Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Differential gene expression during capillary morphogenesis in 3D collagen matrices

作者:Scott E. Bell, Anil Mavila, René Salazar, Kayla J. Bayless, Suhasini Kanagala, Steven A. Maxwell, George E. Davis · 发表于:Journal of Cell Science · 年份:2001 · DOI:10.1242/jcs.114.15.2755 · 被引用次数:399 · 研究领域:Cellular Mechanics and Interactions、Cell Adhesion Molecules Research、3D Printing in Biomedical Research

We have performed a screening analysis of differential gene expression using a defined in vitro model of human capillary tube formation. Gene array, differential display and cDNA library screening were used to identify both known and novel differentially expressed genes. Major findings include: the upregulation and functional importance of genes associated with basement membrane matrix assembly; the upregulation of growth factors, transcription factors, anti-apoptotic factors, markers of endothelial cell differentiation, JAK-STAT signalling molecules, adhesion receptors, proteinase inhibitors and actin regulatory proteins; and expression changes consistent with inhibition of cell cycle progression, increased cholesterol biosynthesis, decreased ubiquitin-proteasome mediated degradation, and activation of G-protein signaling pathways. Using DNA microarray analysis, the most induced genes at 8, 24 and 48 hours compared with those at 0 hours were jagged-1, stanniocalcin and angiopoietin-2, whereas the most repressed genes were connective tissue growth factor, fibulin-3 and RGS-5. In addition, the full length coding sequence of two novel regulated capillary morphogenesis genes (CMGs) are presented. CMG-1 encodes a predicted intracellular 65 kDa protein with coiled-coil domains. A CMG-1-green fluorescent protein (GFP) chimera was observed to target to an intracellular vesicular compartment. A second novel gene, CMG-2, was found to encode a predicted intracellular protein of 45 kDa ...