DNTTIP2 Expression is Associated with Macrophage Infiltration and Malignant Characteristics in Low-Grade Glioma

Pharmgenomics Pers Med. 2022 Mar 24:15:261-275. doi: 10.2147/PGPM.S356326. eCollection 2022.

Abstract

Purpose: Low-grade gliomas (LGG) are primary brain tumors that often affect predominantly young adults, which usually have a painless course, and have a longer survival period compared to patients with high-grade gliomas. Relatively established treatment options include surgery, radiotherapy, chemotherapy or combination therapy, as well as individualized management based on tumor location, histology, molecular features and patient characteristics. Due to the rapid development of targeted therapies, the development of new molecular targets is now a very promising research direction.

Methods: We explored the diagnostic value, clinical relevance, and molecular function of deoxynucleotidyl transferase terminal-interacting proteins 2 (DNTTIP2) in LGG using MethSurv, MEXPRESS, STRING, cBioPortal, Tumor Immunity Estimation Resource (TIMER) database, Gene Expression Profiling Interactive Analysis (GEPIA) databases. Besides, the "CIBERSORT" algorithm was conducted to estimate immune cells infiltration abundance, with "ggplot2" package visualizing the results. In vivo and vitro experiments were used to verify the speculations of bioinformatics analysis.

Results: In LGG patients, DNTTIP1/2 were over-expressed at mRNA levels and high DNTTIP1/2 levels correlated with poor survival in LGG patients. We confirmed that DNTTIP2 significantly promotes M2 macrophage activation and angiogenesis, which may be related to the IL6/JAK/STAT3 signaling pathway. In addition, we found that DNTTIP2 amplification was associated with an unfavorable prognosis in LGG patients. We demonstrated, finally, a correlation between DNTTIP2 gene hypermethylation and a poor prognosis in LGG.

Conclusion: This study demonstrated that DNTTIP1/2 had diagnostic and prognostic value in LGG patients. The biological mechanisms of DNTTIP2 regarding angiogenesis and macrophage activation may provide new insights into the treatment of glioma.

Keywords: DNTTIP2; M2 macrophages infiltration; angiogenesis; bioinformatics; low-grade glioma.

Grants and funding

The present study was supported by the Youth Science and Technology Project of Suzhou (No. KJXW2019059); the Suzhou Science and Technology Development Plan (No. SYSD2019006) and (No. SYSD2019008); Clinical Medicine Science and Technology Development Fund of Jiangsu University (No. JLY20180146).