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Published on: June 13, 2019
Clinical and genomic features of SPOP-mutant prostate cancer
Mari Nakazawa1, Mike Fang2, Catherine H Marshall3
1Department of Medicine, Johns Hopkins School of Medicine, Baltimore, Maryland, USA.
Background:
Inactivating missense mutations in the SPOP gene, encoding speckle-type poxvirus and zinc-finger protein, are one of the most common genetic alterations in prostate cancer.
Methods:
We retrospectively identified 72 consecutive prostate cancer patients with somatic SPOP mutations, through next-generation sequencing analysis, who were treated at the Johns Hopkins Hospital. We evaluated clinical and genomic characteristics of this SPOP-mutant subset.
Results:
SPOP alterations were clustered in the MATH domain, with hotspot mutations involving the F133 and F102 residues. The most frequent concurrent genetic alterations were in APC (16/72 [22%]), PTEN (13/72 [18%]), and TP53 (11/72 [15%]). SPOP-mutant cancers appeared to be mutually exclusive with tumors harboring the TMPRSS2-ERG fusion, and were significantly enriched for Wnt pathway (APC, CTNNB1) mutations and de-enriched for TP53/PTEN/RB1 alterations. Patients with mtSPOP had durable responses to androgen deprivation therapy (ADT) with a median time-to-castration-resistance of 42.0 (95% confidence interval [CI], 25.7-60.8) months. However, time-to-castration-resistance was significantly shorter in SPOP-mutant patients with concurrent TP53 mutations (hazard ratio [HR] 4.53; p = 0.002), HRD pathway (ATM, BRCA1/2, and CHEK2) mutations (HR 3.19; p = 0.003), and PI3K pathway (PTEN, PIK3CA, and AKT1) alterations (HR 2.69; p = 0.004). In the castration-resistant prostate cancer setting, median progression-free survival was 8.9 (95% CI, 6.7-NR) months on abiraterone and 7.3 (95% CI, 3.2-NR) months on enzalutamide. There were no responses to PARP inhibitor treatment.
Conclusions:
SPOP-mutant prostate cancers represent a unique subset with absent ERG fusions and frequent Wnt pathway alterations, with potentially greater dependency on androgen signaling and enhanced responsiveness to ADT. Outcomes are best for SPOP-altered patients without other concurrent mutations.
Insights
SPOP gene mutations are common in prostate cancer and linked to Wnt pathway alterations. These SPOP-mutant cancers show good response to androgen deprivation therapy but worse outcomes with TP53 or HRD mutations.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Inactivating missense mutations in the SPOP gene are frequent in prostate cancer.
- SPOP encodes speckle-type poxvirus and zinc-finger protein, a key player in cellular processes.
Purpose of the Study:
- To evaluate the clinical and genomic characteristics of prostate cancer patients with somatic SPOP mutations.
- To understand the impact of SPOP mutations on treatment response and patient outcomes.
Main Methods:
- Retrospective analysis of 72 prostate cancer patients with somatic SPOP mutations identified via next-generation sequencing.
- Evaluation of clinical data, genomic alterations, and treatment responses.
Main Results:
- SPOP mutations were clustered in the MATH domain, with hotspots at F133 and F102 residues.
- Frequent co-occurring mutations were found in APC, PTEN, and TP53.
- SPOP-mutant cancers were mutually exclusive with TMPRSS2-ERG fusions and enriched for Wnt pathway alterations.
- Patients with SPOP mutations showed durable response to androgen deprivation therapy (ADT), but shorter time-to-castration-resistance with concurrent TP53, HRD, or PI3K pathway mutations.
- No response to PARP inhibitor treatment was observed in the castration-resistant setting.
Conclusions:
- SPOP-mutant prostate cancers represent a distinct molecular subtype characterized by absent ERG fusions and frequent Wnt pathway alterations.
- These cancers may have increased dependence on androgen signaling and enhanced responsiveness to ADT.
- Optimal outcomes are observed in SPOP-altered patients without additional concurrent mutations.
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