Belew Muluken S, Quazi Faraz I, Willmore William G, Aitken Susan M
Department of Biology, Institute of Biochemistry, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S5B6, Canada.
Protein Expr Purif. 2009 Apr;64(2):139-45. doi: 10.1016/j.pep.2008.10.012. Epub 2008 Oct 30.
Cystathionine beta-synthase (CBS) catalyzes the pyridoxal-50-phosphate-dependent condensation of L-serine and L-homocysteine to form L-cystathionine in the first step of the transsulfuration pathway. Although effective expression systems for recombinant human CBS (hCBS) have been developed, they require multiple chromatographic steps as well as proteolytic cleavage to remove the fusion partner. Therefore, a series of five expression constructs, each incorporating a 6-His tag, were developed to enable the efficient purification of hCBS via immobilized metal ion affinity chromatography. Two of the constructs express hCBS in fusion with a protein partner, while the others bear only the affinity tag. The addition of an amino-terminal, 6-His tag, in the absence of a protein fusion partner and in the absence or presence ofa protease-cleavable linker, was found to be sufficient for the purification of soluble hCBS and resulted in enzyme with 86-91% heme saturation and with activity similar to that reported for other hCBS expression constructs. The continuous assay for L-Cth production, employing cystathionine beta-lyase and L-lactate dehydrogenase as coupling enzymes, was employed here for the first time to determine the steady-state kinetic parameters of hCBS, via global analysis, and revealed previously unreported substrate inhibition by L-Hcys (K(i)(L-HCYS) = 2.1 +/- 0.2 mM). The kinetic parameters for the hCBS-catalyzed hydrolysis of L-Cth toL-Ser and L-Hcys were also determined and the k(cat)/K(m)(L-CTH) of this reaction is only approximately 2-fold lower than the k(cat)/K(m)(L-SER) of the physiological, condensation reaction.
胱硫醚β-合酶(CBS)催化磷酸吡哆醛依赖性的L-丝氨酸和L-高半胱氨酸缩合反应,在转硫途径的第一步中形成L-胱硫醚。尽管已经开发出了用于重组人CBS(hCBS)的有效表达系统,但它们需要多个色谱步骤以及蛋白酶切割来去除融合伴侣。因此,开发了一系列五个表达构建体,每个构建体都包含一个6-组氨酸标签,以通过固定化金属离子亲和色谱法高效纯化hCBS。其中两个构建体表达与蛋白质伴侣融合的hCBS,而其他构建体仅带有亲和标签。发现在没有蛋白质融合伴侣且存在或不存在蛋白酶可切割接头的情况下添加氨基末端6-组氨酸标签足以纯化可溶性hCBS,并产生血红素饱和度为86-91%且活性与其他hCBS表达构建体报道的活性相似的酶。本文首次采用以胱硫醚β-裂合酶和L-乳酸脱氢酶作为偶联酶的L-Cth连续测定法,通过全局分析来确定hCBS的稳态动力学参数,并揭示了以前未报道的L-Hcys底物抑制作用(K(i)(L-HCYS) = 2.1 +/- 0.2 mM)。还测定了hCBS催化L-Cth水解为L-Ser和L-Hcys的动力学参数,该反应的k(cat)/K(m)(L-CTH)仅比生理缩合反应的k(cat)/K(m)(L-SER)低约2倍。