Brain complexity: brains have weight controls (Introduction)

by David Turell @, Wednesday, August 22, 2018, 19:54 (2045 days ago) @ David Turell

It has long been known that during dieting humans have a 'starvation mechanism that can deduct 300 calories a day from the basal metabolism in order to preserve weight, a system probably developed to cover the feast and famine existence of early homo forms. Now the brain proteins that relate to fat metabolism is found:

https://medicalxpress.com/news/2018-08-receptor-protein-brain-body-fat.html

"The protein, called the melanocortin 3 receptor (MC3R) maintains what Roger Cone, director of the U-M Life Sciences Institute, has termed "energy rheostasis," a poorly understood phenomenon in the field of metabolism research.

"A lack of MC3R has almost no effect on mice under normal conditions. But when their metabolism is challenged, mice without this protein lose more weight when fasting and gain more weight when eating a high-fat diet, compared with normal mice.

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"Our bodies have mechanisms to balance the amount of energy we take in, through food consumption, and the amount of energy we use. When we lose weight, the brain increases hunger and signals the body to conserve energy. If we are using less energy, the brain sends signals to reduce food intake. This so-called energy homeostasis, or balance, is controlled in part by another receptor protein that Cone's research group discovered, the melanocortin 4 receptor (MC4R).

"Just like a rheostat on the wall determines how much energy goes into a light bulb, rheostasis in this case sets the upper or lower boundaries for how far the energy balance can shift before the MC4R protein will take action to restore the balance. When the body experiences some sort of metabolic stress that shifts energy levels—fasting or eating a high-fat diet, for example—MC3R ensures that the balance of energy and fat in the body does not drift too far in either direction.

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"When we eat less and exercise more to lose weight, our bodies sense when the energy balance has tipped below the established lower boundary and try to adjust by using less energy and increasing appetite, to return to homeostasis. This lower boundary is what makes it difficult to keep weight off," said lead study author Masoud Ghamari-Langroudi of the Vanderbilt University School of Medicine.

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"The protein also plays a role in regulating changes in the body's energy balance that occur as part of the normal life cycle. During both pregnancy and menopause, for example, females experience an increase in the amount of fat reserves stored in the body.
While at Vanderbilt, co-author Rachel Lippert of the Max Planck Institute for Metabolism Research made the unusual discovery that mice lacking the MC3R protein gain less weight than they should during pregnancy, and gain more weight than normal mice during a mouse model of menopause.

"These seemingly contradictory effects are why the protein perplexed researchers for so long. Cone and his colleagues discovered both MC3R and MC4R in mouse brains in the mid-1990s. The researchers, along with other laboratories around the world, fairly quickly determined MC4R's role in maintaining the setpoint for energy homeostasis. A lack of MC4R is now known to be the most common cause of syndromic obesity in humans.

"Scientists did not understand why the MC3R protein, in contrast, sometimes led to excessive weight loss and other times to excessive weight gain.

"'And now, we finally have an answer," Cone said."

Comment: The obesity epidemic today is because there is too much food available and the ancient mechanisms are being overridden by unthinking people. The mechanisms that are found cover the problems of feast and famine periods alternating in early human forms. One does not see fat hunter-gatherers.


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