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斑马鱼 12-脂氧合酶钙依赖性活性与构象动力学研究。

Investigation of calcium-dependent activity and conformational dynamics of zebra fish 12-lipoxygenase.

机构信息

Department of Medical Biochemistry and Biophysics, Division of Chemistry II, 17177 Stockholm, Sweden.

Department of Biochemistry and Structural Biology, Center for Molecular Protein Science, Lund University, POB 124, 22100 Lund, Sweden; Crystallization Facility, Department of Biology, Lund University, Sölvegatan 35, 22362 Lund, Sweden.

出版信息

Biochim Biophys Acta Gen Subj. 2017 Aug;1861(8):2099-2111. doi: 10.1016/j.bbagen.2017.05.015. Epub 2017 May 19.

Abstract

BACKGROUND

A 12-lipoxygenase in zebra fish (zf12-LOX) was found to be required for normal embryonic development and LOXs are of great interest for targeted drug designing. In this study, we investigate the structural-functional aspects of zf12-LOX in response to calcium.

METHODS

A soluble version of zf12-LOX was created by mutagenesis. Based on multiple sequence alignment, we mutated the putative calcium-responsive amino acids in N-PLAT domain of soluble zf12-LOX. Using a series of biophysical methods, we ascertained the oligomeric state, stability, structural integrity and conformational changes of zf12-LOX in response to calcium. We also compared the biophysical properties of soluble zf12-LOX with the mutant in the absence and presence of calcium.

RESULTS

Here we provide a detailed characterization of soluble zf12-LOX and the mutant. Both proteins exist as compact monomers in solution, however the enzyme activity of soluble zf12-LOX is significantly increased in presence of calcium. We find that the stimulatory effect of calcium on zf12-LOX is related to a change in protein structure as observed by SAXS, adopting an open-state. In contrast, enzyme with a mutated calcium regulatory site has reduced activity-response to calcium and restricted large re-modeling, suggesting that it retains a closed-state in response to calcium. Taken together, our study suggests that Ca-dependent regulation is associated with different domain conformation(s) that might change the accessibility to substrate-binding site in response to calcium.

GENERAL SIGNIFICANCE

The study can be broadly implicated in better understanding the mode(s) of action of LOXs, and the enzymes regulated by calcium in general.

摘要

背景

斑马鱼中的 12-脂氧合酶(zf12-LOX)被发现对于正常胚胎发育是必需的,并且 LOX 是靶向药物设计的重要目标。在这项研究中,我们研究了 zf12-LOX 对钙的结构-功能方面。

方法

通过突变产生了可溶性 zf12-LOX 的版本。基于多重序列比对,我们突变了可溶性 zf12-LOX 的 N-PLAT 结构域中推测的钙反应性氨基酸。使用一系列生物物理方法,我们确定了 zf12-LOX 在响应钙时的寡聚状态、稳定性、结构完整性和构象变化。我们还比较了可溶性 zf12-LOX 及其突变体在有无钙的情况下的生物物理性质。

结果

我们在这里提供了可溶性 zf12-LOX 和突变体的详细特征。两种蛋白质在溶液中均以紧凑的单体形式存在,但在钙存在下,可溶性 zf12-LOX 的酶活性显著增加。我们发现,钙对 zf12-LOX 的刺激作用与通过 SAXS 观察到的蛋白质结构变化有关,采用开放状态。相比之下,具有突变的钙调节位点的酶对钙的活性反应降低,并且限制了大规模重塑,表明其在响应钙时保留了封闭状态。总之,我们的研究表明,Ca 依赖性调节与不同的结构域构象相关,这可能会改变对钙响应的底物结合位点的可及性。

一般意义

这项研究可以广泛涉及更好地理解 LOX 作用方式,以及一般受钙调节的酶。

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