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首页> 外文期刊>Cell Reports >Organization of the Mammalian Ionome According to Organ Origin, Lineage Specialization, and Longevity
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Organization of the Mammalian Ionome According to Organ Origin, Lineage Specialization, and Longevity

机译:根据器官来源,血统专长和寿命划分的哺乳动物离子组的组织

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摘要

Trace elements are essential to all mammals, but their distribution and utilization across species and organs remains unclear. Here, we examined 18 elements in the brain, heart, kidney, and liver of 26 mammalian species and report the elemental composition of these organs, the patterns of utilization across the species, and their correlation with body mass and longevity. Across the organs, we observed distinct distribution patterns for abundant elements, transition metals, and toxic elements. Some elements showed lineage-specific patterns, including reduced selenium utilization in African mole rats, and positive correlation between the number of selenocysteine residues in selenoprotein P and the selenium levels in liver and kidney across mammals. Body mass was linked positively to zinc levels, whereas species lifespan correlated positively with cadmium and negatively with selenium. This study provides insights into the variation of mammalian ionome by organ physiology, lineage specialization, body mass, and longevity.
机译:微量元素对所有哺乳动物都是必不可少的,但它们在物种和器官中的分布和利用仍不清楚。在这里,我们检查了26种哺乳动物的大脑,心脏,肾脏和肝脏中的18种元素,并报告了这些器官的元素组成,整个物种的利用方式及其与体重和寿命的关系。在整个器官中,我们观察到了丰富元素,过渡金属和有毒元素的独特分布模式。一些元素显示出特定的谱系模式,包括非洲African鼠中硒的利用率降低,以及哺乳动物中硒蛋白P中硒代半胱氨酸残基的数量与肝脏和肾脏中硒的含量之间呈正相关。体重与锌水平呈正相关,而物种寿命与镉呈正相关,与硒呈负相关。这项研究通过器官生理学,谱系专长,体重和寿命为哺乳动物离子组变异提供了见识。

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