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洋葱假单胞菌脂肪酶手性选择性的结构基础

Structural basis of the chiral selectivity of Pseudomonas cepacia lipase.

作者信息

Lang D A, Mannesse M L, de Haas G H, Verheij H M, Dijkstra B W

机构信息

BIOSON Research Institute and Laboratory of Biophysical Chemistry, University of Groningen, The Netherlands.

出版信息

Eur J Biochem. 1998 Jun 1;254(2):333-40. doi: 10.1046/j.1432-1327.1998.2540333.x.

Abstract

To investigate the enantioselectivity of Pseudomonas cepacia lipase, inhibition studies were performed with Sc- and Rc-(Rp,Sp)-1,2-dialkylcarbamoylglycero-3-O-p-nitrophenyl alkylphosphonates of different alkyl chain lengths. P. cepacia lipase was most rapidly inactivated by Rc-(Rp,Sp)-1,2-dioctylcarbamoylglycero-3-O-p-nitrophenyl octylphosphonate (Rc-trioctyl) with an inactivation half-time of 75 min, while that for the Sc-(Rp,Sp)-1,2-dioctylcarbamoylglycero-3-O-p-nitrophenyl octyl-phosphonate (Sc-trioctyl) compound was 530 min. X-ray structures were obtained of P. cepacia lipase after reaction with Rc-trioctyl to 0.29-nm resolution at pH 4 and covalently modified with Rc-(Rp,Sp)-1,2-dibutylcarbamoylglycero-3-O-p-nitrophenyl butyl-phosphonate (Rc-tributyl) to 0.175-nm resolution at pH 8.5. The three-dimensional structures reveal that both triacylglycerol analogues had reacted with the active-site Ser87, forming a covalent complex. The bound phosphorus atom shows the same chirality (Sp) in both complexes despite the use of a racemic (Rp,Sp) mixture at the phosphorus atom of the triacylglycerol analogues. In the structure of Rc-tributyl-complexed P. cepacia lipase, the diacylglycerol moiety has been lost due to an aging reaction, and only the butyl phosphonate remains visible in the electron density. In the Rc-trioctyl complex the complete inhibitor is clearly defined; it adopts a bent tuning fork conformation. Unambiguously, four binding pockets for the triacylglycerol could be detected: an oxyanion hole and three pockets which accommodate the sn-1, sn-2, and sn-3 fatty acid chains. Van der Waals' interactions are the main forces that keep the radyl groups of the triacylglycerol analogue in position and, in addition, a hydrogen bond to the carbonyl oxygen of the sn-2 chain contributes to fixing the position of the inhibitor.

摘要

为研究洋葱假单胞菌脂肪酶的对映选择性,我们使用了不同烷基链长度的Sc-和Rc-(Rp,Sp)-1,2-二烷基氨基甲酰甘油-3-O-对硝基苯基烷基膦酸酯进行抑制研究。洋葱假单胞菌脂肪酶被Rc-(Rp,Sp)-1,2-二辛基氨基甲酰甘油-3-O-对硝基苯基辛基膦酸酯(Rc-三辛基)灭活速度最快,灭活半衰期为75分钟,而Sc-(Rp,Sp)-1,2-二辛基氨基甲酰甘油-3-O-对硝基苯基辛基膦酸酯(Sc-三辛基)化合物的灭活半衰期为530分钟。在pH 4条件下,与Rc-三辛基反应至0.29纳米分辨率,并在pH 8.5条件下用Rc-(Rp,Sp)-1,2-二丁基氨基甲酰甘油-3-O-对硝基苯基丁基膦酸酯(Rc-三丁基)进行共价修饰至0.175纳米分辨率后,获得了洋葱假单胞菌脂肪酶的X射线结构。三维结构表明,两种三酰甘油类似物均与活性位点Ser87发生反应,形成了共价复合物。尽管在三酰甘油类似物的磷原子处使用了外消旋(Rp,Sp)混合物,但在两种复合物中结合的磷原子显示出相同的手性(Sp)。在Rc-三丁基复合的洋葱假单胞菌脂肪酶结构中,由于老化反应,二酰甘油部分已丢失,在电子密度图中仅可见丁基膦酸酯。在Rc-三辛基复合物中,完整的抑制剂清晰可辨;它呈现出弯曲的音叉构象。明确地,可以检测到三酰甘油的四个结合口袋:一个氧阴离子洞和三个容纳sn-1、sn-2和sn-3脂肪酸链的口袋。范德华相互作用是使三酰甘油类似物的烷基基团保持在原位的主要力量,此外,与sn-2链羰基氧的氢键有助于固定抑制剂位置。

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