Sivadas Athira, McDonald Eli Fritz, Shuster Sydney O, Davis Caitlin M, Plate Lars
Department of Chemistry, Vanderbilt University, Nashville, TN, USA.
Center for Structural Biology, Vanderbilt University, Nashville, TN, USA.
bioRxiv. 2023 Sep 20:2023.09.19.558525. doi: 10.1101/2023.09.19.558525.
Phosphofructokinase is the central enzyme in glycolysis and constitutes a highly regulated step. The liver isoform (PFKL) compartmentalizes during activation and inhibition and respectively. Compartmentalized PFKL is hypothesized to modulate metabolic flux consistent with its central role as the rate limiting step in glycolysis. PFKL tetramers self-assemble at two interfaces in the monomer (interface 1 and 2), yet how these interfaces contribute to PFKL compartmentalization and drive protein interactions remains unclear. Here, we used site-specific incorporation of noncanonical photocrosslinking amino acids to identify PFKL interactors at interface 1, 2, and the active site. Tandem mass tag-based quantitative interactomics reveals interface 2 as a hotspot for PFKL interactions, particularly with cytoskeletal, glycolytic, and carbohydrate derivative metabolic proteins. Furthermore, PFKL compartmentalization into puncta was observed in human cells using citrate inhibition. Puncta formation attenuated crosslinked protein-protein interactions with the cytoskeleton at interface 2. This result suggests that PFKL compartmentalization sequesters interface 2, but not interface 1, and may modulate associated protein assemblies with the cytoskeleton.
磷酸果糖激酶是糖酵解的关键酶,构成了一个高度受调控的步骤。肝脏同工型(PFKL)在激活和抑制过程中分别进行区室化。据推测,区室化的PFKL通过调节代谢通量来与其作为糖酵解限速步骤的核心作用保持一致。PFKL四聚体在单体的两个界面(界面1和2)处自我组装,但这些界面如何促进PFKL区室化并驱动蛋白质相互作用仍不清楚。在这里,我们利用非经典光交联氨基酸的位点特异性掺入来鉴定界面1、2和活性位点处的PFKL相互作用蛋白。基于串联质量标签的定量相互作用组学揭示了界面2是PFKL相互作用的热点,特别是与细胞骨架、糖酵解和碳水化合物衍生物代谢蛋白的相互作用。此外,在人类细胞中使用柠檬酸盐抑制观察到PFKL区室化形成点状结构。点状结构的形成减弱了界面2处与细胞骨架的交联蛋白质 - 蛋白质相互作用。这一结果表明,PFKL区室化隔离了界面2而非界面1,并且可能调节与细胞骨架相关的蛋白质组装。