Chai at the National Institute of Biological Sciences in Beijing told Reuters by telephone. “We believe that FTO is a good target for treatment of obesity. If we can get an active inhibitor (to shut down the FTO gene), we can work toward some sort of therapy.” In a paper published in the latest issue of Nature, lead researcher Chai and his colleagues described how their study found the F

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The fat mass and obesity-associated gene (FTO) sits on human chromosome 16, and several studies in the past have shown it is strongly linked to weight gain. But scientists are just beginning to figure out how the gene actually works. “This gene was identified through studies done among different ethnic groups — Caucasions, Chinese, Japanese and (South) Koreans. It has been established that FTO is associated with obesity,” Jijie Chai at the National Institute of Biological Sciences in Beijing told Reuters by telephone. “We believe that FTO is a good target for treatment of obesity. If we can get an active inhibitor (to shut down the FTO gene), we can work toward some sort of therapy.” In a paper published in the latest issue of Nature, lead researcher Chai and his colleagues described how their study found the FTO gene was only activated when it binds to what are known as “single-stranded DNA”. “It has only activity toward single-stranded DNA and has no activity toward double-stranded

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