Theodorou Leonidas G, Perisynakis Angelos, Valasaki Krystalenia, Drainas Constantin, Papamichael Emmanuel M
University of Ioannina, Department of Chemistry, Ioannina 45110, Greece.
J Biochem. 2007 Aug;142(2):293-300. doi: 10.1093/jb/mvm132. Epub 2007 Jul 23.
A novel protease designated protease-A-17N-1, was purified from the halo-alkalophilic Bacillus sp. 17N-1, and found active in media containing dithiothreitol and EDTAK(2). This enzyme maintained significant activity from pH 6.00 to 9.00, showed optimum k(cat)/K(m) value at pH 7.50 and 33 degrees C. It was observed that only specific inhibitors of cysteine proteinases inhibited its activity. The pH-(k(cat)/K(m)) profile of protease-A-17N-1 was described by three pK(a)s in the acid limb, and one in the alkaline limb. Both are more likely due t3o the protonic dissociation of an acidic residue, and the development and subsequent deprotonation of an ion-pair, respectively, in its catalytic site, characteristic for cysteine proteinases. Moreover, both the obtained estimates of rate constant k(1) and the ratio k(2)/k(-1) at 25 degrees C, from the temperature-(k(cat)/K(m)) profile of protease-A-17N-1, were found similar to those estimated from the proton inventories of the same parameter, verifying the reliability of the latter methodology. Besides, the bowed-downward proton inventories of k(cat)/K(m), as well as the large inverse SIE observed for this parameter, in combination with its dependence versus temperature, were showed unambiguously that k(cat)/K(m) = k(1). Such results suggest that the novel enzyme is more likely to be a cysteine proteinase functioning via a general acid-base mechanism.
从嗜盐碱芽孢杆菌17N-1中纯化出一种名为蛋白酶-A-17N-1的新型蛋白酶,发现其在含有二硫苏糖醇和EDTAK(2)的培养基中具有活性。该酶在pH 6.00至9.00范围内保持显著活性,在pH 7.50和33℃时显示出最佳的k(cat)/K(m)值。观察到只有半胱氨酸蛋白酶的特异性抑制剂能抑制其活性。蛋白酶-A-17N-1的pH-(k(cat)/K(m))曲线在酸性部分由三个pK(a)描述,在碱性部分由一个pK(a)描述。两者更可能分别是由于其催化位点中酸性残基的质子解离,以及离子对的形成和随后的去质子化,这是半胱氨酸蛋白酶的特征。此外,从蛋白酶-A-17N-1的温度-(k(cat)/K(m))曲线获得的25℃下速率常数k(1)的估计值以及k(2)/k(-1)的比率,与从同一参数的质子存量估计值相似,验证了后一种方法的可靠性。此外,k(cat)/K(m)向下弯曲的质子存量,以及该参数观察到的大的反向溶剂同位素效应,结合其对温度的依赖性,明确表明k(cat)/K(m)=k(1)。这些结果表明,这种新型酶更可能是一种通过一般酸碱机制发挥作用的半胱氨酸蛋白酶。