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Updated: Jan 11, 2026

Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
DOCK2 modulates immune checkpoint inhibitor responsiveness and prognosis in cutaneous melanoma through multi-omics
Huicong Wang1, Chao Feng1, Chengjun Lao1
1Department of Dermatology, Shengli Oilfield Central Hospital, 31 Jinan Road, Dongying, 257000, Shandong Province, China.
Background:
Skin cutaneous melanoma (SKCM) is a highly aggressive malignancy that arises from melanocytes and has been associated with a notable increase in incidence and mortality rates across the globe. The current treatment modalities for SKCM, which encompass surgical interventions, radiotherapy, chemotherapy, and immunotherapy, have notably enhanced survival outcomes for certain patient subsets. Nonetheless, these approaches are frequently limited by factors such as variable efficacy, adverse side effects, and the emergence of resistance mechanisms. In this context, there is a pressing need to explore novel therapeutic targets that may enhance treatment effectiveness.
Methods:
This study examines the Dedicator of cytokinesis 2 (DOCK2) gene, which has been implicated in immune regulation, yet its functional roles within oncogenesis, particularly in melanoma, remain inadequately characterized. We employed an integrated bioinformatics approach utilizing clinical datasets from The Cancer Genome Atlas (TCGA), the Genotype-Tissue Expression project (GTEx), and the Human Protein Atlas (HPA) to evaluate DOCK2 expression across various malignancies and to assess its prognostic significance in SKCM.
Results:
Our analyses revealed that DOCK2 expression is differentially modulated across several cancer types and serves as a favorable prognostic marker specifically in SKCM. Notably, elevated DOCK2 levels were significantly correlated with improved therapeutic responses to immune checkpoint inhibitors (ICIs), suggesting that DOCK2 may play a pivotal role in modulating the tumor immune microenvironment. Furthermore, functional enrichment analyses indicated that DOCK2-associated genes are critically involved in vital immune pathways, encompassing leukocyte-mediated immunity and immune receptor activity. Increased expression of DOCK2 was also associated with heightened T cell infiltration in SKCM tumor tissues.
Conclusions:
Collectively, these findings highlight the promising prognostic and therapeutic implications of DOCK2 in melanoma, emphasizing its potential as a biomarker for assessing immunotherapy efficacy. Our research advocates for further investigation into DOCK2 as a viable target for precision immunotherapy, which could ultimately lead to improved treatment strategies for patients battling SKCM.
Insights
Dedicator of cytokinesis 2 (DOCK2) is a promising prognostic marker for skin cutaneous melanoma (SKCM). Higher DOCK2 levels correlate with better responses to immunotherapy and increased T cell infiltration, suggesting its potential in precision oncology.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Skin cutaneous melanoma (SKCM) is an aggressive cancer with increasing incidence and mortality.
- Current treatments like immunotherapy show variable efficacy and resistance.
- Novel therapeutic targets are needed to improve SKCM treatment outcomes.
Purpose of the Study:
- To investigate the role of the Dedicator of cytokinesis 2 (DOCK2) gene in melanoma.
- To assess DOCK2's prognostic significance and potential as a therapeutic target in SKCM.
Main Methods:
- Utilized integrated bioinformatics analysis of TCGA, GTEx, and HPA datasets.
- Evaluated DOCK2 expression across malignancies and its prognostic value in SKCM.
- Performed functional enrichment analyses on DOCK2-associated genes.
Main Results:
- DOCK2 expression is altered in various cancers and is a favorable prognostic marker in SKCM.
- Elevated DOCK2 correlates with improved response to immune checkpoint inhibitors (ICIs).
- DOCK2 is linked to immune pathways, leukocyte-mediated immunity, and increased T cell infiltration in SKCM.
Conclusions:
- DOCK2 shows potential as a prognostic biomarker for immunotherapy efficacy in melanoma.
- DOCK2 warrants further investigation as a target for precision immunotherapy in SKCM.
- Targeting DOCK2 could lead to improved treatment strategies for SKCM patients.
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