Sakaguchi Masayoshi, Matsuzaki Mika, Niimiya Keisuke, Seino Junichi, Sugahara Yasusato, Kawakita Masao
Department of Applied Chemistry, Kogakuin University, 1-24-2 Nishishinjuku, Shinjuku-ku, Tokyo 163-8677, Japan.
J Biochem. 2007 Feb;141(2):213-20. doi: 10.1093/jb/mvm025. Epub 2006 Dec 14.
To understand the molecular basis of the thermostability of a thermophilic serine protease aqualysin I from Thermus aquaticus YT-1, we introduced mutations at Pro5, Pro7, Pro240 and Pro268, which are located on the surface loops of aqualysin I, by changing these amino acid residues into those found at the corresponding locations in VPR, a psychrophilic serine protease from Vibrio sp. PA-44. All mutants were expressed stably and exhibited essentially the same specific activity as wild-type aqualysin I at 40 degrees C. The P240N mutant protein had similar thermostability to wild-type aqualysin I, but P5N and P268T showed lower thermostability, with a half-life at 90 degrees C of 15 and 30 min, respectively, as compared to 45 min for the wild-type enzyme. The thermostability of P7I was decreased even more markedly, and the mutant protein was rapidly inactivated at 80 degrees C and even at 70 degrees C, with half-lives of 10 and 60 min, respectively. Differential scanning calorimetry analysis showed that the transition temperatures of wild-type enzyme, P5N, P7I, P240N and P268T were 93.99 degrees C, 83.45 degrees C, 75.66 degrees C, 91.78 degrees C and 86.49 degrees C, respectively. These results underscore the importance of the proline residues in the N- and C-terminal regions of aqualysin I in maintaining the integrity of the overall protein structure at elevated temperatures.
为了了解嗜热栖热菌YT-1来源的嗜热丝氨酸蛋白酶水栖素I热稳定性的分子基础,我们通过将水栖素I表面环上的脯氨酸5、脯氨酸7、脯氨酸240和脯氨酸268处的氨基酸残基替换为来自弧菌属PA-44的嗜冷丝氨酸蛋白酶VPR相应位置的氨基酸残基,引入了突变。所有突变体均稳定表达,并且在40℃时表现出与野生型水栖素I基本相同的比活性。P240N突变蛋白具有与野生型水栖素I相似的热稳定性,但P5N和P268T的热稳定性较低,在90℃下的半衰期分别为15分钟和30分钟,而野生型酶为45分钟。P7I的热稳定性下降更为明显,该突变蛋白在80℃甚至70℃时迅速失活,半衰期分别为10分钟和60分钟。差示扫描量热法分析表明,野生型酶、P5N、P7I、P240N和P268T的转变温度分别为93.99℃、83.45℃、75.66℃、91.78℃和86.49℃。这些结果强调了水栖素I N端和C端区域中脯氨酸残基在高温下维持整体蛋白质结构完整性方面的重要性。