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1.
CNS Neurosci Ther ; 25(3): 375-385, 2019 03.
Article in English | MEDLINE | ID: mdl-30155986

ABSTRACT

AIMS: Neural stem cells (NSCs) in the adult mammalian spinal cord are activated in response to spinal cord injury (SCI); however, mechanisms modulating this process are not clear. Here, we noticed SCI elevated expression of vascular endothelial growth factor (VEGF) and we aimed to validate the roles of VEGF in NSCs activation after SCI and investigated the related signals during the process. METHODS: In vitro we detected whether VEGF promoted spinal cord NSCs proliferation and investigated the involved signals; In vivo, we injected VEGF into rat spinal cord to check the NSCs activation. RESULTS: In vitro, VEGF triggered spinal cord NSCs proliferation and maintained self-renewal. Further investigations demonstrated VEGF transactivated epidermal growth factor receptor (EGFR) through VEGF receptor 2 (VEGFR2) to promote spinal cord NSCs proliferation. In vivo, we injected VEGF into spinal cord by laminectomy to confirm the roles of VEGF-VEGFR2-EGFR signals in NSCs activation. VEGF significantly elevated the number of activated NSCs and increased EGFR phosphorylation. In contrast, intraspinal injection of specific inhibitors targeting EGFR and VEGFR2 decreased NSCs activation after SCI. Our results demonstrate that VEGF-VEGFR2-EGFR axis is important for NSCs activation after SCI, providing new insights into the mechanisms of spinal cord NSCs activation postinjury.


Subject(s)
ErbB Receptors/metabolism , Neural Stem Cells/metabolism , Spinal Cord Injuries/metabolism , Vascular Endothelial Growth Factor A/metabolism , Animals , Cell Proliferation/physiology , Cells, Cultured , Disease Models, Animal , Female , Rats, Sprague-Dawley , Signal Transduction , Spinal Cord/metabolism , Vascular Endothelial Growth Factor Receptor-2/metabolism
2.
Acta Biochim Biophys Sin (Shanghai) ; 36(8): 566-70, 2004 Aug.
Article in English | MEDLINE | ID: mdl-15295650

ABSTRACT

The t(8;21) translocation is one of the most frequent chromosome abnormalities in acute myeloid leukemia. This translocation creates a fusion between the acute myelogenous leukemia 1 (AML1, a transcription factor) gene on chromosome 21 and the eight-twenty-one (ETO, a zinc finger nuclear protein) gene on chromosome 8, leading to the repression of certain AML1 target genes. We cloned NHR3 domain coding fragment into vector pGEX-6p-1 using PCR and obtained recombinant plasmid pGEX-6p-1-NHR3, which can be induced to stably overexpress fusion protein in E. coli. Through the purification on GST affinity chromatography column and PreScission protease cleavage, a large amount of NHR3 protein with high purity was obtained. In order to avoid possible interference of some strong negative charged molecules, NHR3 protein was further purified by Mono Q anion exchange chromatography. The NHR3 crystals were grown with hanging drop/vapor diffusion method and the first crystals appeared after four weeks at 18 degrees in 0.2 M Tris-sodium citrate dihydrate, 0.1 M sodium cacodylate, pH 6.5, and 30% iso-propanol (V/V). ESI mass spectrum showed that the molecular weight of this domain was in agreement with its primary structure sequence prediction, and circular dichroism spectral data (190-250 nm) showed that NHR3 had a well-defined secondary structure of 25.9% alpha-helix, 23.2% random coil and 50.9% turn, which was consistent with GOV4 software prediction.


Subject(s)
Oncogene Proteins, Fusion/genetics , Oncogene Proteins, Fusion/isolation & purification , Transcription Factors/genetics , Transcription Factors/isolation & purification , Base Sequence , Circular Dichroism , Cloning, Molecular , Core Binding Factor Alpha 2 Subunit , Crystallization , DNA, Neoplasm/genetics , Gene Expression , Humans , Leukemia, Myeloid, Acute/genetics , Oncogene Proteins, Fusion/chemistry , Protein Structure, Tertiary , RUNX1 Translocation Partner 1 Protein , Spectrometry, Mass, Electrospray Ionization , Transcription Factors/chemistry
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