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Direct evidence of a low barrier hydrogen bond in the catalytic triad of a Serine protease

机译:丝氨酸蛋白酶催化三联体中低势垒氢键的直接证据

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摘要

Serine proteases are one of the largest groups of enzymes, found in both eukaryotes and prokaryotes, and are responsible for many different functions. The detailed information about the hydrogen-bonds in the catalytic triad (Asp…His…Ser) of these enzymes is of importance in order to fully understand the mechanism of action. The aspartate of the triad is hydrogen bonded to the histidine but the exact nature of this bond has been under discussion for some time. It is either a common short ionic hydrogen bond (SIHB) or a delocalized low barrier hydrogen bond (LBHB) were the hydrogen bond is shorter. So far, the evidence for LBHB in proteins have not been conclusive. Here we show clear NMR evidence that LBHB does exist in NS3, a serine protease from Dengue. The one bond coupling constant between the hydrogen and nitrogen was shown to be only 52 Hz instead of the usual 90 Hz. This together with a 1H chemical shift of 19.93 ppm is evidence that the hydrogen bond distance between His and Asp is shorter than for SIHB. Our result clearly shows the existence of LBHB and will help in understanding the mechanism of the catalytic triad in the important group of serine proteases.
机译:丝氨酸蛋白酶是在真核生物和原核生物中都发现的最大的一组酶,并且负责许多不同的功能。为了充分了解其作用机理,有关这些酶催化三联体(Asp…His…Ser)中氢键的详细信息很重要。三联体的天冬氨酸是氢键合到组氨酸上的,但是这种键的确切性质已经讨论了一段时间。氢键较短时,它可以是常见的短离子氢键(SIHB)或离域低势垒氢键(LBHB)。到目前为止,蛋白质中LBHB的证据尚无定论。在这里,我们显示了清晰的NMR证据,表明LBHB确实存在于NS3(登革热的丝氨酸蛋白酶)中。氢和氮之间的单键耦合常数显示仅为52 Hz,而不是通常的90 Hz。加上19.93 ppm的 1 H化学位移,证明His和Asp之间的氢键距离比SIHB短。我们的结果清楚地表明了LBHB的存在,并将有助于了解重要的丝氨酸蛋白酶中催化三联体的机制。

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