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瘤胃细菌中 CcpA 蛋白对碳水化合物分解代谢的转录控制

Transcriptional control of carbohydrate catabolism by the CcpA protein in the ruminal bacterium .

机构信息

Laboratory of Metabolic Manipulation of Herbivorous Animal Nutrition, College of Animal Science and Technology, Yangzhou University, Yangzhou, China.

出版信息

Appl Environ Microbiol. 2023 Oct 31;89(10):e0047423. doi: 10.1128/aem.00474-23. Epub 2023 Oct 12.

Abstract

As a potent, pleiotropic regulatory protein in Gram-positive bacteria, catabolite control protein A (CcpA) mediates the transcriptional control of carbohydrate metabolism in , a lactate-producing bacterium that plays an essential role in rumen acidosis in dairy cows. Although the rumen uptake of carbohydrates is multi-substrate, the focus of research thus far has been on the glucose. With the aid of gene deletion, whole-genome sequencing, and transcriptomics, we have unraveled the role of CcpA in carbohydrate metabolism, on the one hand, and acidosis, on the other, and we show that the strain S1 encodes "Carbohydrate-Active Enzymes" and that deletion slows the organism's growth rate and modulates the organic acid fermentation pathways toward lower lactate, higher formate, and acetate in the maltose and cellobiose. Furthermore, this study revealed the different regulatory functions of the CcpA protein in rumen metabolism and acidosis.IMPORTANCEThis study is important as it illustrates the varying regulatory role of the catabolite control protein A protein in carbohydrate metabolism and the onset of acidosis in dairy cattle.

摘要

作为革兰氏阳性菌中一种有效的、多效的调节蛋白,分解代谢物激活蛋白 A(CcpA)介导了乳酸生产菌中碳水化合物代谢的转录控制,该菌在奶牛反刍动物酸中毒中起着至关重要的作用。尽管瘤胃对碳水化合物的吸收是多底物的,但迄今为止,研究的重点一直是葡萄糖。借助基因缺失、全基因组测序和转录组学,我们一方面揭示了 CcpA 在碳水化合物代谢和酸中毒中的作用,另一方面表明 S1 菌株编码“碳水化合物活性酶”,并且缺失会降低生物体的生长速度,并调节有机酸发酵途径,使麦芽糖和纤维二糖中的乳酸降低,甲酸和乙酸升高。此外,这项研究揭示了 CcpA 蛋白在瘤胃代谢和酸中毒中不同的调节功能。

重要性

这项研究很重要,因为它说明了 分解代谢物激活蛋白 A 蛋白在碳水化合物代谢和奶牛酸中毒中的不同调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c4f/10617382/230009eac697/aem.00474-23.f001.jpg

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