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Target Concepts:
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Query: UMLS:C0376358 (
prostate cancer
)
59,338
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The androgen receptor (AR) signaling pathway plays a crucial role in the development and growth of prostate malignancies. Regulation of AR homeostasis in prostate tumorigenesis has not yet been fully characterized. In this study, we demonstrate that
p21-activated kinase 6
(
PAK6
) inhibits prostate tumorigenesis by regulating AR homeostasis. First, we demonstrated that in normal prostate epithelium, AR co-localizes with
PAK6
in the cytoplasm and translocates into the nucleus in malignant prostate. Furthermore, AR phosphorylation at Ser-578 by
PAK6
promotes AR-E3 ligase murine double minute-2 (Mdm2) association, causing AR degradation upon androgen stimuli. We also showed that
PAK6
phosphorylates Mdm2 on Thr-158 and Ser-186, which is critical for AR ubiquitin-mediated degradation. Moreover, we found that Thr-158 collaborates with Ser-186 for AR-Mdm2 association and AR ubiquitin-mediated degradation as it facilitates
PAK6
-mediated AR homeostasis.
PAK6
knockdown promotes prostate tumor growth in vivo. Interestingly, we found a strong inverse correlation between
PAK6
and AR expression in the cytoplasm of
prostate cancer
cells. These observations indicate that
PAK6
may be important for the maintenance of androgen-induced AR signaling homeostasis and in prostate malignancy, as well as being a possible new therapeutic target for AR-positive and hormone-sensitive
prostate cancer
.
...
PMID:p21-Activated kinase 6 (PAK6) inhibits prostate cancer growth via phosphorylation of androgen receptor and tumorigenic E3 ligase murine double minute-2 (Mdm2). 2393 Dec 36
A
p21-activated kinase 6
(
PAK6
) was previously identified to be an androgen receptor (AR) interacting protein through a yeast two-hybrid screening. We used hormone responsive
prostate cancer
LAPC4 and LNCap cell lines as models to study the signaling events associated with androgen stimulation and
PAK6
. An androgen-stimulated
PAK6
kinase activation was observed in LAPC4 cells expressing endogenous
PAK6
and in LNCap cells ectopically expressing a wild type
PAK6
. This activation was likely mediated through a direct interaction between AR and
PAK6
since siRNA knock-down of AR in LAPC4 cells downregulated androgen-stimulated
PAK6
activation. In addition, LNCap cells expressing a non-AR-interacting
PAK6
mutant exhibited dampened androgen-stimulated kinase activation. As a consequence of androgen-stimulated activation,
PAK6
was phosphorylated at multiple serine/threonine residues including the AR-interacting domain of
PAK6
. Furthermore, androgen-stimulation promoted
prostate cancer
cell motility and invasion were demonstrated in LNCap cells ectopically expressing
PAK6
-WT. In contrast, LNCap expressing non-AR-interacting mutant
PAK6
did not respond to androgen stimulation with increased cell motility and invasion. Our results demonstrate that androgen-stimulated
PAK6
activation is mediated through a direct interaction between AR and
PAK6
and
PAK6
activation promotes
prostate cancer
cells motility and invasion.
...
PMID:Direct interaction between AR and PAK6 in androgen-stimulated PAK6 activation. 2413 Aug 78
Here we found that levels of miR-23a were decreased in
prostate cancer
cell lines and tumor tissues. These low levels were associated with poor patients' prognosis. MiR-23a inhibited migration and invasion of
prostate cancer
in vivo and in orthotopic
prostate cancer
mice model. MiR-23a decreased levels of
p21-activated kinase 6
(
PAK6
). Expression of miR-23a inhibited phosphorylation of LIM kinase 1 (LIMK1) and cofilin, in turn suppressing formation of stress fibers and actin filaments, which was required for cell motility and invasion.
PAK6
bound to LIMK1 and activated it via phosphorylation at Thr-508. Also,
PAK6
and LIMK1 were colocalized in the cytoplasma. Thus, miR-23a regulated cytoskeleton by affecting LIMK1 and cofilin. In summary, we have identified the miR-23a-
PAK6
-LIMK1 pathway of
prostate cancer
metastasis. Potential therapeutic approach by targeting miR-23 is suggested.
...
PMID:Downregulation of microRNA-23a suppresses prostate cancer metastasis by targeting the PAK6-LIMK1 signaling pathway. 2571 10