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TIAM1 drives prostatic branching phenotype and is a potential therapeutic target for benign prostatic hyperplasia
Hamed Khedmatgozar, Sayanika Dutta, Michael Dominguez, Murugananthkumar Raju, Girijesh Kumar Patel, Daniel Latour, Melanie K. Johnson, Mohamed Fokar, Irfan Warraich, Allan Haynes Jr., Barry J. Maurer, Werner de Riese, Luis Brandi, Robert J. Matusik, Srinivas Nandana, Manisha Tripathi
Hamed Khedmatgozar, Sayanika Dutta, Michael Dominguez, Murugananthkumar Raju, Girijesh Kumar Patel, Daniel Latour, Melanie K. Johnson, Mohamed Fokar, Irfan Warraich, Allan Haynes Jr., Barry J. Maurer, Werner de Riese, Luis Brandi, Robert J. Matusik, Srinivas Nandana, Manisha Tripathi
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Research Article Aging Cell biology

TIAM1 drives prostatic branching phenotype and is a potential therapeutic target for benign prostatic hyperplasia

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Abstract

Benign prostatic hyperplasia (BPH) is the most common urologic condition in elderly men, characterized by the reactivation of developmental programs such as prostatic budding and branching. However, the molecular mechanisms underlying this reactivation in BPH remain unclear. In this study, we identified T-lymphoma invasion and metastasis-inducing protein-1 (TIAM1) as a critical regulator of prostatic budding and branching. By generating an unbiased BPH transcriptomic signature from patient datasets, we discovered an upregulation of TIAM1, which was subsequently validated at the protein level. Functional assays using organoid cultures derived from human prostatic cell lines revealed that TIAM1 is essential for prostatic budding and branching. Additionally, the BPH transcriptomic signature identified NSC23766, a small molecule inhibitor of TIAM1/RAC1 signaling, as a therapeutic proof-of-concept agent for BPH. Genetic knockdown of TIAM1 in human prostatic cell lines markedly reduced organoid branching, an effect mirrored by administration of NSC23766. The translational relevance of these findings is underscored by the growth inhibition observed in patient-derived BPH organoids treated with NSC23766. In conclusion, our findings identify TIAM1 as a key driver of prostatic branching and growth, and they suggest that targeting TIAM1/RAC1 signaling could be a promising therapeutic strategy for BPH.

Authors

Hamed Khedmatgozar, Sayanika Dutta, Michael Dominguez, Murugananthkumar Raju, Girijesh Kumar Patel, Daniel Latour, Melanie K. Johnson, Mohamed Fokar, Irfan Warraich, Allan Haynes Jr., Barry J. Maurer, Werner de Riese, Luis Brandi, Robert J. Matusik, Srinivas Nandana, Manisha Tripathi

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Figure 4

TIAM1 is critical to the prostatic branching phenotype.

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TIAM1 is critical to the prostatic branching phenotype.
(A) Whole-mount ...
(A) Whole-mount IF staining of BHPrE1 organoids with basal cell marker (KRT5) and luminal cell marker (KRT8/18) on day 9 of culture. Original magnification, 20×. (B) qPCR analysis showing decreased mRNA expression of TIAM1 in BHPrE1shTIAM1 polyclonal (sh) and monoclonal colonies (indicated as 1–17) compared with BHPrE1NTSCR control cells; 1-way ANOVA was used. (C and D) Western blot and quantitative analysis showing decreased TIAM1 protein expression in BHPrE1shTIAM1 colonies 5 and 10 compared with BHPrE1NTSCR control cells. Each experiment was performed in 3 independent replicates; 1-way ANOVA was used. (E) WST-1 assay-based cell proliferation analysis showing a decrease in proliferation in BHPrE1shTIAM1 compared with BHPrE1 NTSCR control cells. n = 5; data are shown as mean ± SD. Unpaired 2-tailed Student’s t test was performed. **P < 0.01; ***P < 0.001; ****P < 0.0001. (F) Quantification of the number of branched organoids on day 12 formed from BHPrE1shTIAM1 cells compared with BHPrE1NTSCR control cells. n = 3, data are shown as mean ± SD. One-way ANOVA was performed. *P < 0.05; ****P < 0.0001. Each experiment was performed in 3 independent replicates. (G) Representative images taken on day 12 of organoids formed from BHPrE1shTIAM1 cells compared with organoids from BHPrE1NTSCR Scale bar: 100 μm. (H) Whole-mount IF staining of organoids from BHPrE1NTSCR cells stained for TIAM1 (red) and DAPI (blue) on day 15 at 10× and 60× original magnification. The top panel (3 images) was captured at 10× magnification. The bottom panel (3 images) was captured at 60× magnification. Scale bar: 50 μm and 100 μm. (I) Whole-mount IF staining of organoids formed from BHPrE1shTIAM1 #10 cells stained for TIAM1 (red) and DAPI (blue) on day 15 at 10× and 60× original magnification. The top panel (3 images) was captured at 10× magnification. The bottom panel (3 images) was captured at 60× magnification. Scale bar: 50 μm and 100 μm.

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