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

Adhesion-dependent Skp2 transcription requires selenocysteine tRNA gene transcription-activating factor (STAF)

View through CrossRef
Cell adhesion is essential for cell cycle progression in most normal cells. Loss of adhesion dependence is a hallmark of cellular transformation. The F-box protein Skp2 (S-phase kinase-associated protein 2) controls G1–S-phase progression and is subject to adhesion-dependent transcriptional regulation, although the mechanisms are poorly understood. We identify two cross-species conserved binding elements for the STAF (selenocysteine tRNA gene transcription-activating factor) in the Skp2 promoter that are essential for Skp2 promoter activity. Endogenous STAF specifically binds these elements in EMSA (electrophoretic mobility-shift assay) and ChIP (chromatin immunoprecipitation) analysis. STAF is sufficient and necessary for Skp2 promoter activity since exogenous STAF activates promoter activity and expression and STAF siRNA (small interfering RNA) inhibits Skp2 promoter activity, mRNA and protein expression and cell proliferation. Furthermore, ectopic Skp2 expression completely reverses the inhibitory effects of STAF silencing on proliferation. Importantly, STAF expression and binding to the Skp2 promoter is adhesion-dependent and associated with adhesion-dependent Skp2 expression in non-transformed cells. Ectopic STAF rescues Skp2 expression in suspension cells. Taken together, these results demonstrate that STAF is essential and sufficient for Skp2 promoter activity and plays a role in the adhesion-dependent expression of Skp2 and ultimately cell proliferation.
Title: Adhesion-dependent Skp2 transcription requires selenocysteine tRNA gene transcription-activating factor (STAF)
Description:
Cell adhesion is essential for cell cycle progression in most normal cells.
Loss of adhesion dependence is a hallmark of cellular transformation.
The F-box protein Skp2 (S-phase kinase-associated protein 2) controls G1–S-phase progression and is subject to adhesion-dependent transcriptional regulation, although the mechanisms are poorly understood.
We identify two cross-species conserved binding elements for the STAF (selenocysteine tRNA gene transcription-activating factor) in the Skp2 promoter that are essential for Skp2 promoter activity.
Endogenous STAF specifically binds these elements in EMSA (electrophoretic mobility-shift assay) and ChIP (chromatin immunoprecipitation) analysis.
STAF is sufficient and necessary for Skp2 promoter activity since exogenous STAF activates promoter activity and expression and STAF siRNA (small interfering RNA) inhibits Skp2 promoter activity, mRNA and protein expression and cell proliferation.
Furthermore, ectopic Skp2 expression completely reverses the inhibitory effects of STAF silencing on proliferation.
Importantly, STAF expression and binding to the Skp2 promoter is adhesion-dependent and associated with adhesion-dependent Skp2 expression in non-transformed cells.
Ectopic STAF rescues Skp2 expression in suspension cells.
Taken together, these results demonstrate that STAF is essential and sufficient for Skp2 promoter activity and plays a role in the adhesion-dependent expression of Skp2 and ultimately cell proliferation.

Related Results

High Skp2/Low p57 Kip2 Expression is Associated with Poor Prognosis in Human Breast Carcinoma
High Skp2/Low p57 Kip2 Expression is Associated with Poor Prognosis in Human Breast Carcinoma
Downregulation of p57 Kip2 is involved in tumor progression, and S-phase kinase-associated protein 2 (Skp2) is an E3 ligase that regulates a...
Abstract 1805: LSD1 regulation of SKP2 expression in prostate cancer.
Abstract 1805: LSD1 regulation of SKP2 expression in prostate cancer.
Abstract Prostate carcinogenesis is a complicated process involving both genetic and epigenetic changes. Aberrant expression of LSD1 (Lysine-specific demethylase 1) ...
Dissection of the APCCdh1-Skp2 Cascade in Breast Cancer
Dissection of the APCCdh1-Skp2 Cascade in Breast Cancer
Abstract Purpose: Skp2 is a subunit of the SCF ubiquitin protein ligase, which plays a vital role in the control of tumorigenesis via its regulation of G1-S transiti...
Identification of tRNAs incorporated into wild-type and mutant human immunodeficiency virus type 1
Identification of tRNAs incorporated into wild-type and mutant human immunodeficiency virus type 1
We have identified the tRNAs which are incorporated into both wild-type human immunodeficiency virus type 1 strain IIIB (HIV-1IIIB) produced in COS-7 cells transfected with HIV-1 p...
ANALISIS PERTIMBANGAN MAHKAMAH AGUNG DALAM MENGABULKAN KASASI TERDAKWA (STUDI PUTUSAN NOMOR 2959/K/PID.SUS/2022)
ANALISIS PERTIMBANGAN MAHKAMAH AGUNG DALAM MENGABULKAN KASASI TERDAKWA (STUDI PUTUSAN NOMOR 2959/K/PID.SUS/2022)
<p><em><span class="markedContent"><span style="left: calc(var(--scale-factor)*195.53px); top: calc(var(--scale-factor)*496.87px); font-size: calc(var(--scale-...
A tRNA modification in Mycobacterium tuberculosis facilitates optimal intracellular growth
A tRNA modification in Mycobacterium tuberculosis facilitates optimal intracellular growth
Abstract Diverse chemical modifications fine-tune the function and metabolism of tRNA. Although tRNA modification is universal in all kingdoms of life, profiles of ...

Back to Top