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Selectivity of commonly used pharmacological inhibitors for cystathionine ?? synthase (CBS) and cystathionine ?? lyase (CSE).

机译:常用药物抑制剂对胱硫醚的选择性?合成酶(CBs)和胱硫醚?裂解酶(CsE)。

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摘要

Abstract\udBACKGROUND AND PURPOSE:\udHydrogen sulfide (H???S) is a signalling molecule that belongs to the gasotransmitter family. Two major sources for endogenous enzymatic production of H???S are cystathionine ?? synthase (CBS) and cystathionine ?? lyase (CSE). In the present study, we examined the selectivity of commonly used pharmacological inhibitors of H???S biosynthesis towards CSE and CBS.\udEXPERIMENTAL APPROACH:\udTo address this question, human CSE or CBS enzymes were expressed and purified from Escherichia coli as fusion proteins with GSH-S-transferase. After purification, the activity of the recombinant enzymes was tested using the methylene blue method.\udKEY RESULTS:\ud??-Cyanoalanine (BCA) was more potent in inhibiting CSE than propargylglycine (PAG) (IC?????? 14 ± 0.2 ??M vs. 40 ± 8 ??M respectively). Similar to PAG, L-aminoethoxyvinylglycine (AVG) only inhibited CSE, but did so at much lower concentrations. On the other hand, aminooxyacetic acid (AOAA), a frequently used CBS inhibitor, was more potent in inhibiting CSE compared with BCA and PAG (IC?????? 1.1 ± 0.1?????M); the IC?????? for AOAA for inhibiting CBS was 8.5 ± 0.7 ??M. In line with our biochemical observations, relaxation to L-cysteine was blocked by AOAA in aortic rings that lacked CBS expression. Trifluoroalanine and hydroxylamine, two compounds that have also been used to block H???S biosynthesis, blocked the activity of CBS and CSE. Trifluoroalanine had a fourfold lower IC?????? for CBS versus CSE, while hydroxylamine was 60-fold more selective against CSE.\udCONCLUSIONS AND IMPLICATIONS:\udIn conclusion, although PAG, AVG and BCA exhibit selectivity in inhibiting CSE versus CBS, no selective pharmacological CBS inhibitor is currently available.
机译:摘要\ ud背景和目的:\ udH2S是一种信号分子,属于气体递质家族。内源性H 2 S酶促产生的两个主要来源是胱硫醚?合酶(CBS)和胱硫醚裂解酶(CSE)。在本研究中,我们研究了H ??? S生物合成对CSE和CBS的常用药理抑制剂的选择性。\ ud实验方法:\ ud为解决此问题,人类CSE或CBS酶从大肠杆菌中表达并纯化为融合蛋白GSH-S-转移酶的蛋白质。纯化后,用亚甲基蓝法测试重组酶的活性。\ ud关键结果:\ ud ??-氰丙氨酸(BCA)在抑制CSE方面比炔丙基甘氨酸(PAG)更有效(IC ?????? 14 ±0.2?M与40±8?M分别)。与PAG相似,L-氨基乙氧基乙烯基甘氨酸(AVG)仅抑制CSE,但浓度低得多。另一方面,与BCA和PAG相比,常用的CBS抑制剂氨氧基乙酸(AOAA)在抑制CSE方面更有效(IC≥1.1±0.1≤M)。 IC ?????? AOAA对CBS的抑制作用为8.5±0.7?M。根据我们的生化观察,在缺乏CBS表达的主动脉环中,AOAA阻止了L-半胱氨酸的松弛。三氟丙氨酸和羟胺这两种化合物也已被用来阻止H 2 S的生物合成,它们阻止了CBS和CSE的活性。三氟丙氨酸的IC降低四倍结论:尽管PAG,AVG和BCA对CSE的抑制作用比对CBS的选择性高,但目前尚无选择性的CBS药理抑制剂。

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