Gu Xiaodong, Huang Ying, Levison Bruce S, Gerstenecker Gary, DiDonato Anthony J, Hazen Leah B, Lee Joonsue, Gogonea Valentin, DiDonato Joseph A, Hazen Stanley L
From the Department of Cellular and Molecular Medicine, Center for Cardiovascular Diagnostics and Prevention, and.
the Department of Chemistry, Cleveland State University, Cleveland, Ohio 44115.
J Biol Chem. 2016 Jan 22;291(4):1890-1904. doi: 10.1074/jbc.M115.678334. Epub 2015 Nov 13.
Paraoxonase 1 (PON1) is a high density lipoprotein (HDL)-associated protein with atherosclerosis-protective and systemic anti-oxidant functions. We recently showed that PON1, myeloperoxidase, and HDL bind to one another in vivo forming a functional ternary complex (Huang, Y., Wu, Z., Riwanto, M., Gao, S., Levison, B. S., Gu, X., Fu, X., Wagner, M. A., Besler, C., Gerstenecker, G., Zhang, R., Li, X. M., Didonato, A. J., Gogonea, V., Tang, W. H., et al. (2013) J. Clin. Invest. 123, 3815-3828). However, specific residues on PON1 involved in the HDL-PON1 interaction remain unclear. Unambiguous identification of protein residues involved in docking interactions to lipid surfaces poses considerable methodological challenges. Here we describe a new strategy that uses a novel synthetic photoactivatable and click chemistry-taggable phospholipid probe, which, when incorporated into HDL, was used to identify amino acid residues on PON1 that directly interact with the lipoprotein phospholipid surface. Several specific PON1 residues (Leu-9, Tyr-185, and Tyr-293) were identified through covalent cross-links with the lipid probes using affinity isolation coupled to liquid chromatography with on-line tandem mass spectrometry. Based upon the crystal structure for PON1, the identified residues are all localized in relatively close proximity on the surface of PON1, defining a domain that binds to the HDL lipid surface. Site-specific mutagenesis of the identified PON1 residues (Leu-9, Tyr-185, and Tyr-293), coupled with functional studies, reveals their importance in PON1 binding to HDL and both PON1 catalytic activity and stability. Specifically, the residues identified on PON1 provide important structural insights into the PON1-HDL interaction. More generally, the new photoactivatable and affinity-tagged lipid probe developed herein should prove to be a valuable tool for identifying contact sites supporting protein interactions with lipid interfaces such as found on cell membranes or lipoproteins.
对氧磷酶1(PON1)是一种与高密度脂蛋白(HDL)相关的蛋白质,具有抗动脉粥样硬化和全身抗氧化功能。我们最近发现,PON1、髓过氧化物酶和HDL在体内相互结合,形成一种功能性三元复合物(Huang,Y.,Wu,Z.,Riwanto,M.,Gao,S.,Levison,B.S.,Gu,X.,Fu,X.,Wagner,M.A.,Besler,C.,Gerstenecker,G.,Zhang,R.,Li,X.M.,Didonato,A.J.,Gogonea,V.,Tang,W.H.等人,(2013年)《临床研究杂志》123卷,3815 - 3828页)。然而,PON1上参与HDL - PON1相互作用的特定残基仍不清楚。明确鉴定参与与脂质表面对接相互作用的蛋白质残基带来了相当大的方法学挑战。在这里,我们描述了一种新策略,该策略使用一种新型的合成光可激活且可进行点击化学标记的磷脂探针,当该探针掺入HDL中时,用于鉴定PON1上直接与脂蛋白磷脂表面相互作用的氨基酸残基。通过使用亲和分离结合在线串联质谱的液相色谱法,利用与脂质探针的共价交联鉴定出了几个特定的PON1残基(Leu - 9、Tyr - 185和Tyr - 293)。基于PON1的晶体结构,所鉴定的残基都位于PON1表面相对较近的位置,定义了一个与HDL脂质表面结合的结构域。对所鉴定的PON1残基(Leu - 9、Tyr - 185和Tyr - 293)进行位点特异性诱变,并结合功能研究,揭示了它们在PON1与HDL结合以及PON1催化活性和稳定性方面的重要性。具体而言,在PON1上鉴定出的残基为PON1 - HDL相互作用提供了重要的结构见解。更一般地说,本文开发的新型光可激活且带有亲和标签的脂质探针应被证明是一种有价值的工具,用于鉴定支持蛋白质与脂质界面(如细胞膜或脂蛋白上发现的脂质界面)相互作用的接触位点。