首页> 外文OA文献 >Proteolytic inactivation of luciferases from three species of luminous marine bacteria, Beneckea harveyi, Photobacterium fischeri, and Photobacterium phosphoreum: evidence of a conserved structural feature.
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Proteolytic inactivation of luciferases from three species of luminous marine bacteria, Beneckea harveyi, Photobacterium fischeri, and Photobacterium phosphoreum: evidence of a conserved structural feature.

机译:三种发光的海洋细菌(贝内克哈维氏菌,费氏细菌和磷细菌)的萤光素酶蛋白水解失活:保守结构特征的证据。

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摘要

Upon limited proteolysis of luciferases from the luminous marine bacteria Photobacterium fischeri, Photobacterium phosphoreum, and Beneckea harveyi, the rate of loss of luciferase activity is the same as the rate of loss of the heavier subunit of all three enzymes. It thus appears that the larger subunit of the luciferase from P. phosphoreum should be designated alpha based on its apparent homology with the alpha subunits of the luciferases from B. harveyi and P. fischeri. The luciferase from B. harveyi is more sensitive to chymotrypsin than to trypsin; the luciferases of the Photobacterium species are more sensitive to trypsin than to chymotrypsin. Proteolytic inactivation of all three luciferases results from hydrolysis of a few peptide bonds in the alpha subunit; the proteolytic fragments from the three luciferases in 0.50 M phosphate are approximately the same size, indicating that the three enzymes have a protease-labile region at about the same position in the primary structure of their alpha subunits. Phosphate stabilizes all three luciferases against inactivation by proteases. Formation and degradation of intermediate species derived from the alpha subunits are readily observable in all three luciferases. Phosphate alters both the rate of product formation and the sites of peptide bond scission. The beta subunits of the luciferases from the two Photobacterium species, unlike the enzyme of B. harveyi, appear to be degraded in buffers containing low concentrations of phosphate; in high-phosphate buffers, the beta subunits of all three luciferases appear to resist proteases. Analysis of native and chymotrypsin-inactivated P. fischeri and P. phosphoreum luciferases in the analytical ultracentrifuge indicates that, as with B. harveyi luciferase, the products of limited proteolysis do not dissociate under nondenaturing conditions. The fact that the luciferases from evolutionarily diverse species of luminous bacteria have protease-sensitive bonds in the same region of the alpha subunit that are stabilized by anions strongly suggests that the protease-labile region of the alpha subunit is either an integral component of or in close proximity to the active center.
机译:在来自发光海洋细菌费氏细菌,费氏细菌和哈氏贝氏杆菌的荧光素酶有限的蛋白水解作用下,荧光素酶活性的丧失速率与所有三种酶中较重的亚基的丧失速率相同。因此,似乎来自磷假单胞菌的萤光素酶的较大的亚基应基于其与来自哈维螺旋体和费氏假单胞菌的萤光素酶的α亚基的表观同源性而被命名为α。哈维氏芽孢杆菌的萤光素酶对胰凝乳蛋白酶比对胰蛋白酶更敏感。细菌属的萤光素酶对胰蛋白酶比对胰凝乳蛋白酶更敏感。所有三种萤光素酶的蛋白水解失活是由于α亚基中一些肽键的水解所致。三种萤光素酶在0.50 M磷酸盐中的蛋白水解片段大小大致相同,表明这三种酶在其α亚基的一级结构中大约在同一位置具有蛋白酶不稳定区域。磷酸盐可稳定所有三种萤光素酶,以抵抗蛋白酶的灭活作用。在所有三种萤光素酶中都很容易观察到衍生自α亚基的中间物种的形成和降解。磷酸盐改变产物形成的速率和肽键断裂的位点。与哈氏双歧杆菌的酶不同,来自两个发光细菌物种的萤光素酶的β亚基似乎在含有低浓度磷酸盐的缓冲液中被降解。在高磷酸盐缓冲液中,所有三种萤光素酶的β亚基似乎都能抵抗蛋白酶。在分析型超速离心机中对天然和胰凝乳蛋白酶灭活的费氏毕赤酵母和磷毕赤酵母荧光素酶的分析表明,与哈维氏芽孢杆菌一样,有限蛋白水解的产物在非变性条件下不会解离。来自发光细菌的进化多样性物种的荧光素酶在被阴离子稳定的α亚基的同一区域中具有蛋白酶敏感的键的事实强烈表明,α亚基的蛋白酶不稳定区域是其不可或缺的组成部分或在其中靠近活动中心。

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  • 作者

    Holzman, T F; Baldwin, T O;

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  • 年度 1980
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