4.6 Article

Pls1 Is a Peroxisomal Matrix Protein with a Role in Regulating Lysine Biosynthesis

Journal

CELLS
Volume 11, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/cells11091426

Keywords

peroxisome; Saccharomyces cerevisiae; high-content screen; protein targeting; lysine; Lys1; saccharopine; Pex5

Categories

Funding

  1. European Research Council (ERC) under the European Union [864068]
  2. EMBO Long-term Fellowship
  3. Arian de Rothschild Women Doctoral Program
  4. Volkswagen (VW) foundation Life grant [A122741]
  5. EMBO Long-term Fellowship [ALTF-580-2017]

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Peroxisomes are essential for human health and survival as they host important metabolic enzymes. By using a high-throughput screen in yeast, researchers discovered 18 previously unidentified peroxisomal proteins and investigated their dependence on metabolic and targeting factors for peroxisomal localization. One newly identified protein, Pls1, was found to affect the lysine biosynthesis pathway.
Peroxisomes host essential metabolic enzymes and are crucial for human health and survival. Although peroxisomes were first described over 60 years ago, their entire proteome has not yet been identified. As a basis for understanding the variety of peroxisomal functions, we used a high-throughput screen to discover peroxisomal proteins in yeast. To visualize low abundance proteins, we utilized a collection of strains containing a peroxisomal marker in which each protein is expressed from the constitutive and strong TEF2 promoter. Using this approach, we uncovered 18 proteins that were not observed in peroxisomes before and could show their metabolic and targeting factor dependence for peroxisomal localization. We focus on one newly identified and uncharacterized matrix protein, Ynl097c-b, and show that it localizes to peroxisomes upon lysine deprivation and that its localization to peroxisomes depends on the lysine biosynthesis enzyme, Lys1. We demonstrate that Ynl097c-b affects the abundance of Lys1 and the lysine biosynthesis pathway. We have therefore renamed this protein Pls1 for Peroxisomal Lys1 Stabilizing 1. Our work uncovers an additional layer of regulation on the central lysine biosynthesis pathway. More generally it highlights how the discovery of peroxisomal proteins can expand our understanding of cellular metabolism.

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