Summary video

Summary video: PTEN as an important prognostic biomarker in metastatic prostate cancer

PTEN deficiency is the predominant biomarker of PI3K/AKT pathway activation

Alterations to the PTEN gene leading to a detectable deficiency of the PTEN protein is one of the primary causes of PI3K/AKT pathway activation in prostate cancer.3,4

PTEN deficiency leading to PI3K/AKT pathway activation may occur in:

25% of Patients With de Novo mHSPC

~25% of patients
with de with de novo mHSPC1

40–60% of Patients With mCRPC

40–60% of patients
with mCRPC2,5

PTEN deficiency is a valuable prognostic biomarker in mHSPC

Co-occurring alterations in PTEN and other tumor suppressor genes contribute to the overall aggressiveness of the tumor.

Alterations in the PTEN gene, which can lead to PTEN protein deficiency, often overlap with other genetic aberrations.6–8

  • Up to 40% of metastatic prostate tumors have co-occurring alterations in key tumor suppressor genes: PTEN, TP53 and RB16
  • Alteration to one or more of these genes in mHSPC tumors is associated with earlier disease progression and poor prognosis7,8

34.2%

In a study of 1,508 patients with mHSPC in the US, 516 patients (34.2%) had PTEN-altered tumors. Worse overall survival outcomes were observed in patients with PTEN-altered tumors compared to those without PTEN-altered tumors8

Deficiency of the PTEN protein is an independent predictor of poor outcomes

Compared with PTEN proficiency, PTEN deficiency is associated with poorer outcomes1,9–12:

Shorter
recurrence-free
survival

Shorter time
to development
of mCRPC

Shorter
overall survival

Patients with de novo mHSPC with PTEN deficiency have significantly shorter progression-free and overall survival compared with patients with PTEN proficiency.1

Shorter progression-free survival (PFS)

11.9 months

p<0.001

30.6 months

 

Months

Median PFS with PTEN deficiency (n=58)

Median PFS without PTEN deficiency (n=147)

Progression-free survival was defined as the time from commencing androgen deprivation therapy to the date of progression to mCRPC.

Shorter overall survival (OS)

43.8 months

p<0.001

80.2 months

 

Months

Median OS with PTEN deficiency (n=58)

Median OS without PTEN deficiency (n=147)

In mHSPC or mCRPC, when compared with PTEN proficiency, PTEN deficiency was associated with10:

  • Shorter median overall survival (14 months versus 21 months; p=0.004)
  • Shorter median duration of abiraterone treatment (24 weeks versus 28 weeks; p=0.009)

Routine testing for PTEN deficiency can1,9,13:

Routine Testing for PTEN Deficiency

Identify more aggressive,
high-risk forms of mHSPC

Routine Testing for PTEN Deficiency

Inform early treatment approaches that may potentially delay progression to mCRPC and prolong survival

Clinical case studies

Explore real-world patient case studies on the application of PTEN deficiency as a measure of prognosis, and how this can impact clinical decision-making and patient outcomes.

Clinical Case Study by Dr Isla Garraway

Somatic tumor testing to identify PTEN deficiency

A clinical case study by Dr Isla Garraway

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Clinical Case Study by Dr Neal Shore

IHC and NGS to identify PTEN deficiency

A clinical case study by Dr Neal Shore

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Ongoing research into biomarker-driven approaches may help to refine precision-medicine strategies for PTEN-deficient mHSPC

Advancing understanding of how PTEN deficiency contributes to disease progression via the PI3K/AKT pathway may inform future personalized therapies for patients with PTEN-deficient mHSPC.2

PTEN alterations have been associated with a worse prognosis in patients with advanced prostate cancer. The ability to accurately identify and interpret these alterations offers the potential to tailor treatments more effectively and improve patient outcomes.

Dr Dana Rathkopf

Dr Dana Rathkopf,

Genitourinary Medical Oncologist

View bio

Key publications

Explore key publications to learn more about PTEN and the impact of PTEN status on clinical outcomes in metastatic prostate cancer.

Explore key publications
PTEN Key Publications

knowledge check

AKT, protein kinase B; mCRPC, metastatic castration-resistant prostate cancer; mHSPC, metastatic hormone-sensitive prostate cancer; OS, overall survival; PFS, progression-free survival; PI3K, phosphoinositide 3-kinase; PTEN, phosphatase and tensin homolog; RB1, retinoblastoma 1; TP53, tumor protein p53.

1. Zhang JY, et al. Asian J Androl. 2022;24(1):50–55; 2. Turnham DJ, et al. Cells. 2020;9(11):2342; 3. Ikeda S, et al. Cancer Biol Ther. 2019;20(2):219–226; 4. Brown JS, Banerji U. Pharmacol Ther. 2017;172:101–115; 5. Crumbaker M, et al. Cancer. 2017;9(4):34; 6. Watson AP, et al. Am J Clin Exp Urol. 2020;8(4):106–115; 7. Gonzalez Velez M, et al. Prostate Cancer Prostatic Dis. 2022;25:476–483; 8. Rathkopf D, et al. Presented at ASCO Annual Meeting; May 30-June 3, 2025; Chicago, IL. Poster 5096; 9. Jamaspishvili T, et al. Nat Rev Urol. 2018;15(4):222–234; 10. Ferraldeschi R, et al. Eur Urol. 2015;67(4):795–802; 11. Lotan TL, et al. Eur Urol Focus. 2016;2(2):180–188; 12. Al-Toubat M, et al. Urol Oncol. 2023;41(11):455.e7–455.e15; 13. Ryan CJ, et al. J Urol. 2021;206(6):1420–1429.