Department of Physiology, Biophysics and Neuroscience, Cinvestav, 07360 Mexico City, Mexico.
Department of Chemistry, Cinvestav, 07360 Mexico City, Mexico.
Proc Natl Acad Sci U S A. 2022 Apr 19;119(16):e2117807119. doi: 10.1073/pnas.2117807119. Epub 2022 Apr 11.
Zinc deficiency is commonly attributed to inadequate absorption of the metal. Instead, we show that body zinc stores in Drosophila melanogaster depend on tryptophan consumption. Hence, a dietary amino acid regulates zinc status of the whole insect—a finding consistent with the widespread requirement of zinc as a protein cofactor. Specifically, the tryptophan metabolite kynurenine is released from insect fat bodies and induces the formation of zinc storage granules in Malpighian tubules, where 3-hydroxykynurenine and xanthurenic acid act as endogenous zinc chelators. Kynurenine functions as a peripheral zinc-regulating hormone and is converted into a 3-hydroxykynurenine–zinc–chloride complex, precipitating within the storage granules. Thus, zinc and the kynurenine pathway—well-known modulators of immunity, blood pressure, aging, and neurodegeneration—are physiologically connected.
锌缺乏通常归因于金属吸收不足。相反,我们表明果蝇体内的锌储存取决于色氨酸的消耗。因此,一种饮食氨基酸调节整个昆虫的锌状态——这一发现与锌作为蛋白质辅因子的广泛需求一致。具体来说,色氨酸代谢物犬尿氨酸从昆虫脂肪体中释放出来,并诱导马氏管中锌储存颗粒的形成,其中 3-羟基犬尿氨酸和黄尿酸作为内源性锌螯合剂发挥作用。犬尿氨酸作为一种外周锌调节激素发挥作用,并转化为 3-羟基犬尿氨酸-锌-氯化物复合物,在储存颗粒内沉淀。因此,锌和犬尿氨酸途径——众所周知的免疫、血压、衰老和神经退行性变的调节剂——在生理上是相互关联的。