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在脂肪酶/酰基转移酶中对大疏水性亲核口袋的特性描述和重塑。

Characterization and Reshaping of a Large and Hydrophobic Nucleophile Pocket in Lipases/Acyltransferases.

机构信息

UMR IATE, Montpellier SupAgro, 2 place Pierre Viala, Bâtiment 32, 34060, Montpellier Cedex 2, France.

出版信息

Chembiochem. 2018 Sep 4;19(17):1839-1844. doi: 10.1002/cbic.201800279. Epub 2018 Aug 8.

Abstract

Lipases/acyltransferases, such as CpLIP2 from Candida parapsilosis and CduLAc from Candida dubliniensis, catalyze acyl transfer preferentially over hydrolysis if a suitable nucleophile is present, even in a medium with a high thermodynamic activity of water (a ). These enzymes are related to CAL-A from Moesziomyces antarcticus, which, in comparison, displays a lower acyl transfer ability. The 3D structures of wild types and mutants of CAL-A, CpLIP2, and CduLAc revealed differences in size and hydrophobicity of a large pocket located under the catalytic triad. The kinetic behavior of site-directed mutants confirmed the role of this pocket in competition between methanol and water as the nucleophile acceptor for the deacylation step. The mutations provided a better understanding of key structural determinants for variable levels of acyltransferase ability observed and supported the existence of a complex network of nucleophile interactions within the enzymes. The shape and size of the possible nucleophile pocket identified also suggested that multiple binding sites could exist, which supported the hypothesis of non-overlapping leaving and accepting nucleophile binding sites.

摘要

脂肪酶/酰基转移酶,如假丝酵母脂肪酶 2(CpLIP2)和杜氏假丝酵母脂肪酶(CduLAc),在存在合适亲核试剂的情况下,如果水的热力学活度高(a),则优先催化酰基转移而不是水解。这些酶与南极假丝酵母脂肪酶 A(CAL-A)有关,与 CAL-A 相比,CpLIP2 和 CduLAc 的酰基转移能力较低。CAL-A、CpLIP2 和 CduLAc 的野生型和突变体的 3D 结构揭示了位于催化三联体下方的大口袋的大小和疏水性存在差异。定点突变体的动力学行为证实了该口袋在甲醇和水作为脱酰基步骤亲核试剂接受体之间竞争中的作用。这些突变提供了对观察到的不同酰基转移能力的关键结构决定因素的更好理解,并支持酶内亲核试剂相互作用的复杂网络的存在。确定的可能亲核试剂口袋的形状和大小还表明,可能存在多个结合位点,这支持了非重叠的离去和接受亲核试剂结合位点的假设。

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