Department of Biochemical Sciences "A. Rossi Fanelli", Sapienza University of Rome, Piazzale Aldo Moro 5, 00185 Roma, Italy.
Department of Pharmaceutical Toxicology, Faculty of Pharmacy, Bezmialem Vakif University, 34093 Istanbul, Turkey.
Molecules. 2024 Aug 23;29(17):3985. doi: 10.3390/molecules29173985.
-Homocysteine, formed from S-adenosyl methionine following demethylation and adenosine release, accumulates when the methionine recycling pathway and other pathways become impaired, thus leading to hyperhomocysteinemia, a biomarker in cardiovascular diseases, neurological/psychiatric disorders, and cancer. The partial oxidation of the -homocysteine thiol group and its decarboxylation on C-alpha lead to the formation of -homocysteinesulfinic acid (-HCSA) and homohypotaurine (HHT), respectively. Both compounds are not readily available from commercial suppliers, which hinders the investigation of their biological activities. Herein, the chemical synthesis of -HCSA, from -homocystine, was the starting point for establishing the bio-based synthesis of HHT using recombinant glutamate decarboxylase (GadB), an enzyme already successfully employed for the bio-based synthesis of GABA and its phosphinic analog. Prior to HHT synthesis, (33.92 ± 1.07) and (38.24 ± 3.45 mM) kinetic constants were determined for -HCSA on GadB. The results of our study show that the GadB-mediated synthesis of HHT can be achieved with good yields (i.e., 40% following enzymatic synthesis and column chromatography). Purified HHT was tested in vitro on primary human umbilical vein endothelial cells and rat cardiomyoblasts and compared to the fully oxidized analog, homotaurine (OT, also known as tramiprosate), in widespread pharmaceutical use. The results show that both cell lines display statistically significant recovery from the cytotoxic effects induced by HO in the presence of HHT.
高半胱氨酸是 S-腺苷甲硫氨酸经去甲基化和腺苷释放后形成的,当蛋氨酸再循环途径和其他途径受损时会积累,从而导致高同型半胱氨酸血症,这是心血管疾病、神经/精神疾病和癌症的生物标志物。-同型半胱氨酸硫醇基团的部分氧化及其在 C-α上的脱羧作用分别导致 -同型半胱氨酸磺酸(-HCSA)和高同型瓜氨酸(HHT)的形成。这两种化合物都不容易从商业供应商处获得,这阻碍了对其生物活性的研究。在此,从 -同型胱氨酸开始,化学合成 -HCSA,是使用重组谷氨酸脱羧酶(GadB)建立 HHT 的生物合成的起点,该酶已成功用于 GABA 及其膦酸类似物的生物合成。在合成 HHT 之前,确定了 GadB 上 -HCSA 的(33.92 ± 1.07)和(38.24 ± 3.45 mM)动力学常数。我们的研究结果表明,GadB 介导的 HHT 合成可以获得良好的产率(即酶合成和柱层析后为 40%)。纯化的 HHT 在体外对原代人脐静脉内皮细胞和大鼠心肌细胞进行了测试,并与广泛用于药物的完全氧化类似物,高丝氨酸(OT,也称为曲米普罗特)进行了比较。结果表明,两种细胞系在存在 HHT 的情况下,均显示出统计学上显著的从 HO 诱导的细胞毒性作用中恢复。