Basic Sciences Division and Computational Biology Section of the Public Health Sciences Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
Microbiologyopen. 2020 Feb;9(2):e960. doi: 10.1002/mbo3.960. Epub 2019 Nov 3.
The amino acid serine plays diverse metabolic roles, yet bacteria actively degrade exogenously provided serine via deamination to pyruvate. Serine deamination is thought to be a detoxification mechanism due to the ability of serine to inhibit several biosynthetic reactions, but this pathway remains highly active even in nutrient-replete conditions. While investigating the physiological roles of serine deamination in different growth conditions, we discovered that Escherichia coli cells lacking the sdaCB operon, which encodes the serine transporter SdaC and the serine deaminase SdaB, lyse upon glucose depletion in a medium containing no exogenous serine but all other amino acids and nucleobases. Unexpectedly, this lysis phenotype can be recapitulated by deleting sdaC alone and can be rescued by heterologous expression of SdaC. Lysis of ΔsdaC cells can be prevented by omitting glycine from the medium, inhibiting the glycine cleavage system, or by increasing alanine availability. Together, our results reveal that the serine transporter SdaC plays a critical role in maintaining amino acid homeostasis during shifts in nutrient availability in E. coli.
丝氨酸在代谢中发挥多种作用,但细菌会通过脱氨作用将外源提供的丝氨酸主动降解为丙酮酸。由于丝氨酸能够抑制几种生物合成反应,因此人们认为丝氨酸脱氨作用是一种解毒机制,但即使在营养丰富的条件下,该途径仍然非常活跃。在研究丝氨酸脱氨作用在不同生长条件下的生理作用时,我们发现,在不含外源丝氨酸但含有所有其他氨基酸和核碱基的培养基中,缺乏编码丝氨酸转运蛋白 SdaC 和丝氨酸脱氨酶 SdaB 的 sdaCB 操纵子的大肠杆菌细胞在葡萄糖耗尽时会裂解。出乎意料的是,单独缺失 sdaC 即可再现这种裂解表型,并且可以通过异源表达 SdaC 来挽救。通过从培养基中去除甘氨酸、抑制甘氨酸裂解系统或增加丙氨酸的可用性,可以防止 ΔsdaC 细胞的裂解。总之,我们的结果表明,丝氨酸转运蛋白 SdaC 在大肠杆菌中营养物质可用性发生变化时,对于维持氨基酸稳态起着至关重要的作用。