Javascript must be enabled to continue!
Data from The Peptidyl-Prolyl Isomerase Pin1 Regulates Cytokinesis through Cep55
View through CrossRef
<div>Abstract<p>Failure of cytokinesis results in tetraploidy and can increase the genomic instability frequently observed in cancer. The peptidyl-prolyl isomerase Pin1, which is deregulated in many tumors, regulates several processes, including cell cycle progression. Here, we show a novel role for Pin1 in cytokinesis. Pin1 knockout mouse embryonic fibroblasts show a cytokinesis delay, and depletion of Pin1 from HeLa cells also causes a cytokinesis defect. Furthermore, we provide evidence that Pin1 localizes to the midbody ring and regulates the final stages of cytokinesis by binding to centrosome protein 55 kDa (Cep55), an essential component of this ring. This interaction induces Polo-like kinase 1–mediated phosphorylation of Cep55, which is critical for the function of Cep55 during cytokinesis. Importantly, Pin1 knockdown does not enhance the cytokinesis defect in Cep55-depleted cells, indicating that Pin1 and Cep55 act in the same pathway. These data are the first evidence that Pin1 regulates cytokinesis and may provide a mechanistic explanation as to how pathologic levels of Pin1 can stimulate tumorigenesis. [Cancer Res 2009;69(16):6651–9]</p></div>
Title: Data from The Peptidyl-Prolyl Isomerase Pin1 Regulates Cytokinesis through Cep55
Description:
<div>Abstract<p>Failure of cytokinesis results in tetraploidy and can increase the genomic instability frequently observed in cancer.
The peptidyl-prolyl isomerase Pin1, which is deregulated in many tumors, regulates several processes, including cell cycle progression.
Here, we show a novel role for Pin1 in cytokinesis.
Pin1 knockout mouse embryonic fibroblasts show a cytokinesis delay, and depletion of Pin1 from HeLa cells also causes a cytokinesis defect.
Furthermore, we provide evidence that Pin1 localizes to the midbody ring and regulates the final stages of cytokinesis by binding to centrosome protein 55 kDa (Cep55), an essential component of this ring.
This interaction induces Polo-like kinase 1–mediated phosphorylation of Cep55, which is critical for the function of Cep55 during cytokinesis.
Importantly, Pin1 knockdown does not enhance the cytokinesis defect in Cep55-depleted cells, indicating that Pin1 and Cep55 act in the same pathway.
These data are the first evidence that Pin1 regulates cytokinesis and may provide a mechanistic explanation as to how pathologic levels of Pin1 can stimulate tumorigenesis.
[Cancer Res 2009;69(16):6651–9]</p></div>.
Related Results
Data from The Peptidyl-Prolyl Isomerase Pin1 Regulates Cytokinesis through Cep55
Data from The Peptidyl-Prolyl Isomerase Pin1 Regulates Cytokinesis through Cep55
<div>Abstract<p>Failure of cytokinesis results in tetraploidy and can increase the genomic instability frequently observed in cancer. The peptidyl-prolyl isomerase Pin1...
Cancer-testis antigen CEP55 serves as a prognostic biomarker and is correlated with immune infiltration and immunotherapy efficacy in pan-cancer
Cancer-testis antigen CEP55 serves as a prognostic biomarker and is correlated with immune infiltration and immunotherapy efficacy in pan-cancer
Background: Centrosomal Protein 55 (CEP55) was initially described as a main participant in the final stage of cytokinesis. Further research identified CEP55 as a cancer-testis ant...
PIN1 expression contributes to hepatic carcinogenesis
PIN1 expression contributes to hepatic carcinogenesis
AbstractThe phospho‐Ser/Thr‐Pro specific prolyl‐isomerase PIN1 is over‐expressed in more than 50% of hepatocellular carcinomas (HCCs). To investigate its potential oncogenicity, we...
PIN1-Independent Leaf Initiation in Arabidopsis
PIN1-Independent Leaf Initiation in Arabidopsis
AbstractPhyllotaxis, the regular arrangement of leaves and flowers around the stem, is a key feature of plant architecture. Current models propose that the spatiotemporal regulatio...
Localization of caldesmon and its dephosphorylation during cell division.
Localization of caldesmon and its dephosphorylation during cell division.
Mitosis-specific phosphorylation by cdc2 kinase causes nonmuscle caldesmon to dissociate from microfilaments during prometaphase. (Yamashiro, S., Y. Yamakita, R. Ishikawa, and F. M...
The Reduction of JunB Inhibits the Odontogenic Differentiation Potential of the DPSCs by Targeting PIN1 in Pulpitis
The Reduction of JunB Inhibits the Odontogenic Differentiation Potential of the DPSCs by Targeting PIN1 in Pulpitis
Abstract
Pulpitis is an inflammatory condition that can lead to the loss of tooth vitality. The odontogenic differentiation potential of the dental pulp stem cells (DPSCs) ...
Drop-off-reinitiation triggered by EF-G-driven mistranslocation and its alleviation by EF-P
Drop-off-reinitiation triggered by EF-G-driven mistranslocation and its alleviation by EF-P
Abstract
In ribosomal translation, peptidyl transfer occurs between P-site peptidyl-tRNA and A-site aminoacyl-tRNA, followed by translocation of the resulting P-site...
Triosephosphate isomerase and peroxiredoxin 6, two novel serum markers for human lung squamous cell carcinoma
Triosephosphate isomerase and peroxiredoxin 6, two novel serum markers for human lung squamous cell carcinoma
There is currently substantial interest in the identification of human tumor antigens for the diagnosis and immunotherapy of cancer. In our previous study, secretion character and ...

