Njålsson Runa, Carlsson Katarina, Bhansali Vikas, Luo Jia-Li, Nilsson Lennart, Ladenstein Rudolf, Anderson Mary, Larsson Agne, Norgren Svante
Department of Paediatrics, Karolinska Institutet, Karolinska University Hospital, 141 86 Stockholm, Sweden.
Biochem J. 2004 Jul 15;381(Pt 2):489-94. doi: 10.1042/BJ20040114.
Patients with hereditary glutathione synthetase deficiency suffer from haemolytic anaemia, 5-oxoprolinuria, metabolic acidosis, recurrent bacterial infections and various degrees of central nervous system dysfunction. To investigate the molecular basis of the mutations associated with this disease, seven naturally occurring missense mutations [L188P (Leu188-->Pro), D219A, D219G, Y270C, Y270H, R283C and P314L] were expressed using a His-tagged, Escherichia coli-based expression system. Effects of the mutations on kinetic properties, including negative co-operative binding of gamma-glutamyl substrate, were evaluated. The mutation P314L did not have any major effect on these parameters and was classified as a neutral mutation. The remaining mutations decreased V(max) to 2-27% of wild-type activity. Negative co-operativity for gamma-gluABA (L-gamma-glutamyl-L-alpha-aminobutyric acid) was abolished in five mutant recombinant enzymes, whereas for one mutant enzyme, this co-operativity changed from negative to positive. The structural consequences of the mutations were interpreted on the basis of the known structure of the wild-type enzyme.
患有遗传性谷胱甘肽合成酶缺乏症的患者会出现溶血性贫血、5-氧脯氨酸尿症、代谢性酸中毒、复发性细菌感染以及不同程度的中枢神经系统功能障碍。为了研究与该疾病相关的突变的分子基础,使用基于大肠杆菌的His标签表达系统表达了7种天然存在的错义突变 [L188P(Leu188→Pro)、D219A、D219G、Y270C、Y270H、R283C 和 P314L]。评估了这些突变对动力学特性的影响,包括γ-谷氨酰底物的负协同结合。突变P314L对这些参数没有任何重大影响,被归类为中性突变。其余突变使V(max)降至野生型活性的2%-27%。在5种突变重组酶中,γ-谷氨酰-L-α-氨基丁酸(γ-gluABA)的负协同性被消除,而对于一种突变酶,这种协同性从负变为正。根据野生型酶的已知结构解释了突变的结构后果。