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Palbociclib treatment alters nucleotide biosynthesis and glutamine dependency in A549 cells
Lindsey R Conroy1,2, Pawel Lorkiewicz3,4, Liqing He4
1Department of Biochemistry and Molecular Genetics, University of Louisville, Louisville, KY USA.
Background:
Aberrant activity of cell cycle proteins is one of the key somatic events in non-small cell lung cancer (NSCLC) pathogenesis. In most NSCLC cases, the retinoblastoma protein tumor suppressor (RB) becomes inactivated via constitutive phosphorylation by cyclin dependent kinase (CDK) 4/6, leading to uncontrolled cell proliferation. Palbociclib, a small molecule inhibitor of CDK4/6, has shown anti-tumor activity in vitro and in vivo, with recent studies demonstrating a functional role for palbociclib in reprogramming cellular metabolism. While palbociclib has shown efficacy in preclinical models of NSCLC, the metabolic consequences of CDK4/6 inhibition in this context are largely unknown.
Methods:
In our study, we used a combination of stable isotope resolved metabolomics using [U-13C]-glucose and multiple in vitro metabolic assays, to interrogate the metabolic perturbations induced by palbociclib in A549 lung adenocarcinoma cells. Specifically, we assessed changes in glycolytic activity, the pentose phosphate pathway (PPP), and glutamine utilization. We performed these studies following palbociclib treatment with simultaneous silencing of RB1 to define the pRB-dependent changes in metabolism.
Results:
Our studies revealed palbociclib does not affect glycolytic activity in A549 cells but decreases glucose metabolism through the PPP. This is in part via reducing activity of glucose 6-phosphate dehydrogenase, the rate limiting enzyme in the PPP. Additionally, palbociclib enhances glutaminolysis to maintain mitochondrial respiration and sensitizes A549 cells to the glutaminase inhibitor, CB-839. Notably, the effects of palbociclib on both the PPP and glutamine utilization occur in an RB-dependent manner.
Conclusions:
Together, our data define the metabolic impact of palbociclib treatment in A549 cells and may support the targeting CDK4/6 inhibition in combination with glutaminase inhibitors in NSCLC patients with RB-proficient tumors.
Insights
Palbociclib, a CDK4/6 inhibitor, alters cell metabolism in non-small cell lung cancer (NSCLC) by decreasing the pentose phosphate pathway and increasing glutaminolysis. This suggests combining palbociclib with glutaminase inhibitors for RB-proficient NSCLC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metabolism
Background:
- Aberrant cell cycle protein activity drives non-small cell lung cancer (NSCLC) pathogenesis.
- Retinoblastoma protein (RB) inactivation by cyclin-dependent kinase (CDK) 4/6 promotes uncontrolled proliferation in most NSCLC.
- Palbociclib (a CDK4/6 inhibitor) shows anti-tumor activity and influences cellular metabolism, but its metabolic effects in NSCLC are not fully understood.
Purpose of the Study:
- To investigate the metabolic perturbations induced by palbociclib in NSCLC cells.
- To define the RB-dependent metabolic changes following CDK4/6 inhibition.
Main Methods:
- Utilized stable isotope-resolved metabolomics with [U-13C]-glucose and in vitro metabolic assays in A549 lung adenocarcinoma cells.
- Assessed changes in glycolysis, pentose phosphate pathway (PPP), and glutamine utilization.
- Examined palbociclib's effects with and without RB1 silencing.
Main Results:
- Palbociclib decreased glucose metabolism via the PPP by inhibiting glucose 6-phosphate dehydrogenase in A549 cells.
- Palbociclib enhanced glutaminolysis to support mitochondrial respiration, sensitizing cells to a glutaminase inhibitor.
- Metabolic effects of palbociclib on PPP and glutamine utilization were RB-dependent.
Conclusions:
- Palbociclib alters cellular metabolism in NSCLC cells, impacting PPP and glutamine utilization in an RB-dependent manner.
- Findings support exploring combination therapy of CDK4/6 inhibitors and glutaminase inhibitors for RB-proficient NSCLC patients.
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