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Dog bites man or man bites dog? The enigma of the amino acid conjugations

机译:狗咬人还是人咬狗?氨基酸结合的谜

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摘要

The proposition posed is that the value of amino acid conjugation to the organism is not, as in the traditional view, to use amino acids for the detoxication of aromatic acids. Rather, the converse is more likely, to use aromatic acids that originate from the diet and gut microbiota to assist in the regulation of body stores of amino acids, such as glycine, glutamate, and, in certain invertebrates, arginine, that are key neurotransmitters in the central nervous system (CNS). As such, the amino acid conjugations are not so much detoxication reactions, rather they are homeostatic and neuroregulatory processes. Experimental data have been culled in support of this hypothesis from a broad range of scientific and clinical literature. Such data include the low detoxication value of amino acid conjugations and the Janus nature of certain amino acids that are both neurotransmitters and apparent conjugating agents. Amino acid scavenging mechanisms in blood deplete brain amino acids. Amino acids glutamate and glycine when trafficked from brain are metabolized to conjugates of aromatic acids in hepatic mitochondria and then irreversibly excreted into urine. This process is used clinically to deplete excess nitrogen in cases of urea cycle enzymopathies through excretion of glycine or glutamine as their aromatic acid conjugates. Untoward effects of high-dose phenylacetic acid surround CNS toxicity. There appears to be a relationship between extent of glycine scavenging by benzoic acid and psychomotor function. Glycine and glutamine scavenging by conjugation with aromatic acids may have important psychosomatic consequences that link diet to health, wellbeing, and disease.
机译:提出的建议是,与传统观点不同,氨基酸与生物的结合价值不在于使用氨基酸来使芳香族酸脱毒。相反,更有可能使用源自饮食和肠道菌群的芳香酸来帮助调节氨基酸的身体储存,例如甘氨酸,谷氨酸,在某些无脊椎动物中的精氨酸,它们是关键的神经递质。在中枢神经系统(CNS)中。因此,氨基酸结合不是脱毒反应,而是稳态和神经调节过程。从广泛的科学和临床文献中收集了支持这一假设的实验数据。这样的数据包括氨基酸缀合的低解毒值和既是神经递质又是表观缀合剂的某些氨基酸的Janus性质。血液中的氨基酸清除机制会耗尽大脑中的氨基酸。从大脑贩运的氨基酸谷氨酸和甘氨酸被代谢为肝线粒体中的芳香酸结合物,然后不可逆地排泄到尿液中。在尿素循环酶变的情况下,该过程可通过排泄甘氨酸或谷氨酰胺作为其芳香酸结合物来消耗过量的氮。高剂量苯乙酸的不良作用围绕CNS毒性。苯甲酸清除甘氨酸的程度与精神运动功能之间似乎存在关系。与芳香酸结合清除甘氨酸和谷氨酰胺可能会产生重要的心身后果,使饮食与健康,福祉和疾病相关联。

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