Abstract
The mechanisms that balance food intake and energy expenditure determine who will be obese and who will be lean. One of the molecules that regulates energy balance in the mouse is the obese (ob) gene. Mutation ofobresults in profound obesity and type II diabetes as part of a syndrome that resembles morbid obesity in humans. The ob gene product may function as part of a signalling pathway from adipose tissue that acts to regulate the size of the body fat depot.
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References
Burros, M. Despite awareness of risks, more in US are getting fat in The New York Times 17 July 1994.
Grundy, S. M. & Barnett, J. P. Disease-a-Month 36, 645–696 (1990).
Friedman, J. M. & Leibel, R. L. Cell 69, 217–220 (1990).
Ingalls, A. M., Dickie, M. M. & Snell, G. D. J. Hered. 41, 317–318 (1950).
Friedman, J. M. et al. Genomics 11, 1054–1062 (1991).
Coleman, D. L. Diabetologia 14, 141–148 (1978).
Dickie, M. M. & Lane, P. W. Mouse News Lett. 17, 52 (1957).
Bahary, N. et al. Mamm. Genome 4, 511–515 (1993).
Walther, C. et al. Genomics 11, 424–434 (1991).
Riley, J. et al. Nucleic Acids Res. 18, 2887–2890 (1990).
Hermanson, G. G. et al. Nucleic Acids Res. 19, 4943–4948 (1991).
Sternberg, N. Trends Genet. 8, 11–16 (1992).
Hartl, D. L. & Nurminsky, D. I. BioTechniques 15, 201–208 (1993).
Dietrich, W. et al. Genetics 131, 423–447 (1992).
Church, D. M. et al. Nature Genet. 6, 98–105 (1994).
Gish, W. & States, D. J. Nature Genet. 3, 266–272 (1993).
Kozak, M. Cell 44, 283–292 (1986).
Frohman, M. A., Dush, M. K. & Martin, G. R. Proc. natn. Acad. Sci. U.S.A. 85, 8998–9002 (1988).
Padgett, R. A. et al. A. Rev. Biochem. 55, 1119–1150 (1986).
Cooper, D. N. & Youssoufian, H. Hum. Genet. 78, 151–155 (1988).
Heijne, G. v. Nucleic Acids Res. 14, 4683–4690 (1986).
Sabatini, D. D. & Adesnick, M. B. The Metabolic Basis of Inherited Disease (eds Scriver, C. R. et al.) 177–223 (McGraw-Hill, New York, 1989).
Coleman, D. L. Science 203, 663–665 (1979).
Bray, G. A. Int. J. Obesity 14, 909–926 (1990).
Rubner, M. Ztschr. Biol. 30, 73–142 (1894).
Adolph, E. F. Am. J. Physiol. 151, 110–125 (1947).
Hervey, G. R. Nature 222, 629–631 (1969).
Cannon, W. B. & Washburn, A. L. Am. J. Physiol. 29, 441–454 (1912).
Brobeck, J. R. Physiol. Rev. 25, 541–559 (1946).
Hetherington, A. W. & Ranson, S. W. Am. J. Physiol. 136, 609–617 (1942).
Brobeck, J. R. Yale J. Biol. Med. 20, 545–552 (1948).
Kennedy, G. C. Proc. R. Soc. B 140, 578–592 (1953).
Mayer, J. Ann. N.Y. Acad. Sci. 63, 15–43 (1955).
Hervey, G. R. J. Physiol. 145, 336–352 (1959).
Bray, G. A. J. Nutrition 121, 1146–1162 (1991).
Bahary, N. et al. Proc. natn. Acad. Sci. U.S.A. 87, 8642–8646 (1990).
Neel, J. V. Am. J. hum. Genet. 14, 353–362 (1962).
Larin, Z., Monaco, A. P. & Lehrach, H. Proc. natn. Acad. Sci. U.S.A. 88, 4123–4127 (1991).
Green, E. D. & Olson, M. V. Proc. natn. Acad. Sci. U.S.A. 87, 1213–1217 (1990).
Kusuml, K. et al. Mamm. Genome 4, 391–392 (1993).
Vidal, S. M. et al. Cell 73, 469–485 (1993).
Friedman, J. M. et al. Genomics 11, 1054–1062 (1991).
Chirgwin, J. M. et al. Biochemistry 18, 5294–5299 (1979).
Friedman, J. M., Cheng, E. & Darnell, J. E. J. molec Biol. 179, 37–53 (1984).
Wang, A. M., Doyle, M. V. & Mark, D. F. Proc. natn. Acad. Sci. U.S.A. 86, 9717–9721 (1989).
Benton, W. D. & Davis, R. W. Science 195, 180–182 (1977).
Burmeister, M. & Lehrach, H. Trends. Genet. 5, 41 (1989).
Sanger, F., Nicklen, S. & Coulson, A. R. Proc. natn. Acad. Sci. U.S.A. 74, 5463–5467 (1977).
Venter, C. J. Automated DNA Sequencing and Analysis (Academic, New York, 1993).
Yu, Y. et al. Proc. natn. Acad. Sci. U.S.A. 86, 9931–9935 (1989).
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Zhang, Y., Proenca, R., Maffei, M. et al. Positional cloning of the mouse obese gene and its human homologue. Nature 372, 425–432 (1994). https://doi.org/10.1038/372425a0
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DOI: https://doi.org/10.1038/372425a0
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