Literature DB >> 15735731

Retinoic acid stabilizes p27Kip1 in EBV-immortalized lymphoblastoid B cell lines through enhanced proteasome-dependent degradation of the p45Skp2 and Cks1 proteins.

Paola Zancai1, Jessica Dal Col, Sara Piccinin, Massimo Guidoboni, Roberta Cariati, Silvana Rizzo, Mauro Boiocchi, Roberta Maestro, Riccardo Dolcetti.   

Abstract

Retinoic acid (RA) arrests the growth of EBV-immortalized lymphoblastoid B cell lines (LCLs) by upregulating the cyclin-dependent kinase inhibitor p27Kip1. Here, we show that in LCLs, RA inhibits ubiquitination and proteasome-dependent degradation of p27Kip1, a phenomenon that is associated with downregulation of Thr187 phosphorylation of the protein, whereas the phosphorylation on Ser10 is unaffected. Furthermore, we demonstrate that RA downregulates the expression of the p45Skp2 and Cks1 proteins, two essential components of the SCF(Skp2) ubiquitin ligase complex that target p27Kip1 for degradation. Downregulation of p45Skp2)and Cks1 occurs before the onset of growth arrest and is due to enhanced proteasome-mediated proteolysis of these proteins. Moreover, overexpression of p45Skp2 in DG75 cells prevents p27Kip1 protein accumulation and promotes resistance to the antiproliferative effects of RA. Treatment with Leptomycin B (LMB) blocked the translocation of p27Kip1 to the cytoplasm and prevented its degradation, indicating that CRM1-dependent nuclear export is required for p27Kip1 degradation. The shuttle protein p38Jab1, however, does not accumulate in the nucleus upon LMB treatment, nor does it interact with p27Kip1. Conversely, p45Skp2 is associated with p27Kip1 both in the nucleus and in the cytoplasm, accumulating within the nuclei after exposure to LMB and co-localizing with the exportin CRM1, suggesting a possible involvement of p45Skp2 in CRM1-dependent nuclear export of p27Kip1. These results indicate that downregulation of p45Skp2 is a key element underlying RA-induced p27Kip1 stabilization in B cells, resulting in an impaired targeting of the protein to the ubiquitin-proteasome pathway and probably contributing to the nuclear accumulation of p27Kip1.

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Year:  2005        PMID: 15735731     DOI: 10.1038/sj.onc.1208458

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  8 in total

1.  Transcriptional downregulation of p27KIP1 through regulation of E2F function during LMP1-mediated transformation.

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2.  The retinoid X receptor agonist, 9-cis UAB30, inhibits cutaneous T-cell lymphoma proliferation through the SKP2-p27kip1 axis.

Authors:  Chu-Fang Chou; Yu-Hua Hsieh; Clinton J Grubbs; Venkatram R Atigadda; James A Mobley; Reinhard Dummer; Donald D Muccio; Isao Eto; Craig A Elmets; W Timothy Garvey; Pi-Ling Chang
Journal:  J Dermatol Sci       Date:  2018-03-15       Impact factor: 4.563

3.  Effect of all-trans retinoic acid on the differentiation of U87 glioma stem/progenitor cells.

Authors:  Zhe Shi; Meiqing Lou; Yaodong Zhao; Quanbin Zhang; Daming Cui; Ke Wang
Journal:  Cell Mol Neurobiol       Date:  2013-07-13       Impact factor: 5.046

4.  PI3K/AKT and ERK regulate retinoic acid-induced neuroblastoma cellular differentiation.

Authors:  Jingbo Qiao; Pritha Paul; Sora Lee; Lan Qiao; Erlena Josifi; Joshua R Tiao; Dai H Chung
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Review 5.  Novel functions for the anaphase-promoting complex in neurobiology.

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Journal:  Semin Cell Dev Biol       Date:  2011-03-23       Impact factor: 7.727

6.  Novel second-generation rexinoid induces growth arrest and reduces cancer cell stemness in human neuroblastoma patient-derived xenografts.

Authors:  Raoud Marayati; Laura V Bownes; Colin H Quinn; Nikita Wadhwani; Adele P Williams; Hooper R Markert; Venkatram Atigadda; Jamie M Aye; Jerry E Stewart; Karina J Yoon; Elizabeth A Beierle
Journal:  J Pediatr Surg       Date:  2021-02-24       Impact factor: 2.549

7.  Cks1: Structure, Emerging Roles and Implications in Multiple Cancers.

Authors:  Vinayak Khattar; Jaideep V Thottassery
Journal:  J Cancer Ther       Date:  2013-10-01

Review 8.  Loss of cks1 homeostasis deregulates cell division cycle.

Authors:  Anand Krishnan; S Asha Nair; M Radhakrishna Pillai
Journal:  J Cell Mol Med       Date:  2009-02-17       Impact factor: 5.310

  8 in total

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