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牛奶的生物合成需要高尔基体阳离子交换器 TMEM165。

Milk biosynthesis requires the Golgi cation exchanger TMEM165.

机构信息

From the Department of Biology, Johns Hopkins University, Baltimore, Maryland 21218 and.

the Bacterial Diseases of Livestock, Research Unit, United States Department of Agriculture/Agricultural Research Services, National Animal Disease Center, Ames, Iowa 50010.

出版信息

J Biol Chem. 2019 Mar 1;294(9):3181-3191. doi: 10.1074/jbc.RA118.006270. Epub 2019 Jan 8.

Abstract

Milk is a hallmark of mammals that is critical for normal growth and development of offspring. During biosynthesis of lactose in the Golgi complex, H is produced as a by-product, and there is no known mechanism for maintaining luminal pH within the physiological range. Here, using conditional, tissue-specific knockout mice, immunostaining, and biochemical assays, we test whether the putative H/Ca/Mn exchanger known as TMEM165 (transmembrane protein 165) participates in normal milk production. We find TMEM165 is crucial in the lactating mammary gland for normal biosynthesis of lactose and for normal growth rates of nursing pups. The milk of TMEM165-deficient mice contained elevated concentrations of fat, protein, iron, and zinc, which are likely caused by decreased osmosis-mediated dilution of the milk caused by the decreased biosynthesis of lactose. When normalized to total protein levels, only calcium and manganese levels were significantly lower in the milk from TMEM165-deficient dams than control dams. These findings suggest that TMEM165 supplies Ca and Mn to the Golgi complex in exchange for H to sustain the functions of lactose synthase and potentially other glycosyl-transferases. Our findings highlight the importance of cation and pH homeostasis in the Golgi complex of professional secretory cells and the critical role of TMEM165 in this process.

摘要

牛奶是哺乳动物的标志,对后代的正常生长和发育至关重要。在高尔基复合体中乳糖的生物合成过程中,H 作为副产物产生,目前尚没有已知的机制来维持腔内 pH 值在生理范围内。在这里,我们使用条件性、组织特异性敲除小鼠、免疫染色和生化分析,测试了已知的 H/Ca/Mn 交换体 TMEM165(跨膜蛋白 165)是否参与正常的乳汁分泌。我们发现 TMEM165 在泌乳乳腺中对于乳糖的正常生物合成以及哺乳幼崽的正常生长速度是至关重要的。TMEM165 缺陷型小鼠的乳汁中脂肪、蛋白质、铁和锌的浓度升高,这可能是由于乳糖生物合成减少导致的渗透压介导的乳汁稀释减少所致。当与总蛋白水平归一化时,只有 TMEM165 缺陷型母鼠的乳汁中的钙和锰水平明显低于对照组母鼠。这些发现表明,TMEM165 将 Ca 和 Mn 供应给高尔基复合体,以换取 H,从而维持乳糖合酶和潜在其他糖基转移酶的功能。我们的研究结果强调了阳离子和 pH 值平衡在专业分泌细胞的高尔基复合体中的重要性,以及 TMEM165 在这个过程中的关键作用。

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