Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Data from CXC Receptor-1 Silencing Inhibits Androgen-Independent Prostate Cancer

View through CrossRef
<div>Abstract<p>The CXC receptor-1 (CXCR1) is a coreceptor for interleukin-8 (IL-8) and is expressed on both normal and tumor cells. The function of CXCR1 in prostate cancer was investigated by silencing its expression, using RNA interference. We established stable cell colonies of PC-3 cells, depleted of CXCR1, using lentiviral plasmids (pLK0.1<i>puro</i>) generating small hairpin RNA (shRNA) against CXCR1 mRNA. Stable shRNA transfectants (PLK1–PLK5) that express significantly reduced CXCR1 mRNA (≥90% down) and protein (≥43% down) or vector-only transfectants (PC-3V) were characterized. PLK cells showed reduced cell proliferation (down, ≥66%), due to cell cycle arrest at G<sub>1</sub>-S phase, decreases in Cyclin D1, CDK4, phosphorylated Rb, and extracellular signal-regulated kinase 1/2 levels compared with those in PC-3V cells. CXCR1 depletion lead to increases in spontaneous apoptosis by mitochondria-mediated intrinsic mechanism and increases in proapoptotic proteins (BAD, 40%; BAX, 12%), but decreases in antiapoptotic proteins (BCL2, down 38%; BCL<sub>xL</sub>, 20%). PLK2 cells grew as slow-growing tumors (decrease of 54%), compared with that of PC3V tumors in athymic mice. <i>Ex vivo</i> analyses of PLK2 tumor tissues showed reduced expression of Cyclin D1 and vascular endothelial growth factor, and increased apoptosis activity. Other IL-8–expressing prostate cancer cell lines also exhibited similar phenotypes when CXCR1 was depleted by CXCR1 shRNA transfection. In contrast to these cells, CXCR1 depletion had little effect on IL-8 ligand–deficient LNCaP cells. RNA interference rescue using mutated CXCR1 plasmids reversed the silencing effect of PLK2, thus demonstrating the specificity of phenotypic alteration by CXCR1 shRNA. These studies establish that CXCR1 promotes IL-8–mediated tumor growth. [Cancer Res 2009;69(21):8265–74]</p></div>
Title: Data from CXC Receptor-1 Silencing Inhibits Androgen-Independent Prostate Cancer
Description:
<div>Abstract<p>The CXC receptor-1 (CXCR1) is a coreceptor for interleukin-8 (IL-8) and is expressed on both normal and tumor cells.
The function of CXCR1 in prostate cancer was investigated by silencing its expression, using RNA interference.
We established stable cell colonies of PC-3 cells, depleted of CXCR1, using lentiviral plasmids (pLK0.
1<i>puro</i>) generating small hairpin RNA (shRNA) against CXCR1 mRNA.
Stable shRNA transfectants (PLK1–PLK5) that express significantly reduced CXCR1 mRNA (≥90% down) and protein (≥43% down) or vector-only transfectants (PC-3V) were characterized.
PLK cells showed reduced cell proliferation (down, ≥66%), due to cell cycle arrest at G<sub>1</sub>-S phase, decreases in Cyclin D1, CDK4, phosphorylated Rb, and extracellular signal-regulated kinase 1/2 levels compared with those in PC-3V cells.
CXCR1 depletion lead to increases in spontaneous apoptosis by mitochondria-mediated intrinsic mechanism and increases in proapoptotic proteins (BAD, 40%; BAX, 12%), but decreases in antiapoptotic proteins (BCL2, down 38%; BCL<sub>xL</sub>, 20%).
PLK2 cells grew as slow-growing tumors (decrease of 54%), compared with that of PC3V tumors in athymic mice.
<i>Ex vivo</i> analyses of PLK2 tumor tissues showed reduced expression of Cyclin D1 and vascular endothelial growth factor, and increased apoptosis activity.
Other IL-8–expressing prostate cancer cell lines also exhibited similar phenotypes when CXCR1 was depleted by CXCR1 shRNA transfection.
In contrast to these cells, CXCR1 depletion had little effect on IL-8 ligand–deficient LNCaP cells.
RNA interference rescue using mutated CXCR1 plasmids reversed the silencing effect of PLK2, thus demonstrating the specificity of phenotypic alteration by CXCR1 shRNA.
These studies establish that CXCR1 promotes IL-8–mediated tumor growth.
[Cancer Res 2009;69(21):8265–74]</p></div>.

Related Results

Abstract A6: Androgen receptor-mediated transcription is reprogrammed after hormone depletion
Abstract A6: Androgen receptor-mediated transcription is reprogrammed after hormone depletion
Abstract Androgen receptor (AR) is a ligand-induced transcription factor, which binds to thousands of genomic loci and activates a cell-type specific gene expression...
Abstract 4602: Clinicopathological and genetic features of prostate cancer in Algerian patients: First report
Abstract 4602: Clinicopathological and genetic features of prostate cancer in Algerian patients: First report
Abstract Background: Prostate cancer is the second most frequent malignancy (after lung cancer) in men worldwide. It is the third most common cancer in men in Algeri...
Abstract 520: Alteration of chemokine gene expression in PC-3 cells treated with NSAIDs
Abstract 520: Alteration of chemokine gene expression in PC-3 cells treated with NSAIDs
Abstract Background: The role of chronic inflammation for developing prostate cancer and its progression to metastasis is supported by increasing evidence. Among ...
Abstract 2902: Assays for androgen receptor activity using cell based ARE reporter systems
Abstract 2902: Assays for androgen receptor activity using cell based ARE reporter systems
Abstract The androgen receptor (AR) transcription factor plays a key role in the development and progression of prostate cancer. Inhibition of its ligand by androgen...
Abstract 354: Monitor androgen blockade therapy with functional androgen receptor reporting system
Abstract 354: Monitor androgen blockade therapy with functional androgen receptor reporting system
Abstract Hormonal manipulation remains the first line treatment for advanced prostate cancer. It includes surgical and medical means of androgen deprivation and andr...
Abstract 5758: Deletions of olfactomedin 4 gene is associated with progression of prostate cancer
Abstract 5758: Deletions of olfactomedin 4 gene is associated with progression of prostate cancer
Abstract The human olfactomedin 4 gene (OLFM4) encodes an olfactomedin-related glycoprotein, which our group first cloned and characterized in myeloid cells and mapp...
Abstract 1568: The role of CCL2 CCL17 CCL22-CCR4 axis in prostate cancer metastasis
Abstract 1568: The role of CCL2 CCL17 CCL22-CCR4 axis in prostate cancer metastasis
Abstract BACKGROUND: Multiple steps and factors are involved in prostate carcinogenesis and tumor progression. The early studies have found that tumor-associated mac...
Abstract 1589: Zinc inhibits androgen receptor expression to inhibit prostate cancer cell growth
Abstract 1589: Zinc inhibits androgen receptor expression to inhibit prostate cancer cell growth
Abstract Background: Prostate gland contains high level of intracellular zinc which is dramatically diminished during cancer development. Due to the obscure role of ...

Back to Top