Mewies M, Packman L C, Mathews F S, Scrutton N S
Department of Biochemistry, University of Leicester, UK.
Biochem J. 1996 Jul 1;317 ( Pt 1)(Pt 1):267-72. doi: 10.1042/bj3170267.
In wild-type trimethylamine dehydrogenase, residue Arg-222 is positioned close to the isoalloxazine N1/C2 positions of the 6S-cysteinyl FMN. The positively charged guanidino group of Arg-222 is thought to stabilize negative charge as it develops at the N1 position of the flavin during flavinylation of the enzyme. Three mutant trimethylamine dehydrogenases were constructed to alter the nature of the charge at residue 222. The amount of active flavinylated enzyme produced in Escherichia coli is reduced when Arg-222 is replaced by lysine (mutant R222K). Removal or reversal of the charge at residue 222 (mutants R222V and R222E, respectively) leads to the production of inactive enzymes that are totally devoid of flavin. A comparison of the CD spectra for the wild-type and mutant enzymes revealed no major structural change following mutagenesis. Like the wild-type protein, each mutant enzyme contained stoichiometric amounts of the 4Fe-4S cluster and ADP. Electrospray MS also indicated that the native and recombinant wild-type enzymes were isolated as a mixture of deflavo and holo enzyme, but that each of the mutant enzymes have masses expected for deflavo trimethylamine dehydrogenase. The MS data indicate that the lack of assembly of the mutant proteins with FMN is not due to detectable levels of post-translational modification of significant mass. The experiments reported here indicate that simple mutagenic changes in the FMN-binding site can reduce the proportion of flavinylated enzyme isolated from Escherichia coli and that positive charge is required at residue 222 if flavinylation is to proceed.
在野生型三甲胺脱氢酶中,精氨酸残基-222靠近6S-半胱氨酰黄素单核苷酸的异咯嗪N1/C2位置。精氨酸-222带正电荷的胍基被认为在酶的黄素化过程中,当黄素N1位置出现负电荷时起到稳定作用。构建了三种突变型三甲胺脱氢酶以改变222位残基的电荷性质。当精氨酸-222被赖氨酸取代(突变体R222K)时,在大肠杆菌中产生的活性黄素化酶的量会减少。去除或反转222位残基的电荷(分别为突变体R222V和R222E)会导致产生完全不含黄素的无活性酶。野生型和突变型酶的圆二色光谱比较显示,诱变后没有发生重大结构变化。与野生型蛋白一样,每种突变型酶都含有化学计量的4Fe-4S簇和ADP。电喷雾质谱还表明,天然和重组野生型酶是作为脱辅基和全酶的混合物分离得到的,但每种突变型酶的质量都符合脱辅基三甲胺脱氢酶的预期。质谱数据表明,突变蛋白与黄素单核苷酸缺乏组装不是由于可检测到的显著质量的翻译后修饰水平。本文报道的实验表明,黄素单核苷酸结合位点的简单诱变变化可以降低从大肠杆菌中分离出的黄素化酶的比例,并且如果要进行黄素化,222位残基需要带正电荷。