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Published on: December 14, 2017
Phosphorylated KDR can be located in the nucleus of neoplastic cells
Cristina Blazquez1, Nathan Cook, Kingsley Micklem
1Departamento de Bioquimica y Biologia Molecular I, Facultad de Biologia, Universidad Complutense de Madrid, Ciudad Universitaria, Madrid 28040, Espania, Spain.
Abstract:
KDR (kinase insert domain receptor) phosphorylation induces several effects which lead eventually to cell proliferation and survival. The precise mechanisms by which KDR, once it is activated, communicates with the nucleus are starting to be understood but have not yet been completely unravelled. Two in vitro studies on animal cell lines reported in the literature have demonstrated that, following stimulation with VEGF, KDR is actually translocated within the nucleus. Our aim was to investigate whether this translocation occurs in human cells both in vitro and in vivo. Using laser scanning confocal microscopy, a variable nuclear localization of phosphorylated and total KDR in cell lines and tumour samples was found. In human neoplastic cell lines, hypoxic stimulation greatly increased the nuclear amount of total KDR but less so that of the phosphorylated form. Only after hypoxia and VEGF stimulation there was a comparably increased expression of phosphorylated and total KDR observed in the nuclei of these cells. We conclude that neoplastic cells show a variable expression of total and phosphorylated KDR in the nucleus. The precise functional meaning of nuclear location remains to be established.
Insights
Kinase insert domain receptor (KDR) nuclear translocation occurs in human cells. Its nuclear levels, particularly phosphorylated KDR, are influenced by hypoxia and VEGF, but its function remains unclear.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Kinase insert domain receptor (KDR) phosphorylation is crucial for cell proliferation and survival.
- The mechanisms of KDR nuclear communication after activation are not fully understood.
- Previous studies showed KDR nuclear translocation in animal cell lines upon VEGF stimulation.
Purpose of the Study:
- To investigate KDR nuclear translocation in human cells, both in vitro and in vivo.
- To determine the effects of hypoxia and VEGF on KDR nuclear localization in human neoplastic cells.
Main Methods:
- Laser scanning confocal microscopy was employed.
- Human neoplastic cell lines and tumor samples were analyzed.
- Cells were subjected to hypoxic and VEGF stimulation.
Main Results:
- Variable nuclear localization of total and phosphorylated KDR was observed in human cell lines and tumor samples.
- Hypoxic stimulation increased nuclear KDR, particularly the total form, in human neoplastic cells.
- Combined hypoxia and VEGF stimulation led to comparable increases in nuclear phosphorylated and total KDR.
Conclusions:
- Neoplastic cells exhibit variable nuclear expression of total and phosphorylated KDR.
- The functional significance of KDR's nuclear localization requires further investigation.
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