Institute of Molecular Genetics IGM CNR "Luigi Luca Cavalli-Sforza", Via Abbiategrasso 207, 27100 Pavia, Italy.
Department of Biology and Biotechnology, University of Pavia, Via Ferrata 9, 27100 Pavia, Italy.
Int J Mol Sci. 2023 Dec 23;25(1):245. doi: 10.3390/ijms25010245.
Malpighian tubules (MTs) are arthropod excretory organs crucial for the osmoregulation, detoxification and excretion of xenobiotics and metabolic wastes, which include tryptophan degradation products along the kynurenine (KYN) pathway. Specifically, the toxic intermediate 3-hydroxy kynurenine (3-HK) is metabolized through transamination to xanthurenic acid or in the synthesis of ommochrome pigments. Early investigations in larval fat bodies revealed an intracellular autofluorescence (AF) that depended on tryptophan administration. Subsequent observations documented AF changes in the MTs of eye-color mutants genetically affecting the conversion of tryptophan to KYN or 3-HK and the intracellular availability of zinc ions. In the present study, the AF properties of the MTs in the Asian tiger mosquito, were characterized in different stages of the insect's life cycle, tryptophan-administered larvae and blood-fed adult females. Confocal imaging and microspectroscopy showed AF changes in the distribution of intracellular, brilliant granules and in the emission spectral shape and amplitude between the proximal and distal segments of MTs across the different samples. The findings suggest AF can serve as a promising marker for investigating the functional status of MTs in response to metabolic alterations, contributing to the use of MTs as a potential research model in biomedicine.
马氏管(MTs)是节肢动物的排泄器官,对渗透压调节、解毒和外源性物质以及代谢废物的排泄至关重要,其中包括色氨酸降解产物沿犬尿酸(KYN)途径。具体来说,有毒中间产物 3-羟基犬尿酸(3-HK)通过转氨基作用代谢为黄尿酸或合成欧米茄色素。在幼虫脂肪体中的早期研究揭示了一种依赖于色氨酸给药的细胞内自发荧光(AF)。随后的观察记录了 眼色突变体 MTs 中的 AF 变化,这些突变体基因上影响色氨酸向 KYN 或 3-HK 的转化以及细胞内锌离子的可用性。在本研究中, characterization 了亚洲虎蚊 不同生命周期阶段、给予色氨酸的幼虫和吸血成年雌蚊中 MTs 的 AF 特性。共聚焦成像和微光谱显示,在不同样本的 MTs 的近端和远端部分之间,细胞内、明亮颗粒的分布以及发射光谱形状和幅度的 AF 变化。这些发现表明,AF 可以作为一种有前途的标志物,用于研究 MTs 对代谢变化的功能状态,有助于将 MTs 用作生物医学中潜在的研究模型。