Hexokinase 1 and 2 mediates glucose utilization to regulate the synthesis of kappa casein via ribosome protein subunit 6 kinase 1 in bovine mammary epithelial cells

IF 6.1 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Nutrition Pub Date : 2024-01-14 DOI:10.1016/j.aninu.2024.01.001
Tianyu Yang, Jia Guo, Han Song, Osmond Datsomor, Yuhang Chen, Maocheng Jiang, Kang Zhan, Guoqi Zhao
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Abstract

Glucose plays a vital part in milk protein synthesis through the mTOR signaling pathway in bovine mammary epithelial cells (BMEC). The objectives of this study were to determine how glucose affects hexokinase (HK) activity in BMEC and investigate the regulatory effect of HK in kappa casein (CSN3) synthesis via the mechanistic target of rapamycin complex 1 (mTORC1) signaling pathway in BMEC. For this, HK1 and HK2 were knocked out in BMEC using the CRISPR/Cas9 system. The gene and protein expression, glucose uptake, and cell proliferation were measured. We found that glucose uptake, cell proliferation, CSN3 gene expression levels, and expression of HK1 and HK2 increased with increasing glucose concentrations. Notably, glucose uptake was significantly reduced in HK2 knockout (HK2KO) BMEC treated with 17.5 mM glucose. Moreover, under the same glucose treatment conditions, the proliferative ability and abundance of CSN3 were significantly diminished in both HK1 knockout (HK1KO) and HK2KO BMEC compared with that in wild-type BEMC. We further observed that the phosphorylation levels of ribosome protein subunit 6 kinase 1 (S6K1) were reduced in HK1KO and HK2KO BMEC following treatment with 17.5 mM glucose. As expected, the levels of glucose-6-phosphate and the mRNA expression levels of glycolysis-related genes were decreased in both HK1KO and HK2KO BMEC following glucose treatment. These results indicated that the knockout of HK1 and HK2 inhibited cell proliferation and CNS3 expression in BMEC under glucose treatment, which may be associated with the inactivation of the S6K1 and inhibition of glycolysis.

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六磷酸酶 1 和 2 在牛乳腺上皮细胞中通过核糖体蛋白亚基 6 激酶 1 介导葡萄糖利用,以调节卡帕酪蛋白的合成
葡萄糖通过牛乳腺上皮细胞(BMEC)中的mTOR信号通路在牛奶蛋白质合成中发挥着重要作用。本研究的目的是确定葡萄糖如何影响 BMEC 中己糖激酶(HK)的活性,并研究 HK 通过 BMEC 中雷帕霉素复合体 1(mTORC1)信号通路对卡帕酪蛋白(CSN3)合成的调控作用。为此,利用 CRISPR/Cas9 系统敲除了 BMEC 中的 HK1 和 HK2。我们测定了基因和蛋白表达、葡萄糖摄取和细胞增殖。我们发现,葡萄糖摄取、细胞增殖、CSN3 基因表达水平以及 HK1 和 HK2 的表达均随葡萄糖浓度的增加而增加。值得注意的是,在用 17.5 mM 葡萄糖处理 HK2 基因敲除(HK2KO)的 BMEC 中,葡萄糖摄取量明显减少。此外,在相同的葡萄糖处理条件下,与野生型 BEMC 相比,HK1 基因敲除(HK1KO)和 HK2KO BMEC 的增殖能力和 CSN3 的丰度都明显降低。我们进一步观察到,用 17.5 mM 葡萄糖处理 HK1KO 和 HK2KO BMEC 后,核糖体蛋白亚基 6 激酶 1(S6K1)的磷酸化水平降低。正如预期的那样,在葡萄糖处理后,HK1KO 和 HK2KO BMEC 中的葡萄糖-6-磷酸水平和糖酵解相关基因的 mRNA 表达水平均下降。这些结果表明,敲除 HK1 和 HK2 可抑制葡萄糖处理下 BMEC 的细胞增殖和 CNS3 表达,这可能与 S6K1 失活和糖酵解受抑制有关。
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来源期刊
Animal Nutrition
Animal Nutrition Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
7.40
自引率
3.20%
发文量
172
审稿时长
12 weeks
期刊介绍: Animal Nutrition encompasses the full gamut of animal nutritional sciences and reviews including, but not limited to, fundamental aspects of animal nutrition such as nutritional requirements, metabolic studies, body composition, energetics, immunology, neuroscience, microbiology, genetics and molecular and cell biology related to nutrition, and more applied aspects of animal nutrition, such as raw material evaluation, feed additives, nutritive value of novel ingredients and feed safety.
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