Sakurai Satomi, Fukao Toshiyuki, Haapalainen Antti M, Zhang Gaixiu, Yamada Keitaro, Lilliu Franco, Yano Shoji, Robinson Peter, Gibson Michael K, Wanders Ronald J A, Mitchell Grant A, Wierenga Rik K, Kondo Naomi
Department of Pediatrics, Graduate School of Medicine, Gifu University, Gifu, Gifu, Japan.
Mol Genet Metab. 2007 Apr;90(4):370-8. doi: 10.1016/j.ymgme.2006.12.002. Epub 2007 Jan 22.
Mitochondrial acetoacetyl-CoA thiolase (T2) deficiency is an inborn error of metabolism that affects isoleucine catabolism and ketone body metabolism. We identified 7 novel and 2 previously reported mutations in six T2-deficient patients. Transient expression analysis of wild-type and eight mutant cDNAs was performed at 40, 37 and 30 degrees C. Although no significant residual activity was detected, mutant proteins were detected in the N158D, N158S, R208Q, Y219H and N282H mutants. Accumulation of these mutant proteins was temperature-sensitive with the highest expression levels at lower temperatures. Expression of Q73P and N353K cDNAs yielded neither residual T2 protein nor enzyme activity. An E252del mutant T2 was detected with a relative protein amount and enzyme activity of 30% and 25%, respectively, in comparison to the wild-type at 37 degrees C. The E252del mutant protein was more stable at 30 degrees C expression than 37 degrees C, but was essentially undetectable at 40 degrees C, indicating its temperature-sensitive instability. Kinetic studies revealed a twofold K(m) elevation for substrates coenzyme A and acetoacetyl-CoA in the E252del mutant, while V(max) was comparable to the wild-type. We conclude that the E252del is a temperature-sensitive K(m) mutant. This correlates well with the effect predicted from the T2 tertiary structure analysis, using the crystal structure of the human T2 homotetramer. The probable effect of the other mutations on the T2 tertiary structure was also evaluated.
线粒体乙酰乙酰辅酶A硫解酶(T2)缺乏症是一种影响异亮氨酸分解代谢和酮体代谢的先天性代谢紊乱。我们在6例T2缺乏症患者中鉴定出7个新的和2个先前报道的突变。在40℃、37℃和30℃对野生型和8个突变cDNA进行瞬时表达分析。虽然未检测到明显的残余活性,但在N158D、N158S、R208Q、Y219H和N282H突变体中检测到了突变蛋白。这些突变蛋白的积累对温度敏感,在较低温度下表达水平最高。Q73P和N353K cDNA的表达既未产生残余的T2蛋白,也未产生酶活性。与37℃时的野生型相比,检测到E252del突变体T2的相对蛋白量和酶活性分别为30%和25%。E252del突变蛋白在30℃表达时比37℃更稳定,但在40℃时基本检测不到,表明其对温度敏感的不稳定性。动力学研究表明,E252del突变体中辅酶A和乙酰乙酰辅酶A底物的米氏常数(K(m))升高了两倍,而最大反应速度(V(max))与野生型相当。我们得出结论,E252del是一个对温度敏感的K(m)突变体。这与使用人T2同四聚体晶体结构对T2三级结构分析预测的结果很好地相关。还评估了其他突变对T2三级结构的可能影响。