Identification and Validation of P311 as a Glioblastoma Invasion Gene Using Laser Capture Microdissection

L Mariani, WS McDonough, DB Hoelzinger, C Beaudry… - Cancer research, 2001 - AACR
L Mariani, WS McDonough, DB Hoelzinger, C Beaudry, E Kaczmarek, SW Coons, A Giese…
Cancer research, 2001AACR
The mRNA expression profiles from glioblastoma cells residing at the tumor core and
invasive rim of a human tumor resection were compared. From a single tumor specimen,
20,000 single cells from each region were collected by laser capture microdissection.
Differential expression of 50–60 cDNA bands was detected. One of the sequences
overexpressed by the invasive cells showed 99% homology to the P311 gene, the protein
product of which is reported to localize at focal adhesions. Relative overexpression of P311 …
Abstract
The mRNA expression profiles from glioblastoma cells residing at the tumor core and invasive rim of a human tumor resection were compared. From a single tumor specimen, 20,000 single cells from each region were collected by laser capture microdissection. Differential expression of 50–60 cDNA bands was detected. One of the sequences overexpressed by the invasive cells showed 99% homology to the P311 gene, the protein product of which is reported to localize at focal adhesions. Relative overexpression of P311 by invading glioblastoma cells compared with tumor core was confirmed by quantitative reverse transcription-PCR of six glioblastoma specimens after laser capture microdissection collection of rim and core cells. In vitro studies using antisense oligodeoxynucleotides and integrin activation confirmed the role of P311 in supporting migration of malignant glioma cells. Immunochemistry studies confirmed the presence of the P311 protein in tumor cells, particularly at the invasive edge of human glioblastoma specimens.
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