Evidence map›Paper›PMID 39113608›Full record

ArticleCancer research communications2024

Loss of STK11 Suppresses Lipid Metabolism and Attenuates KRAS-Induced Immunogenicity in Patients with Non-Small Cell Lung Cancer.

Daniel R Principe, Mary M Pasquinelli, Ryan H Nguyen, Hidayatullah G Munshi, Alicia Hulbert, Alexandre F Aissa, Frank Weinberg

Abstract read
In one paragraph

Article in Cancer research communications, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.

0numbers the graph read from it
0cells of the map it votes in
12citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

Who cites it

12 citing papers in PubMed.

  1. Review
  2. Review
  3. Review
  4. Article
  5. Article
  6. Article
  7. Article
  8. Review
  9. Metabolic changes in neuroendocrine neoplasms.Cellular and molecular life sciences : CMLS · 2025
    Review
  10. Article
  11. DisGeNet: a disease-centric interaction database among diseases and various associated genes.Database : the journal of biological databases and curation · 2025
    Article
  12. Emerging insights intoTranslational lung cancer research · 2024
    Review
4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

7 authors.

Daniel R PrincipeDepartment of Medicine, University of Wisconsin, Madison, Wisconsin.ORCID 0000-0003-4355-6597
Mary M PasquinelliDivision of Pulmonary, Critical Care, Sleep and Allergy, University of Illinois at Chicago, Chicago, Illinois.ORCID 0000-0002-1015-1908
Ryan H NguyenDivision of Hematology and Oncology, University of Illinois Chicago and Translational Oncology Program, University of Illinois Cancer Center, Chicago, Illinois.ORCID 0000-0002-8863-6649
Hidayatullah G MunshiDivision of Hematology and Oncology, University of Illinois Chicago and Translational Oncology Program, University of Illinois Cancer Center, Chicago, Illinois.ORCID 0000-0002-9552-0775
Alicia HulbertDepartment of Surgery, University of Illinois Chicago, Chicago, Illinois.ORCID 0000-0002-1196-1953
Alexandre F AissaDivision of Genetics, Department of Morphology and Genetics, Federal University of São Paulo, São Paulo, Brazil.ORCID 0000-0002-0759-4011
Frank WeinbergThe Robert H. Lurie Comprehensive Cancer Center, Chicago, Illinois.ORCID 0000-0002-0094-3725

Funding

Augmenting Pancreatic Cancer Immunotherapy via TGFβ Pathway InhibitionF30CA236031 · NCI · UNIVERSITY OF ILLINOIS AT CHICAGO · PI PRINCIPE, DANIEL R · 2019 to 2023
$256k
NCI NIH HHS F30 CA236031
6 · The paper itself

Abstract

As many as 30% of the patients with non-small cell lung cancer harbor oncogenic KRAS mutations, which leads to extensive remodeling of the tumor immune microenvironment. Although co-mutations in several genes have prognostic relevance in KRAS-mutated patients, their effect on tumor immunogenicity are poorly understood. In the present study, a total of 189 patients with non-small cell lung cancer underwent a standardized analysis including IHC, whole-exome DNA sequencing, and whole-transcriptome RNA sequencing. Patients with activating KRAS mutations demonstrated a significant increase in PDL1 expression and CD8+ T-cell infiltration. Both were increased in the presence of a co-occurring TP53 mutation and lost with STK11 co-mutation. Subsequent genomic analysis demonstrated that KRAS/TP53 co-mutated tumors had a significant decrease in the expression of glycolysis-associated genes and an increase in several genes involved in lipid metabolism, notably lipoprotein lipase, low-density lipoprotein receptor, and LDLRAD4. Conversely, in the immune-excluded KRAS/STK11 co-mutated group, we observed diminished lipid metabolism and no change in anaerobic glycolysis. Interestingly, in patients with low expression of lipoprotein lipase, low-density lipoprotein receptor, or LDLRAD4, KRAS mutations had no effect on tumor immunogenicity. However, in patients with robust expression of these genes, KRAS mutations were associated with increased immunogenicity and associated with improved overall survival. Our data further suggest that the loss of STK11 may function as a metabolic switch, suppressing lipid metabolism in favor of glycolysis, thereby negating KRAS-induced immunogenicity. Hence, this concept warrants continued exploration, both as a predictive biomarker and potential target for therapy in patients receiving ICI-based immunotherapy. SIGNIFICANCE: In patients with lung cancer, we demonstrate that KRAS mutations increase tumor immunogenicity; however, KRAS/STK11 co-mutated patients display an immune-excluded phenotype. KRAS/STK11 co-mutated patients also demonstrated significant downregulation of several key lipid metabolism genes, many of which were associated with increased immunogenicity and improved overall survival in KRAS-mutated patients. Hence, alteration to lipid metabolism warrants further study as a potential biomarker and target for therapy in patients with KRAS-mutated lung cancer.

Indexed as

AMP-Activated Protein Kinase KinasesCarcinoma, Non-Small-Cell LungLipid MetabolismLung NeoplasmsMutationProtein Serine-Threonine KinasesProto-Oncogene Proteins p21(ras)AgedB7-H1 AntigenCD8-Positive T-LymphocytesFemaleGene Expression Regulation, NeoplasticHumansMaleMiddle AgedPrognosisAMP-Activated Protein Kinase KinasesB7-H1 AntigenCD274 protein, humanKRAS protein, humanProtein Serine-Threonine KinasesProto-Oncogene Proteins p21(ras)STK11 protein, humanTumor Suppressor Protein p53

Identifiers

PMID39113608
PMCPMC11362717

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Registered trials

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.