LIVIVO - Das Suchportal für Lebenswissenschaften

switch to English language
Erweiterte Suche

Ihre letzten Suchen

  1. TI=TRPM7 regulates vascular endothelial cell adhesion and tube formation
  2. AU="Vivek Govind Kumar"

Suchergebnis

Treffer 1 - 1 von insgesamt 1

Suchoptionen

Artikel ; Online: TRPM7 regulates vascular endothelial cell adhesion and tube formation.

Zeng, Zhao / Inoue, Koichi / Sun, Huawei / Leng, Tiandong / Feng, Xuechao / Zhu, Li / Xiong, Zhi-Gang

American journal of physiology. Cell physiology

2014  Band 308, Heft 4, Seite(n) C308–18

Abstract: ... and tube formation of vascular endothelial cells and the potential underlying mechanism. We showed ... cell surface area and inhibits cell adhesion to Matrigel. Silencing TRPM7 also promotes cell migration ... in human umbilical vein endothelial cells (HUVECs). Here we investigated the potential effects of TRPM7 on morphology, adhesion, migration ...

Abstract Transient receptor potential melastatin 7 (TRPM7) is a nonselective cation channel with an α-kinase domain in its COOH terminal, known to play a role in diverse physiological and pathological processes such as Mg2+ homeostasis, cell proliferation, and hypoxic neuronal injury. Increasing evidence suggests that TRPM7 contributes to the physiology/pathology of vascular systems. For example, we recently demonstrated that silencing TRPM7 promotes growth and proliferation and protects against hyperglycemia-induced injury in human umbilical vein endothelial cells (HUVECs). Here we investigated the potential effects of TRPM7 on morphology, adhesion, migration, and tube formation of vascular endothelial cells and the potential underlying mechanism. We showed that inhibition of TRPM7 function in HUVECs by silencing TRPM7 decreases the density of TRPM7-like current and cell surface area and inhibits cell adhesion to Matrigel. Silencing TRPM7 also promotes cell migration, wound healing, and tube formation. Further studies showed that the extracellular signal-regulated kinase (ERK) pathway is involved in the change of cell morphology and the increase in HUVEC migration induced by TRPM7 silencing. We also demonstrated that silencing TRPM7 enhances the phosphorylation of myosin light chain (MLC) in HUVECs, which might be involved in the enhancement of cell contractility and motility. Collectively, our data suggest that the TRPM7 channel negatively regulates the function of vascular endothelial cells. Further studies on the underlying mechanism may facilitate the development of the TRPM7 channel as a target for the therapeutic intervention of vascular diseases.
Mesh-Begriff(e) Cell Adhesion ; Cell Movement ; Cell Shape ; HEK293 Cells ; Human Umbilical Vein Endothelial Cells/metabolism ; Humans ; Membrane Potentials ; Myosin Light Chains/metabolism ; Neovascularization, Physiologic ; Phosphorylation ; Protein-Serine-Threonine Kinases ; RNA Interference ; Signal Transduction ; TRPM Cation Channels/genetics ; TRPM Cation Channels/metabolism ; Transfection ; Wound Healing
Chemische Substanzen Myosin Light Chains ; TRPM Cation Channels ; Protein-Serine-Threonine Kinases (EC 2.7.11.1) ; TRPM7 protein, human (EC 2.7.11.1)
Sprache Englisch
Erscheinungsdatum 2014-12-03
Erscheinungsland United States
Dokumenttyp Journal Article ; Research Support, N.I.H., Extramural ; Research Support, Non-U.S. Gov't
ZDB-ID 392098-7
ISSN 1522-1563 ; 0363-6143
ISSN (online) 1522-1563
ISSN 0363-6143
DOI 10.1152/ajpcell.00275.2013
Signatur
Uc I Zs.89: Hefte anzeigen Standort:
Je nach Verfügbarkeit (siehe Angabe bei Bestand)
bis Jg. 2021: Bestellungen von Artikeln über das Online-Bestellformular
ab Jg. 2022: Lesesaal (EG)
Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

Zusatzmaterialien

Kategorien

Zum Seitenanfang