Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Kidney renal clear cell carcinoma (KIRC), a cancer characterized by substantial immune infiltration, exhibits limited sensitivity to conventional radiochemotherapy. Although immunotherapy has shown efficacy in some patients, its applicability is not universally effective. Studies have indicated that programmed cell death (PCD) can modulate the activity of immune cells and participate in the regulation of antitumor immune responses. However, systematic research on how various PCD patterns in KIRC affect the responsiveness to immunotherapy is lacking and requires in-depth investigation. We utilized a combination of 101 machine learning algorithms to analyze the TCGA-KIRC cohort and the GSE22541 KIRC patients, screening for cell death patterns closely associated with prognosis from 18 potential modes. Integrating multi-omics analysis, including immune cell infiltration, phenotyping, functional analysis, immune checkpoint exploration, and gene set enrichment analysis (GSEA), we explored the relationship between key cell death patterns and patients' responses to immunotherapy. Finally, potential drug targets were identified through drug sensitivity screening and molecular docking techniques. Our sophisticated risk assessment model successfully identified two PCD patterns, Anoikis and lysosome-dependent cell death (LDCD), closely associated with the prognosis of KIRC patients, with the high-risk group exhibiting poor outcomes. Immune cell analysis revealed upregulated expression of T follicular helper (Tfh) cells in both PCD patterns. Analysis of immune checkpoints disclosed enhanced expression of human leukocyte antigen E (HLA-E) across both patterns. Frequent mutations in the TTN and MUC16 genes were observed in the Anoikis pattern, whereas in the LDCD pattern, although the high-risk group had a higher mutation rate, there was no significant difference in tumor mutational burden. GSEA analysis indicated significant enrichment of the primary immunodeficiency pathway in the Anoikis high-risk group and significant enrichment of the spliceosomal tri-snrnp complex assembly pathway in the LDCD high-risk group. Drug sensitivity analysis showed notable sensitivity to SB505124 in both PCD patterns. HMOX1 and PIK3CG were identified as common genes in the two key PCD patterns, and molecular docking analysis confirmed stable binding affinity between Carnosol and HMOX1, and between PROTAC and PIK3CG. Our study identifies Anoikis and LDCD as prognostic PCD patterns in KIRC, with key immune cells, genetic mutations, and drug sensitivity profiles. HMOX1 and PIK3CG are common genes with stable binding to Carnosol and PROTAC, respectively, while SB505124 shows significant sensitivity to both PCD modes, suggesting potential therapeutic targets.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12106685PMC
http://dx.doi.org/10.1038/s41598-025-00759-zDOI Listing

Publication Analysis

Top Keywords

pcd patterns
24
cell death
20
high-risk group
16
death patterns
12
drug sensitivity
12
patterns
10
analysis
9
cell
9
machine learning
8
multi-omics analysis
8

Similar Publications

Introduction: Subjective cognitive decline (SCD) may be associated with poor oral health because of difficulty with self-care or comorbid conditions. Our study aimed to examine oral health status, use of dental services, and the prevalence of SCD among US middle-aged (45-64 y) and older (≥65 y) adults.

Methods: We conducted a cross-sectional analysis of 2022 Behavioral Risk Factor Surveillance System (BRFSS) data.

View Article and Find Full Text PDF

Alternative splicing drives a dynamic transcriptomic response during programmed cell death.

Microb Cell

August 2025

Tecnologico de Monterrey, Escuela de Ingeniería y Ciencias, Ave. Eugenio Garza Sada 2501, 64849, Monterrey, N.L, Mexico.

Programmed cell death (PCD) in unicellular organisms is not well characterized. This study investigated the transcriptomic response of to G418-induced PCD, focusing on the role of alternative splicing (AS). RNA sequencing revealed extensive transcriptional changes, affecting approximately 70% of annotated genes over six hours of treatment.

View Article and Find Full Text PDF

Bacterial Acetyltransferase Effector AopP2 Primes Effector-Triggered Immunity in Watermelon by Acetylating a Conserved Transcription Factor.

Plant Cell Environ

September 2025

Guangxi Key Laboratory of Agro-environment and Agro-product Safety, College of Agriculture, Guangxi University, Nanning, China.

Bacterial fruit blotch (BFB), caused by Paracidovorax citrulli (Pc), threatens global watermelon production, yet genetic resistance remains scarce. This study investigates the potential of non-adapted interaction triggered by Paracidovorax avenae (Pa), a maize pathogen, to combat BFB in watermelon. We demonstrate that Pa strain ATCC 19860 elicits a hypersensitive response (HR) in watermelon via its type III secretion system (T3SS), inducing effector-triggered immunity (ETI).

View Article and Find Full Text PDF

Background Mitochondrial-related genes (MRGs) and programmed cell death-related genes (PCD-RGs) have been proven to play important roles in obsessive-compulsive disorder (OCD), and identifying their shared biomarkers is conducive to the diagnosis and research of OCD. Methods Differentially expressed genes (DEGs) between OCD and control samples were identified from the GSE78104 dataset. Differentially expressed MRGs (DE MRGs) and PCD-RGs (DE-PCD-RGs) were derived by intersecting with MRG and PCD-RG gene sets, respectively, resulting in DE mitochondrial-related PCD (DE-MPCD) genes.

View Article and Find Full Text PDF

Acute Myeloid Leukemia (AML) is a highly heterogeneous malignant hematologic cancer with poor clinical outcome. The presence of leukemia stem cells (LSC) is a significant factor contributing to the failure of AML treatments and frequent relapses. The quiescent and plastic nature of LSC decreases cell death under conventional chemotherapy.

View Article and Find Full Text PDF