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人鼻病毒2A蛋白酶突变体及其第二位点回复突变体。

Human rhinovirus 2A proteinase mutant and its second-site revertants.

作者信息

Luderer-Gmach M, Liebig H D, Sommergruber W, Voss T, Fessl F, Skern T, Kuechler E

机构信息

Institut für Biochemie der Universitaet Wien, Vienna, Austria.

出版信息

Biochem J. 1996 Aug 15;318 ( Pt 1)(Pt 1):213-8. doi: 10.1042/bj3180213.

Abstract

The 2A proteinases of human rhinoviruses are cysteine proteinases with marked similarities to serine proteinases. In the absence of a three-dimensional structure, we developed a genetical screening system for proteolytic activity and identified Phe-130 as a key residue. The mutation Phe-130-->Tyr almost completely inhibited enzyme activity at 37 degrees C; activity was, however, partially restored by the following exchanges: Ser-27-->Pro, His-135-->Arg or His-137-->Arg. To investigate this phenotypic reversion, 2A proteinases with the mutations Phe-130-->Tyr, Phe-130-->Tyr/His-135-->Arg, Phe-130-->Tyr/His-137-->Arg, His-135-->Arg or His-137-->Arg were expressed in Escherichia coli and purified. None of these mutations affected the affinity of the enzyme for a peptide substrate. However, the temperature-dependence of enzyme activity, as assayed by cleavage of a peptide substrate and by monitoring the toxicity of the proteinases towards the E. coli strain BL21(DE3), and the structural stability, as monitored by 8-anilino-I-naphthalenesulphonic acid fluorescence and CD spectrometry, were affected. The thermal transition temperatures for both the activity and the stability of the Phe-130-->Tyr 2A proteinase were reduced by about 17 degrees C compared with the wild-type enzyme. The presence of the additional mutations His-135-->Arg or His-137-->Arg in the Phe-130-->Tyr mutant increased temperature stability by 3 degrees C and 6 degrees C respectively. Thus essential interactions exist within the C-terminal domain of human rhinoviral 2A proteinases which contribute to the overall stability and integrity of the enzyme.

摘要

人鼻病毒的2A蛋白酶是半胱氨酸蛋白酶,与丝氨酸蛋白酶有显著相似性。在缺乏三维结构的情况下,我们开发了一种用于蛋白水解活性的遗传筛选系统,并确定苯丙氨酸-130是关键残基。苯丙氨酸-130突变为酪氨酸几乎完全抑制了37℃时的酶活性;然而,通过以下交换可部分恢复活性:丝氨酸-27突变为脯氨酸、组氨酸-135突变为精氨酸或组氨酸-137突变为精氨酸。为了研究这种表型逆转,将具有苯丙氨酸-130突变为酪氨酸、苯丙氨酸-130突变为酪氨酸/组氨酸-135突变为精氨酸、苯丙氨酸-130突变为酪氨酸/组氨酸-137突变为精氨酸、组氨酸-135突变为精氨酸或组氨酸-137突变为精氨酸的2A蛋白酶在大肠杆菌中表达并纯化。这些突变均未影响该酶对肽底物的亲和力。然而,通过肽底物的切割以及监测蛋白酶对大肠杆菌菌株BL21(DE3)的毒性来测定的酶活性的温度依赖性,以及通过8-苯胺基-1-萘磺酸荧光和圆二色光谱监测的结构稳定性均受到影响。与野生型酶相比,苯丙氨酸-130突变为酪氨酸的2A蛋白酶的活性和稳定性的热转变温度均降低了约17℃。在苯丙氨酸-130突变为酪氨酸的突变体中额外存在组氨酸-135突变为精氨酸或组氨酸-137突变为精氨酸的突变分别使温度稳定性提高了3℃和6℃。因此,人鼻病毒2A蛋白酶的C末端结构域内存在重要的相互作用,这些相互作用有助于酶的整体稳定性和完整性。

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