Javascript must be enabled to continue!
Transcription Factor SOX18 Is Expressed in Human Coronary Atherosclerotic Lesions and Regulates DNA Synthesis and Vascular Cell Growth
View through CrossRef
Objective—
SOX18
, a member of the
SOX
gene family (SRY-like 3-hydroxy-3-methylglutaryl box gene), is a transcription factor expressed in the development of blood vessels during embryogenesis. We analyzed SOX18 expression in human coronary atherosclerotic lesions and investigated its potential function in vascular cells.
Methods and Results—
In advanced human coronary atherosclerotic lesions, SOX18 immunostaining was localized in endothelial cells (on the luminal surface, in vasa vasorum, and in intimal neovessels) and in vascular smooth muscle cells (VSMCs) scattered in the intima, colocalizing with proliferating cell nuclear antigen. In cell cultures, SOX18 was mainly localized in subconfluent and denuded areas. Significant
SOX18
mRNA levels (by Northern blot analysis and reverse transcription–polymerase chain reaction) were detected in cell cultures from human umbilical vein endothelial cells and human VSMCs. Antisense
SOX18
inhibited DNA synthesis ([
3
H]thymidine incorporation) and vascular cell growth. Antisense
SOX18
also significantly reduced VSMC regrowth after injury in an in vitro model of wound repair.
Conclusions—
Our results indicate that SOX18 is involved in vascular cell growth and suggest that this transcription factor may play a role in atherosclerosis.
Ovid Technologies (Wolters Kluwer Health)
Title: Transcription Factor SOX18 Is Expressed in Human Coronary Atherosclerotic Lesions and Regulates DNA Synthesis and Vascular Cell Growth
Description:
Objective—
SOX18
, a member of the
SOX
gene family (SRY-like 3-hydroxy-3-methylglutaryl box gene), is a transcription factor expressed in the development of blood vessels during embryogenesis.
We analyzed SOX18 expression in human coronary atherosclerotic lesions and investigated its potential function in vascular cells.
Methods and Results—
In advanced human coronary atherosclerotic lesions, SOX18 immunostaining was localized in endothelial cells (on the luminal surface, in vasa vasorum, and in intimal neovessels) and in vascular smooth muscle cells (VSMCs) scattered in the intima, colocalizing with proliferating cell nuclear antigen.
In cell cultures, SOX18 was mainly localized in subconfluent and denuded areas.
Significant
SOX18
mRNA levels (by Northern blot analysis and reverse transcription–polymerase chain reaction) were detected in cell cultures from human umbilical vein endothelial cells and human VSMCs.
Antisense
SOX18
inhibited DNA synthesis ([
3
H]thymidine incorporation) and vascular cell growth.
Antisense
SOX18
also significantly reduced VSMC regrowth after injury in an in vitro model of wound repair.
Conclusions—
Our results indicate that SOX18 is involved in vascular cell growth and suggest that this transcription factor may play a role in atherosclerosis.
Related Results
Effect of Sox18 on the Induction Ability of Dermal Papilla Cells in Hu Sheep
Effect of Sox18 on the Induction Ability of Dermal Papilla Cells in Hu Sheep
Sox18 is a developmental gene that encodes transcription factors. It has been indicated as be a key gene affecting the growth and development of hair follicles, in which dermal pap...
Data from Transcription Factor SOX18 Promotes Clear Cell Renal Cell Carcinoma Progression and Alleviates Cabozantinib-Mediated Inhibitory Effects
Data from Transcription Factor SOX18 Promotes Clear Cell Renal Cell Carcinoma Progression and Alleviates Cabozantinib-Mediated Inhibitory Effects
<div>Abstract<p>The transcription factor SOX18, which was initially discovered as an activator of genetic transcription during embryogenesis, is now implicated in many ...
Data from Transcription Factor SOX18 Promotes Clear Cell Renal Cell Carcinoma Progression and Alleviates Cabozantinib-Mediated Inhibitory Effects
Data from Transcription Factor SOX18 Promotes Clear Cell Renal Cell Carcinoma Progression and Alleviates Cabozantinib-Mediated Inhibitory Effects
<div>Abstract<p>The transcription factor SOX18, which was initially discovered as an activator of genetic transcription during embryogenesis, is now implicated in many ...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
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-...
SLC12A5 interacts and enhances SOX18 activity to promote bladder urothelial carcinoma progression via upregulating MMP7
SLC12A5 interacts and enhances SOX18 activity to promote bladder urothelial carcinoma progression via upregulating MMP7
AbstractSolute carrier family 12 member 5 (SLC12A5) has an oncogenic role in bladder urothelial carcinoma. The present study aimed to characterize the molecular mechanisms of SLC12...
Supplementary Figures S1-S5 from Transcription Factor SOX18 Promotes Clear Cell Renal Cell Carcinoma Progression and Alleviates Cabozantinib-Mediated Inhibitory Effects
Supplementary Figures S1-S5 from Transcription Factor SOX18 Promotes Clear Cell Renal Cell Carcinoma Progression and Alleviates Cabozantinib-Mediated Inhibitory Effects
<p>Figure S1 shows the role of SOX18 on ccRCC cell growth. Figure S2 shows the analysis of RNA-seq and the effect of SOX18 on protein expression and cell apoptosis. Figure S3...

