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嗜热嗜酸古菌 Sulfolobus tokodaii 中耐热羧酸酯酶的结构与稳定性。

Structure and stability of a thermostable carboxylesterase from the thermoacidophilic archaeon Sulfolobus tokodaii.

机构信息

Department of Material and Life Science, Graduate School of Engineering, Osaka University, Japan.

出版信息

FEBS J. 2012 Sep;279(17):3071-84. doi: 10.1111/j.1742-4658.2012.08687.x. Epub 2012 Jul 23.

Abstract

The hormone-sensitive lipase (HSL) family is comprised of carboxylesterases and lipases with similarity to mammalian HSL. Thermophilic enzymes of this family have a high potential for use in biocatalysis. We prepared and crystallized a carboxylesterase of the HSL family from Sulfolobus tokodaii (Sto-Est), and determined its structures in the presence and absence of an inhibitor. Sto-Est forms a dimer in solution and the crystal structure suggests the presence of a stable biological dimer. We identified a residue close to the dimer interface, R267, which is conserved in archaeal enzymes of HSL family and is in close proximity to the same residue from the other monomer. Mutations of R267 to Glu, Gly and Lys were conducted and the resultant R267 mutants were characterized and crystallized. The structures of R267E, R267G and R267K are highly similar to that of Sto-Est with only slight differences in atomic coordinates. The dimerized states of R267E and R267G are unstable under denaturing conditions or at high temperature, as shown by a urea-induced dimer dissociation experiment and molecular dynamics simulation. R267E is the most unstable mutant protein, followed by R267G and R267K, as shown by the thermal denaturation curve and optimum temperature for activity. From the data, we discuss the importance of R267 in maintaining the dimer integrity of Sto-Est.

摘要

激素敏感性脂肪酶(HSL)家族由羧酸酯酶和脂肪酶组成,与哺乳动物的 HSL 具有相似性。该家族的嗜热酶在生物催化中有很高的应用潜力。我们从 Sulfolobus tokodaii(Sto-Est)中制备并结晶了一种 HSL 家族的羧酸酯酶,并在存在和不存在抑制剂的情况下测定了其结构。Sto-Est 在溶液中形成二聚体,晶体结构表明存在稳定的生物学二聚体。我们鉴定了靠近二聚体界面的一个残基 R267,它在 HSL 家族的古菌酶中保守,并且与另一个单体的相同残基接近。对 R267 进行了突变为 Glu、Gly 和 Lys 的突变,并对所得的 R267 突变体进行了表征和结晶。R267E、R267G 和 R267K 的结构与 Sto-Est 的结构非常相似,仅在原子坐标上略有差异。如尿素诱导的二聚体解离实验和分子动力学模拟所示,R267E 和 R267G 的二聚化状态在变性条件或高温下不稳定。R267E 是最不稳定的突变体蛋白,其次是 R267G 和 R267K,如热变性曲线和最适活性温度所示。根据这些数据,我们讨论了 R267 在维持 Sto-Est 二聚体完整性方面的重要性。

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