The Somatic Mutational Landscape of Mismatch Repair Deficient Prostate Cancer

Author:

Fang Bangwei,Wei Yu,Pan JianORCID,Zhang Tingwei,Ye Dingwei,Zhu Yao

Abstract

Prostate cancers with mismatch repair deficiency (MMR-d) have aggressive clinical and histological features, and they are potentially responsive to immunotherapy. However, its rarity prevents the analysis of the underlying biology. Here, we collected the genomic data of 2664 primary prostate tumors and 1409 metastatic prostate tumors from the GENIE and TCGA databases. A total of 69 (2.59%) primary and 60 (4.26%) metastatic MMR-d tumors were identified among these tumors. Single nucleotide variant (SNV) frequencies of 34 candidate genes (including KMT2D (46.4%), ZFHX3 (33.3%), JAK1 (31.9%), and RNF43 (27.5%)) and 16 candidate genes (including KMT2D (33.3%) and JAK1 (28.3%)) were higher in MMR-d primary tumors and MMR-d metastatic tumors, respectively. The tumor mutation burden (TMB) was higher in primary MMR-d tumors. Homozygous deletions of EPCAM and EPAS1 were enriched in MMR-d primary tumors, while EPCAM deletions were enriched in metastatic MMR-d tumors. For genomic rearrangement events, TMPRSS2-ETS fusions were less frequent in primary MMR-d tumors. Our study indicates MMR-d prostate cancers have unique genomic features. These may play an important role in providing therapeutic targets for the treatment of this subset of prostate cancer patients.

Funder

National Nature Science Foundation of China

Shanghai Medical Innovation Research Special Project

Chinese Anti-Cancer Association-Hengrui PARP Inhibitor Cancer Research Foundation

Oriental Scholar Professorship, Shanghai Municipal Commission of Education, China

Shanghai Shenkang Research Physician Innovation and Transformation Ability Training Project

General Program of Beijing Xisike Clinical Oncology Research Foundation

Publisher

MDPI AG

Subject

General Medicine

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