Sivendran Sharmila, Segall Mark L, Rancy Pumtiwitt C, Colman Roberta F
Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.
Protein Sci. 2007 Aug;16(8):1700-7. doi: 10.1110/ps.072927207. Epub 2007 Jun 28.
Adenylosuccinate lyase (ASL) of Bacillus subtilis contains three conserved histidines, His(68), His(89), and His(141), identified by affinity labeling and site-directed mutagenesis as critical to the intersubunit catalytic site. The pH-V(max) profile for wild-type ASL is bell-shaped (pK (1) = 6.74 and pK (2) = 8.28). Only the alkaline side changes with temperature, characteristic of histidine pKs. To identify determinants of pK (2) in the enzyme-substrate complex, we replaced residues at two positions close to His(68) (but not to His(89) or His(141)) in the structure. Compared with the specific activity of 1.75 mumol adenylosuccinate reacting/min/mg of wild-type enzyme at pH 7.0, mutant enzymes D69E, D69N, R310Q, and R310K exhibit specific activities of 0.40, 0.04, 0.00083, and 0.10, respectively. While D69E has a K (m) for adenylosuccinate similar to that of wild-type ASL, D69N and R310K exhibit modest increases in K (m), and R310Q has an 11-fold increase in K (m). The mutant enzymes show no significant change in molecular weight or secondary structure. The major change is in the pH-V(max) profile: pK (2) is 8.48 for the D69E mutant and is decreased to 7.83 in D69N, suggesting a proximal negative charge is needed to maintain the high pK of 8.28 observed for wild-type enzyme and attributed to His(68). Similarly, R310Q exhibits a decrease in its pK (2) (7.33), whereas R310K shows little change in pK (2) (8.24). These results suggest that Asp(69) interacts with His(68), that Arg(310) interacts with and orients the beta-carboxylate of Asp(69), and that His(68) must be protonated for ASL to be active.
枯草芽孢杆菌的腺苷酸琥珀酸裂解酶(ASL)含有三个保守的组氨酸,即His(68)、His(89)和His(141),通过亲和标记和定点诱变确定它们对亚基间催化位点至关重要。野生型ASL的pH-V(max)曲线呈钟形(pK(1)=6.74,pK(2)=8.28)。只有碱性一侧随温度变化,这是组氨酸pK值的特征。为了确定酶-底物复合物中pK(2)的决定因素,我们在结构中替换了靠近His(68)(但不靠近His(89)或His(141))的两个位置的残基。与野生型酶在pH 7.0时1.75 μmol腺苷酸琥珀酸反应/分钟/毫克的比活性相比,突变酶D69E、D69N、R310Q和R310K的比活性分别为0.40、0.04、0.00083和0.10。虽然D69E对腺苷酸琥珀酸的K(m)与野生型ASL相似,但D69N和R310K的K(m)有适度增加,而R310Q的K(m)增加了11倍。突变酶的分子量或二级结构没有明显变化。主要变化在于pH-V(max)曲线:D69E突变体的pK(2)为8.48,D69N中降至7.83,这表明需要一个近端负电荷来维持野生型酶观察到的8.28的高pK值,该值归因于His(68)。同样,R310Q的pK(2)降低(7.33),而R310K的pK(2)几乎没有变化(8.24)。这些结果表明,Asp(69)与His(68)相互作用,Arg(310)与Asp(69)的β-羧酸盐相互作用并使其定向,并且His(68)必须质子化ASL才能具有活性。