Department of Chemistry and Biotechnology, Tallinn University of Technology, 12618, Tallinn, Estonia.
Sci Rep. 2024 Aug 23;14(1):19639. doi: 10.1038/s41598-024-70468-6.
GPIHBP1 is a membrane protein of endothelial cells that transports lipoprotein lipase (LPL), the key enzyme in plasma triglyceride metabolism, from the interstitial space to its site of action on the capillary lumen. An intrinsically disordered highly negatively charged N-terminal domain of GPIHBP1 contributes to the interaction with LPL. In this work, we investigated whether the plethora of heparin-binding proteins with positively charged regions found in human plasma affect this interaction. We also wanted to know whether the role of the N-terminal domain is purely non-specific and supportive for the interaction between LPL and full-length GPIHBP1, or whether it participates in the specific recognition mechanism. Using surface plasmon resonance, affinity chromatography, and FRET, we were unable to identify any plasma component, besides LPL, that bound the N-terminus with detectable affinity or affected its interaction with LPL. By examining different synthetic peptides, we show that the high affinity of the LPL/N-terminal domain interaction is ensured by at least ten negatively charged residues, among which at least six must sequentially arranged. We conclude that the association of LPL with the N-terminal domain of GPIHBP1 is highly specific and human plasma does not contain components that significantly affect this complex.
GPIHBP1 是一种内皮细胞的膜蛋白,它将脂蛋白脂肪酶(LPL),即血浆甘油三酯代谢的关键酶,从细胞间隙转运到其在毛细血管腔的作用部位。GPIHBP1 的富含高度负电荷的无规卷曲的 N 端结构域有助于与 LPL 的相互作用。在这项工作中,我们研究了人血浆中存在的大量带正电荷区域的肝素结合蛋白是否会影响这种相互作用。我们还想知道 N 端结构域的作用是否纯粹是非特异性的,支持 LPL 和全长 GPIHBP1 之间的相互作用,还是它参与了特定的识别机制。通过表面等离子体共振、亲和层析和 FRET,我们无法确定除了 LPL 之外,还有任何血浆成分以可检测的亲和力结合 N 端结构域,或影响其与 LPL 的相互作用。通过检查不同的合成肽,我们表明 LPL/N 端结构域相互作用的高亲和力至少由十个带负电荷的残基保证,其中至少六个必须顺序排列。我们得出结论,LPL 与 GPIHBP1 的 N 端结构域的结合具有高度特异性,人血浆中不含有显著影响这种复合物的成分。