首页> 美国卫生研究院文献>International Journal of Tryptophan Research : IJTR >Big Brains Meat Tuberculosis and the Nicotinamide Switches: Co-Evolutionary Relationships with Modern Repercussions?
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Big Brains Meat Tuberculosis and the Nicotinamide Switches: Co-Evolutionary Relationships with Modern Repercussions?

机译:大大脑肉类结核病和烟酰胺转换:与现代影响的共同进化关系?

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摘要

Meat-eating was a game changer for human evolution. We suggest that the limiting factors for expanding brains earlier were scarcities of nicotinamide and tryptophan. In humans and some other omnivores, lack of meat causes these deficiencies. Nicotinamide adenine dinucleotide (NADH) is necessary to synthesize adenosine triphosphate (ATP) via either glycolysis or via the mitochondrial respiratory chain. NAD consumption is also necessary for developmental and repair circuits. Inadequate supplies result in “de-evolutionary” brain atrophy, as seen with pellagra. If trophic nicotinamide/tryptophan was a “prime mover” in building bigger brains, back-up mechanisms should have evolved. One strategy may be to recruit extra gut symbionts that produce NADH precursors or export nicotinamide (though this may cause diarrhea). We propose a novel supplier TB that co-evolved early, which did not originally and does not now inevitably cause disease. TB has highly paradoxical immunology for a pathogen, and secretes and is inhibited by nicotinamide and its analogue, isoniazid. Sharp declines in TB and diarrhea correlated with increased meat intake in the past, suggesting that dietary vitamin B3 and tryptophan deficiencies (also associated with poor cognition and decreased lifespans) are still common where meat is unaffordable.
机译:吃肉是改变人类进化的游戏规则。我们建议限制大脑早期扩展的因素是烟酰胺和色氨酸的缺乏。在人类和其他杂食动物中,缺少肉类会导致这些不足。烟酰胺腺嘌呤二核苷酸(NADH)是通过糖酵解或线粒体呼吸链合成三磷酸腺苷(ATP)所必需的。对于开发和维修电路,NAD消耗也是必需的。供给不足会导致“退化”的脑萎缩,就像在糙皮病中一样。如果营养性烟酰胺/色氨酸是培养更大大脑的“原动力”,那么应该已经建立了后备机制。一种策略可能是招募产生NADH前体或输出烟酰胺的额外肠道共生体(尽管这可能会引起腹泻)。我们提出了一种新型的供应商结核病,该结核病是早期共同发展的,最初并没有,现在也不可避免地引起疾病。结核病对病原体具有极高的反常免疫性,并能被烟酰胺及其类似物异烟肼分泌并被其抑制。过去,结核病和腹泻的急剧下降与肉类摄入量增加有关,这表明在肉类负担不起的地方,饮食中维生素B3和色氨酸缺乏症(也与认知能力差和寿命缩短有关)仍然很常见。

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