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电压感应磷酸酶 (Vsp) 调节脊索动物肠细胞中依赖内吞作用的营养吸收。

Voltage-sensing phosphatase (Vsp) regulates endocytosis-dependent nutrient absorption in chordate enterocytes.

机构信息

Laboratory of Integrative Physiology, Department of Physiology, Graduate School of Medicine, Osaka University, Suita, Osaka, 565-0871, Japan.

Institute for Transdisciplinary Graduate Degree Programs, Osaka University, Suita, Osaka, 565-0871, Japan.

出版信息

Commun Biol. 2022 Sep 10;5(1):948. doi: 10.1038/s42003-022-03916-6.

Abstract

Voltage-sensing phosphatase (Vsp) is a unique membrane protein that translates membrane electrical activities into the changes of phosphoinositide profiles. Vsp orthologs from various species have been intensively investigated toward their biophysical properties, primarily using a heterologous expression system. In contrast, the physiological role of Vsp in native tissues remains largely unknown. Here we report that zebrafish Vsp (Dr-Vsp), encoded by tpte gene, is functionally expressed on the endomembranes of lysosome-rich enterocytes (LREs) that mediate dietary protein absorption via endocytosis in the zebrafish mid-intestine. Dr-Vsp-deficient LREs were remarkably defective in forming endosomal vacuoles after initial uptake of dextran and mCherry. Dr-Vsp-deficient zebrafish exhibited growth restriction and higher mortality during the critical period when zebrafish larvae rely primarily on exogenous feeding via intestinal absorption. Furthermore, our comparative study on marine invertebrate Ciona intestinalis Vsp (Ci-Vsp) revealed co-expression with endocytosis-associated genes in absorptive epithelial cells of the Ciona digestive tract, corresponding to zebrafish LREs. These findings signify a crucial role of Vsp in regulating endocytosis-dependent nutrient absorption in specialized enterocytes across animal species.

摘要

电压感应磷酸酶(Vsp)是一种独特的膜蛋白,可将膜电活动转化为磷酸肌醇谱的变化。来自不同物种的 Vsp 同源物的生物物理特性已得到深入研究,主要使用异源表达系统。相比之下,Vsp 在天然组织中的生理作用在很大程度上仍然未知。在这里,我们报告说,斑马鱼 Vsp(Dr-Vsp)由 tpte 基因编码,在富含溶酶体的肠细胞(LRE)的内体膜上表达,该细胞通过内吞作用介导斑马鱼中肠的膳食蛋白吸收。在初始摄取葡聚糖和 mCherry 后,Dr-Vsp 缺陷型 LRE 在内体小泡形成方面明显有缺陷。在斑马鱼幼虫主要通过肠道吸收进行外源喂养的关键时期,Dr-Vsp 缺陷型斑马鱼表现出生长受限和更高的死亡率。此外,我们对海洋无脊椎动物 Ciona intestinalis Vsp(Ci-Vsp)的比较研究表明,它与 Ciona 消化道吸收性上皮细胞中的内吞作用相关基因共表达,与斑马鱼 LRE 相对应。这些发现表明 Vsp 在调节跨动物物种的专门肠细胞中依赖于内吞作用的营养吸收中起着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bc7/9464190/7565e16c5da3/42003_2022_3916_Fig1_HTML.jpg

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