Ritco-Vonsovici M, Mouratou B, Minard P, Desmadril M, Yon J M, Andrieux M, Leroy E, Guittet E
Laboratoire d'Enzymologie Physicochimique et Moléculaire, Université de Paris-Sud, Orsay, France.
Biochemistry. 1995 Jan 24;34(3):833-41. doi: 10.1021/bi00003a017.
In order to determine the role of the C-terminal helix in the folding and stability of yeast phosphoglycerate kinase, a mutant deleted of the 12 C-terminal residues (PGK delta 404-415) was constructed. This mutant folds in a conformation very similar to that of the wild-type protein, but exhibits a very low activity (0.1% of that of the wild-type enzyme). The main structural effect of the deletion of the C-terminal helix is an increase in flexibility of the whole protein and a decrease in stability by about 5 kcal/mol. The structural properties of the truncated protein are very similar, at least qualitatively, to those in the isolated domains. The accessibility of the thiol group of Cys 97 is identical to that in the isolated N-domain. The large solvent effect on the tryptophan fluorescence in the native protein at very low concentration of denaturant reveals an increase of flexibility of the C-domain, similar to that observed on the isolated C-domain. NMR measurements show that the pH dependence of His C2H and C4H chemical shifts in the truncated protein perfectly matches those of the isolated domains. The addition of the missing peptide provokes a 40-fold increase in enzyme activity at saturation. A dissociation constant of 80 microM was determined. This peptide, which displays a random structure in solution, folds in a helical structure in the region 405-410 as assessed by TRNOESY. All these results show that the C-terminal part of yeast phosphoglycerate kinase is not necessary for most of the initial folding steps but acts to lock the C-domain on the N-domain, thus ensuring the expression of full enzyme activity. Without this sequence, the protein has the sum of the properties of the two isolated domains.
为了确定C末端螺旋在酵母磷酸甘油酸激酶折叠和稳定性中的作用,构建了一个缺失12个C末端残基的突变体(PGKδ404 - 415)。该突变体以与野生型蛋白非常相似的构象折叠,但活性非常低(仅为野生型酶活性的0.1%)。缺失C末端螺旋的主要结构效应是整个蛋白质的柔韧性增加,稳定性降低约5千卡/摩尔。截短蛋白的结构性质至少在定性上与分离结构域中的性质非常相似。半胱氨酸97的巯基可及性与分离的N结构域中的相同。在极低浓度变性剂下,天然蛋白中色氨酸荧光的大溶剂效应表明C结构域的柔韧性增加,类似于在分离的C结构域中观察到的情况。核磁共振测量表明,截短蛋白中组氨酸C2H和C4H化学位移的pH依赖性与分离结构域的完全匹配。添加缺失的肽会使饱和时的酶活性增加40倍。测定的解离常数为80微摩尔。通过TRNOESY评估,该肽在溶液中呈无规结构,在405 - 410区域折叠成螺旋结构。所有这些结果表明,酵母磷酸甘油酸激酶的C末端部分对于大多数初始折叠步骤不是必需的,但它起到将C结构域锁定在N结构域上的作用,从而确保全酶活性的表达。没有这个序列,该蛋白具有两个分离结构域性质的总和。