Horrevoets A J, Hackeng T M, Verheij H M, Dijkman R, de Haas G H
Department of Biochemistry, State University of Utrecht, The Netherlands.
Biochemistry. 1989 Feb 7;28(3):1139-47. doi: 10.1021/bi00429a031.
The substrate specificity of Escherichia coli outer membrane phospholipase A was analyzed in mixed micelles of lipid with deoxycholate or Triton X-100. Diglycerides, monoglycerides, and Tweens 40 and 85 in Triton X-100 are hydrolyzed at rates comparable to those of phospholipids and lysophospholipids. p-Nitrophenyl esters of fatty acids with different chain lengths and triglycerides are not hydrolyzed. The minimal substrate characteristics consist of a long acyl chain esterified to a more or less hydrophilic headgroup as is the case for the substrate monopalmitoylglycol. Binding occurs via the hydrocarbon chain of the substrate; diacyl compounds are bound three to five times better than monoacyl compounds. When acting on lecithins, phospholipase A1 activity is six times higher than phospholipase A2 activity or 1-acyl lysophospholipase activity. Activity on the 2-acyl lyso compound is about two times less than that on the 1-acyl lysophospholipid. The enzyme therefore has a clear preference for the primary ester bond of phospholipids. In contrast to phospholipase A1 activity, phospholipase A2 activity is stereospecific. Only the L isomer of a lecithin analogue in which the primary acyl chain was replaced by an alkyl ether group is hydrolyzed. The D isomer of this analogue is a competitive inhibitor, bound with the same affinity as the L isomer. On these ether analogues the enzyme shows the same preference for the primary acyl chain as with the natural diester phospholipids. Despite its broad specificity, the enzyme will initially act as a phospholipase A1 in the E. coli envelope where it is embedded in phospholipids.
在脂质与脱氧胆酸盐或 Triton X - 100 的混合胶束中分析了大肠杆菌外膜磷脂酶 A 的底物特异性。Triton X - 100 中的甘油二酯、甘油单酯以及吐温 40 和 85 的水解速率与磷脂和溶血磷脂相当。不同链长脂肪酸的对硝基苯酯和甘油三酯不被水解。底物的最小特征是一个长酰基链酯化到或多或少亲水的头基上,如底物单棕榈酰甘油的情况。结合通过底物的烃链发生;二酰基化合物的结合能力比单酰基化合物强三到五倍。作用于卵磷脂时,磷脂酶 A1 的活性比磷脂酶 A2 活性或 1 - 酰基溶血磷脂酶活性高六倍。对 2 - 酰基溶血化合物的活性比对 1 - 酰基溶血磷脂的活性低约两倍。因此,该酶明显偏好磷脂的伯酯键。与磷脂酶 A1 活性不同,磷脂酶 A2 活性具有立体特异性。只有一种卵磷脂类似物的 L 异构体被水解,其中伯酰基链被烷基醚基团取代。该类似物的 D 异构体是一种竞争性抑制剂,与 L 异构体以相同的亲和力结合。在这些醚类似物上,该酶对伯酰基链的偏好与天然二酯磷脂相同。尽管其具有广泛的特异性,但在嵌入磷脂的大肠杆菌包膜中,该酶最初将作为磷脂酶 A1 起作用。