Molecular Genetics Unit, Institut Pasteur, and CNRS URA 2172, 25 rue du docteur Roux, 75724 Paris cedex 15, France.
Biochemistry. 2010 Jan 19;49(2):341-6. doi: 10.1021/bi9020346.
Escherichia coli apolipoprotein N-acyltransferase (Lnt) transfers an acyl group from sn-1-glycerophospholipid to the free alpha-amino group of the N-terminal cysteine of apolipoproteins, resulting in mature triacylated lipoprotein. Here we report that the Lnt reaction proceeds through an acyl-enzyme intermediate in which a palmitoyl group forms a thioester bond with the thiol of the active site residue C387 that was cleaved by neutral hydroxylamine. Lnt(C387S) also formed a fatty acyl intermediate that was resistant to neutral hydroxylamine treatment, consistent with formation of an oxygen-ester linkage. Lnt(C387A) did not form an acyl-enzyme intermediate and, like Lnt(C387S), did not have any detectable Lnt activity, indicating that acylation cannot occur at other positions in the catalytic domain. The existence of this thioacyl-enzyme intermediate allowed us to determine whether essential residues in the catalytic domain of Lnt affect the first step of the reaction, the formation of the acyl-enzyme intermediate, or the second step in which the acyl chain is transferred to the apolipoprotein substrate. In the catalytic triad, E267 is required for the formation of the acyl-enzyme intermediate, indicating its role in enhancing the nucleophilicity of C387. E343 is also involved in the first step but is not in close proximity to the active site. W237, Y388, and E389 play a role in the second step of the reaction since acyl-Lnt is formed but N-acylation does not occur. The data presented allow discrimination between the functions of essential Lnt residues in catalytic activity and substrate recognition.
大肠杆菌载脂蛋白 N-酰基转移酶(Lnt)将酰基从 sn-1-甘油磷脂转移到载脂蛋白的 N 端半胱氨酸的游离α-氨基上,形成成熟的三酰基脂蛋白。在这里,我们报告 Lnt 反应通过酰基-酶中间物进行,其中棕榈酰基与活性位点残基 C387 的巯基形成硫酯键,该巯基被中性羟胺裂解。Lnt(C387S)也形成了脂肪酰基中间物,对中性羟胺处理具有抗性,与形成氧酯键一致。Lnt(C387A)未形成酰基-酶中间物,并且与 Lnt(C387S)一样,没有任何可检测到的 Lnt 活性,表明酰化不能在催化结构域的其他位置发生。该硫代酰基-酶中间物的存在使我们能够确定 Lnt 催化结构域中的必需残基是否影响反应的第一步,即酰基-酶中间物的形成,或者影响酰基链转移到载脂蛋白底物的第二步。在催化三联体中,E267 对于酰基-酶中间物的形成是必需的,表明其在增强 C387 的亲核性方面的作用。E343 也参与第一步,但与活性位点不接近。W237、Y388 和 E389 在反应的第二步中起作用,因为形成了酰基-Lnt,但没有发生 N-酰化。所提出的数据允许区分必需的 Lnt 残基在催化活性和底物识别中的功能。