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Phosphofructokinase relocalizes into subcellular compartments with liquid-like properties in vivo.

SoRi Jang | Zhao Xuan | Ross C Lagoy | Louise M Jawerth | Ian J Gonzalez | Milind Singh | Shavanie Prashad | Hee Soo Kim | Avinash Patel | Dirk R Albrecht | Anthony A Hyman | Daniel A Colón-Ramos
Biophysical journal | 2021

Although much is known about the biochemical regulation of glycolytic enzymes, less is understood about how they are organized inside cells. We systematically examine the dynamic subcellular localization of glycolytic protein phosphofructokinase-1/PFK-1.1 in Caenorhabditis elegans. We determine that endogenous PFK-1.1 localizes to subcellular compartments in vivo. In neurons, PFK-1.1 forms phase-separated condensates near synapses in response to energy stress from transient hypoxia. Restoring animals to normoxic conditions results in cytosolic dispersion of PFK-1.1. PFK-1.1 condensates exhibit liquid-like properties, including spheroid shapes due to surface tension, fluidity due to deformations, and fast internal molecular rearrangements. Heterologous self-association domain cryptochrome 2 promotes formation of PFK-1.1 condensates and recruitment of aldolase/ALDO-1. PFK-1.1 condensates do not correspond to stress granules and might represent novel metabolic subcompartments. Our studies indicate that glycolytic protein PFK-1.1 can dynamically form condensates in vivo.

Pubmed ID: 32853565

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Associated grants

  • Agency: NINDS NIH HHS, United States
    Id: DP1 NS111778
  • Agency: NINDS NIH HHS, United States
    Id: R01 NS076558
  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM007223
  • Agency: Howard Hughes Medical Institute, United States

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N2_(ancestral) (tool)

RRID:WB-STRAIN:WBStrain00000003

Caenorhabditis elegans with name C. elegans wild type (ancestral). from WB.

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