Drug Discovery Unit, School of Life Sciences, University of Dundee, Dow Street, Dundee DD1 5, U.K.
Biosci Rep. 2021 Dec 22;41(12). doi: 10.1042/BSR20211524C.
The analysis of the urine contents can be informative of physiological homoeostasis, and it has been speculated that the levels of urinary d-serine (d-ser) could inform about neurological and renal disorders. By analysing the levels of urinary d-ser using a d-ser dehydratase (DSD) enzyme, Ito et al. (Biosci. Rep.(2021) 41, BSR20210260) have described abundant levels of l-erythro-β-hydroxyasparagine (l-β-EHAsn), a non-proteogenic amino acid which is also a newly described substrate for DSD. The data presented support the endogenous production l-β-EHAsn, with its concentration significantly correlating with the concentration of creatinine in urine. Taken together, these results could raise speculations that l-β-EHAsn might have unexplored important biological roles. It has been demonstrated that l-β-EHAsn also inhibits serine racemase with Ki values (40 μM) similar to its concentration in urine (50 μM). Given that serine racemase is the enzyme involved in the synthesis of d-ser, and l-β-EHAsn is also a substrate for DSD, further investigations could verify if this amino acid would be involved in the metabolic regulation of pathways involving d-ser.
尿液成分的分析可以提供有关生理稳态的信息,人们推测尿中 D-丝氨酸(d-ser)的水平可以反映神经和肾脏疾病。Ito 等人通过分析 D-丝氨酸脱水酶(DSD)酶的尿 d-ser 水平(Biosci. Rep.(2021)41,BSR20210260),描述了丰富的 l-erythro-β-hydroxyasparagine(l-β-EHAsn)水平,l-β-EHAsn 是一种非蛋白氨基酸,也是 DSD 的新描述的底物。所提供的数据支持内源性产生 l-β-EHAsn,其浓度与尿中肌酐浓度显著相关。综上所述,这些结果可能会引起人们对 l-β-EHAsn 可能具有尚未探索的重要生物学作用的猜测。已经证明 l-β-EHAsn 还可以抑制丝氨酸 racemase,其 Ki 值(40 μM)与尿中浓度(50 μM)相似。鉴于丝氨酸 racemase 是参与 d-ser 合成的酶,并且 l-β-EHAsn 也是 DSD 的底物,进一步的研究可以验证这种氨基酸是否会参与涉及 d-ser 的代谢调节途径。