首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Crystal structures of the psychrophilic alpha-amylase from Alteromonas haloplanctis in its native form and complexed with an inhibitor.
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Crystal structures of the psychrophilic alpha-amylase from Alteromonas haloplanctis in its native form and complexed with an inhibitor.

机译:嗜盐链霉菌嗜冷α-淀粉酶的晶体结构为天然形式并与抑制剂复合。

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摘要

Alteromonas haloplanctis is a bacterium that flourishes in Antarctic sea-water and it is considered as an extreme psychrophile. We have determined the crystal structures of the alpha-amylase (AHA) secreted by this bacterium, in its native state to 2.0 angstroms resolution as well as in complex with Tris to 1.85 angstroms resolution. The structure of AHA, which is the first experimentally determined three-dimensional structure of a psychrophilic enzyme, resembles those of other known alpha-amylases of various origins with a surprisingly greatest similarity to mammalian alpha-amylases. AHA contains a chloride ion which activates the hydrolytic cleavage of substrate alpha-1,4-glycosidic bonds. The chloride binding site is situated approximately 5 angstroms from the active site which is characterized by a triad of acid residues (Asp 174, Glu 200, Asp 264). These are all involved in firm binding of the Tris moiety. A reaction mechanism for substrate hydrolysis is proposed on the basis of the Tris inhibitor binding and the chloride activation. A trio of residues (Ser 303, His 337, Glu 19) having a striking spatial resemblance with serine-protease like catalytic triads was found approximately 22 angstroms from the active site. We found that this triad is equally present in other chloride dependent alpha-amylases, and suggest that it could be responsible for autoproteolytic events observed in solution for this cold adapted alpha-amylase.
机译:嗜盐链霉菌是在南极海水中繁盛的细菌,被认为是极端嗜冷菌。我们已经确定了由该细菌分泌的α-淀粉酶(AHA)的晶体结构,其原始状态为2.0埃的分辨率,以及与Tris的复合物为1.85埃的分辨率。 AHA的结构是第一个实验确定的嗜冷性酶的三维结构,类似于各种来源的其他已知α-淀粉酶的结构,与哺乳动物的α-淀粉酶具有惊人的相似性。 AHA包含一个氯离子,该离子激活底物α-1,4-糖苷键的水解裂解。氯化物结合位点位于距活性位点约5埃的位置,其特征在于三元组的酸残基(Asp 174,Glu 200,Asp 264)。这些都与Tris部分的牢固结合有关。基于Tris抑制剂结合和氯化物活化,提出了底物水解的反应机理。发现三个残基(Ser 303,His 337,Glu 19)与丝氨酸蛋白酶(如催化三联体)具有惊人的空间相似性,距离活性位点约22埃。我们发现该三联体同样存在于其他氯化物依赖性α-淀粉酶中,并暗示它可能是这种冷适应的α-淀粉酶在溶液中观察到的自蛋白水解事件的原因。

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