Mysling Simon, Kristensen Kristian Kølby, Larsson Mikael, Kovrov Oleg, Bensadouen André, Jørgensen Thomas Jd, Olivecrona Gunilla, Young Stephen G, Ploug Michael
Finsen Laboratory, Rigshospitalet, Copenhagen, Denmark.
Biotech Research and Innovation Centre, University of Copenhagen, Copenhagen, Denmark.
Elife. 2016 Dec 8;5:e20958. doi: 10.7554/eLife.20958.
Lipoprotein lipase (LPL) undergoes spontaneous inactivation global unfolding and this unfolding is prevented by GPIHBP1 (Mysling et al., 2016). We now show: (1) that ANGPTL4 inactivates LPL by catalyzing the unfolding of its hydrolase domain; (2) that binding to GPIHBP1 renders LPL largely refractory to this inhibition; and (3) that both the LU domain and the intrinsically disordered acidic domain of GPIHBP1 are required for this protective effect. Genetic studies have found that a common polymorphic variant in ANGPTL4 results in lower plasma triglyceride levels. We now report: (1) that this ANGPTL4 variant is less efficient in catalyzing the unfolding of LPL; and (2) that its Glu-to-Lys substitution destabilizes its N-terminal α-helix. Our work elucidates the molecular basis for regulation of LPL activity by ANGPTL4, highlights the physiological relevance of the inherent instability of LPL, and sheds light on the molecular defects in a clinically relevant variant of ANGPTL4.
脂蛋白脂肪酶(LPL)会发生自发失活和整体去折叠,而糖基磷脂酰肌醇锚定高密度脂蛋白结合蛋白1(GPIHBP1)可防止这种去折叠(米斯林等人,2016年)。我们现在表明:(1)血管生成素样蛋白4(ANGPTL4)通过催化LPL水解酶结构域的去折叠使其失活;(2)与GPIHBP1结合使LPL在很大程度上对这种抑制具有抗性;(3)GPIHBP1的LU结构域和内在无序的酸性结构域对于这种保护作用都是必需的。遗传学研究发现,ANGPTL4中一种常见的多态性变体导致血浆甘油三酯水平降低。我们现在报告:(1)这种ANGPTL4变体在催化LPL去折叠方面效率较低;(2)其谷氨酸到赖氨酸的取代使其N端α螺旋不稳定。我们的工作阐明了ANGPTL4调节LPL活性的分子基础,突出了LPL固有不稳定性的生理相关性,并揭示了ANGPTL4临床相关变体中的分子缺陷。