Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Vps34-mediated macropinocytosis in Tuberous Sclerosis Complex 2-deficient cells supports tumorigenesis

View through CrossRef
AbstractTuberous Sclerosis Complex (TSC), a rare genetic disorder with mechanistic target of rapamycin complex 1 (mTORC1) hyperactivation, is characterized by multi-organ hamartomatous benign tumors including brain, skin, kidney, and lung (Lymphangioleiomyomatosis). mTORC1 hyperactivation drives metabolic reprogramming including glucose and glutamine utilization, protein, nucleic acid and lipid synthesis. To investigate the mechanisms of exogenous nutrients uptake in Tsc2-deficient cells, we measured dextran uptake, a polysaccharide internalized via macropinocytosis. Tsc2-deficient cells showed a striking increase in dextran uptake (3-fold, p < 0.0001) relative to Tsc2-expressing cells, which was decreased (3-fold, p < 0.0001) with mTOR inhibitor, Torin1. Pharmacologic and genetic inhibition of the lipid kinase Vps34 markedly abrogated uptake of Dextran in Tsc2-deficient cells. Macropinocytosis was further increased in Tsc2-deficient cells that lack autophagic mechanisms, suggesting that autophagy inhibition leads to dependence on exogenous nutrient uptake in Tsc2-deficient cells. Treatment with a macropinocytosis inhibitor, ethylisopropylamiloride (EIPA), resulted in selective growth inhibition of Atg5-deficient, Tsc2-deficient cells (50%, p < 0.0001). Genetic inhibition of autophagy (Atg5−/− MEFs) sensitized cells with Tsc2 downregulation to the Vps34 inhibitor, SAR405, resulting in growth inhibition (75%, p < 0.0001). Finally, genetic downregulation of Vps34 inhibited tumor growth and increased tumor latency in an in vivo xenograft model of TSC. Our findings show that macropinocytosis is upregulated with Tsc2-deficiency via a Vps34-dependent mechanism to support their anabolic state. The dependence of Tsc2-deficient cells on exogenous nutrients may provide novel approaches for the treatment of TSC.
Title: Vps34-mediated macropinocytosis in Tuberous Sclerosis Complex 2-deficient cells supports tumorigenesis
Description:
AbstractTuberous Sclerosis Complex (TSC), a rare genetic disorder with mechanistic target of rapamycin complex 1 (mTORC1) hyperactivation, is characterized by multi-organ hamartomatous benign tumors including brain, skin, kidney, and lung (Lymphangioleiomyomatosis).
mTORC1 hyperactivation drives metabolic reprogramming including glucose and glutamine utilization, protein, nucleic acid and lipid synthesis.
To investigate the mechanisms of exogenous nutrients uptake in Tsc2-deficient cells, we measured dextran uptake, a polysaccharide internalized via macropinocytosis.
Tsc2-deficient cells showed a striking increase in dextran uptake (3-fold, p < 0.
0001) relative to Tsc2-expressing cells, which was decreased (3-fold, p < 0.
0001) with mTOR inhibitor, Torin1.
Pharmacologic and genetic inhibition of the lipid kinase Vps34 markedly abrogated uptake of Dextran in Tsc2-deficient cells.
Macropinocytosis was further increased in Tsc2-deficient cells that lack autophagic mechanisms, suggesting that autophagy inhibition leads to dependence on exogenous nutrient uptake in Tsc2-deficient cells.
Treatment with a macropinocytosis inhibitor, ethylisopropylamiloride (EIPA), resulted in selective growth inhibition of Atg5-deficient, Tsc2-deficient cells (50%, p < 0.
0001).
Genetic inhibition of autophagy (Atg5−/− MEFs) sensitized cells with Tsc2 downregulation to the Vps34 inhibitor, SAR405, resulting in growth inhibition (75%, p < 0.
0001).
Finally, genetic downregulation of Vps34 inhibited tumor growth and increased tumor latency in an in vivo xenograft model of TSC.
Our findings show that macropinocytosis is upregulated with Tsc2-deficiency via a Vps34-dependent mechanism to support their anabolic state.
The dependence of Tsc2-deficient cells on exogenous nutrients may provide novel approaches for the treatment of TSC.

Related Results

Abstract A01: Vps34 promotes macropinocytosis in Tsc2-deficient cells
Abstract A01: Vps34 promotes macropinocytosis in Tsc2-deficient cells
Abstract Purpose: The mechanistic/mammalian target of rapamycin complex 1 (mTORC1) is constitutively active in many human cancers and in tuberous sclerosis complex (...
Effets de la modulation de l’autophagie sur le métabolisme hépatique et le développement de l’athérosclérose
Effets de la modulation de l’autophagie sur le métabolisme hépatique et le développement de l’athérosclérose
L’autophagie est un processus de recyclage cellulaire au cours duquel des composants intracellulaires sont adressés aux lysosomes pour être dégradés. Des défauts d’autophagie ont é...
Anti-Breast Cancer Activity of a Novel Strategy of Targeting Autophagy Induced by Pan-HDAC Inhibitor and Acetylated Hsp70.
Anti-Breast Cancer Activity of a Novel Strategy of Targeting Autophagy Induced by Pan-HDAC Inhibitor and Acetylated Hsp70.
Abstract During the in vivo growth of breast cancers, hypoxia, deprivation of nutrients, acidosis and increased reactive oxygen species collectively induce the metab...
Blebbishields and mitotic cells exhibit robust macropinocytosis
Blebbishields and mitotic cells exhibit robust macropinocytosis
AbstractCancer stem cells can survive and undergo transformation after apoptosis by initiating robust endocytosis. Endocytosis in‐turn drives formation of serpentine filopodia, whi...
Tuberous Sclerosis Complex: A Case Series from a Romanian Genetics Center and a Review of the Literature
Tuberous Sclerosis Complex: A Case Series from a Romanian Genetics Center and a Review of the Literature
Introduction: Tuberous sclerosis complex (TSC) is a rare multisystemic genetic disorder characterized by the formation of benign tumors in various organs, including the central ner...
Mécanismes moléculaires de la production et des fonctions plaquettaires : rôle de Vps34 et impact des inhibiteurs ciblés de kinases
Mécanismes moléculaires de la production et des fonctions plaquettaires : rôle de Vps34 et impact des inhibiteurs ciblés de kinases
Les plaquettes sanguines jouent un rôle essentiel dans le maintien de l'intégrité des vaisseaux sanguins. En cas de brèche vasculaire, elles conduisent à la formation d'un clou hém...
Abstract 375: Lipogenic phenotype is an adaptation to nutrient stress in the tumor microenvironment
Abstract 375: Lipogenic phenotype is an adaptation to nutrient stress in the tumor microenvironment
Abstract The nutrient and oxygen poor microenvironment combined with acidosis arising from fermentative metabolism imparts strong selection pressure on cancer cells ...

Back to Top