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Critical role for PI3-kinase in regulating the use of proteins as an amino acid source. | LitMetric

AI Article Synopsis

  • Ras-transformed cells adapt to low amino acid environments by utilizing macropinocytosis and breaking down extracellular proteins in lysosomes, unlike nontransformed fibroblasts, which don’t rely on Ras GTPases for these processes.
  • Instead, the study highlights that phosphatidylinositol 3-kinase (PI3-kinase) signaling is crucial for cell growth and supports protein uptake through macropinocytosis.
  • The research also reveals that different effectors within the PI3-kinase pathway, like Rac1 and PLC, promote protein use, while Akt inhibits protein breakdown when amino acids are plentiful, illustrating how cancer-related PI3-kinase and PTEN mutations help cells manage changing nutrient levels

Article Abstract

Ras-transformed cells can grow in amino acid-poor environments by recovering amino acids through macropinocytosis and lysosomal catabolism of extracellular proteins. However, when studying nontransformed fibroblasts, we found that Ras GTPases are dispensable for growth-factor-stimulated macropinocytosis and lysosomal catabolism of extracellular proteins. Instead, we establish a critical role for phosphatidylinositol 3-kinase (PI3-kinase) signaling in cell proliferation that is supported by protein macropinocytosis. Downstream of PI3-kinase, distinct effectors have opposing roles in regulating uptake and catabolism of extracellular proteins. Rac1 and PLC are required for nutritional use of extracellular proteins. In contrast, Akt suppresses lysosomal catabolism of ingested proteins when free amino acids are abundant. The interplay between these pathways allows cells with oncogenic PIK3CA mutations or PTEN deletion to grow using diverse amino acid sources. Thus, the prevalence of PI3-kinase and PTEN mutations in cancer may result in part because they allow cells to cope with fluctuating nutrient availability.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5642723PMC
http://dx.doi.org/10.1073/pnas.1712726114DOI Listing

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