Webb Bradley A, Dosey Anne M, Wittmann Torsten, Kollman Justin M, Barber Diane L
Department of Cell and Tissue Biology, University of California, San Francisco, San Francisco, CA.
Department of Biochemistry, University of Washington, Seattle, WA.
J Cell Biol. 2017 Aug 7;216(8):2305-2313. doi: 10.1083/jcb.201701084. Epub 2017 Jun 23.
Despite abundant knowledge of the regulation and biochemistry of glycolytic enzymes, we have limited understanding on how they are spatially organized in the cell. Emerging evidence indicates that nonglycolytic metabolic enzymes regulating diverse pathways can assemble into polymers. We now show tetramer- and substrate-dependent filament assembly by phosphofructokinase-1 (PFK1), which is considered the "gatekeeper" of glycolysis because it catalyzes the step committing glucose to breakdown. Recombinant liver PFK1 (PFKL) isoform, but not platelet PFK1 (PFKP) or muscle PFK1 (PFKM) isoforms, assembles into filaments. Negative-stain electron micrographs reveal that filaments are apolar and made of stacked tetramers oriented with exposed catalytic sites positioned along the edge of the polymer. Electron micrographs and biochemical data with a PFKL/PFKP chimera indicate that the PFKL regulatory domain mediates filament assembly. Quantified live-cell imaging shows dynamic properties of localized PFKL puncta that are enriched at the plasma membrane. These findings reveal a new behavior of a key glycolytic enzyme with insights on spatial organization and isoform-specific glucose metabolism in cells.
尽管对糖酵解酶的调控和生物化学有丰富的了解,但我们对它们在细胞中的空间组织方式了解有限。新出现的证据表明,调节多种途径的非糖酵解代谢酶可以组装成聚合物。我们现在展示了磷酸果糖激酶-1(PFK1)的四聚体和底物依赖性丝状组装,PFK1被认为是糖酵解的“守门人”,因为它催化葡萄糖进入分解的步骤。重组肝PFK1(PFKL)同工型,而不是血小板PFK1(PFKP)或肌肉PFK1(PFKM)同工型,组装成细丝。负染电子显微镜照片显示细丝是非极性的,由堆叠的四聚体组成,其取向是使暴露的催化位点沿着聚合物边缘定位。PFKL/PFKP嵌合体的电子显微镜照片和生化数据表明,PFKL调节域介导细丝组装。定量活细胞成像显示,位于质膜富集的局部PFKL斑点具有动态特性。这些发现揭示了一种关键糖酵解酶的新行为,为细胞中的空间组织和同工型特异性葡萄糖代谢提供了见解。