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蜡样芽孢杆菌磷脂酰肌醇特异性磷脂酶C抑制剂的合成、构效关系及聚乙二醇的影响

Synthesis, structure-activity relationships, and the effect of polyethylene glycol on inhibitors of phosphatidylinositol-specific phospholipase C from Bacillus cereus.

作者信息

Ryan M, Smith M P, Vinod T K, Lau W L, Keana J F, Griffith O H

机构信息

Department of Chemistry, University of Oregon, Eugene 97403-1229, USA.

出版信息

J Med Chem. 1996 Oct 25;39(22):4366-76. doi: 10.1021/jm960434y.

Abstract

Substrate analog inhibitors of Bacillus cereus phosphatidylinositol-specific phospholipase C (PI-PLC) were synthesized and screened for their suitability to map the active site region of the enzyme by protein crystallography. Analogs of the natural substrate phosphatidylinositol (PI) were designed to examine the importance of the lipid portion and the inositol phosphate head group for binding to the enzyme. The synthetic compounds contained pentyl, hexyl, or hexanoyl and octyl lipid chains at the sn-1 and sn-2 positions of the glycerol backbone and phosphonoinositol, phosphonic acid, methyl phosphonate, phosphatidic acid, or methyl phosphate at the sn-3 position. The most hydrophobic compound, dioctyl methyl phosphate 14, was also the best inhibitor with an IC50 of 12 microM. In a series of dihexyl lipids, compounds with phosphonoinositol head groups inhibited more strongly than those that do not contain inositol but are otherwise identical. Compound 29, a short-chain lipid with a phosphonoinositol head group, was found to be a competitive inhibitor and the most potent in this series with an IC50 of 18 microM (Ki = 14 microM). Analogs with dihexyl chains were better inhibitors than those with dihexanoyl chains, presumably because the ether-linked lipids are more hydrophobic than the ester-linked lipids. No appreciable difference in inhibition was found between a phosphonoinositol lipid and the corresponding difluorophosphonoinositol lipid. Inositols and inositol derivatives that do not contain lipid moieties show IC50s about 3 orders of magnitude above those of the short-chain lipids. In this group, glucosaminyl(alpha 1-->6)-D-myo-inositol inhibited more strongly than myo-inositol, which in turn is a better inhibitor than inositol phosphate. The addition of polyethylene glycol (PEG-600) resulted in a marked decrease in inhibition by the short-chain lipids, but had little effect on the water-soluble head group analogs. This is accounted for in terms of solubilization of the amphipathic inhibitors by PEG. Since PEG is required in the crystallization, these data indicate that the best strategy for obtaining enzyme inhibitor complexes is to start by cocrystallizing PI-PLC with the head group analogs. The next step is to synthetically add the shortest possible hydrophobic moieties to the analogs and cocrystallize these with the enzyme. This strategy may be applicable to other lipolytic enzymes.

摘要

合成了蜡样芽孢杆菌磷脂酰肌醇特异性磷脂酶C(PI-PLC)的底物类似物抑制剂,并通过蛋白质晶体学筛选其用于绘制该酶活性位点区域的适用性。设计了天然底物磷脂酰肌醇(PI)的类似物,以研究脂质部分和肌醇磷酸头部基团与酶结合的重要性。合成化合物在甘油主链的sn-1和sn-2位置含有戊基、己基或己酰基和辛基脂质链,在sn-3位置含有膦酰基肌醇、膦酸、甲基膦酸酯、磷脂酸或甲基磷酸酯。最疏水的化合物二辛基甲基磷酸酯14也是最佳抑制剂,IC50为12μM。在一系列二己基脂质中,含有膦酰基肌醇头部基团的化合物比那些不含肌醇但其他方面相同的化合物抑制作用更强。化合物29是一种带有膦酰基肌醇头部基团的短链脂质,被发现是一种竞争性抑制剂,在该系列中最有效,IC50为18μM(Ki = 14μM)。具有二己基链的类似物比具有二己酰基链的类似物是更好的抑制剂,推测是因为醚连接的脂质比酯连接的脂质更疏水。在膦酰基肌醇脂质和相应的二氟膦酰基肌醇脂质之间未发现明显的抑制差异。不含脂质部分的肌醇和肌醇衍生物的IC50比短链脂质高约3个数量级。在该组中,氨基葡萄糖基(α1→6)-D-肌醇比肌醇抑制作用更强,而肌醇又比肌醇磷酸是更好的抑制剂。添加聚乙二醇(PEG-600)导致短链脂质的抑制作用显著降低,但对水溶性头部基团类似物影响很小。这可以用PEG对两亲性抑制剂的增溶作用来解释。由于结晶过程中需要PEG,这些数据表明获得酶抑制剂复合物的最佳策略是首先将PI-PLC与头部基团类似物共结晶。下一步是合成地向类似物中添加尽可能短的疏水部分,并将这些与酶共结晶。该策略可能适用于其他脂解酶。

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