Expression of stem cell factor and c-kit in human neuroblastoma Journal Article


Authors: Cohen, P. S.; Chan, J. P.; Lipkunskaya, M.; Biedler, J. L.; Seeger, R. C.; the Children's Cancer Group
Article Title: Expression of stem cell factor and c-kit in human neuroblastoma
Abstract: During development, mice with mutations of stem cell factor (SCF) or its receptor c-kit exhibit defects in melanogenesis, as well as hematopoiesis and gonadogenesis. Because melanocytes derive from neural crest cells, the role of SCF and c-kit was investigated in the neural crest-derived childhood tumor neuroblastoma. Using reverse transcription-polymerase chain reaction analysis, simultaneous expression of steady-state mRNA for the SCF ligand and its receptor c-kit was found in 14 of 14 (100%) human neuroblastoma cell lines and clones and in 8 of 18 (45%) human neuroblastoma tumor samples. Functional blockade of c-kit receptors in the cell lines SK-N-BE(2) and SH-SY5Y using the mouse monoclonal anti-c-kit antibody SR-1 resulted in a significant decrease in cellular growth rate when measured by either H-3-thymidine incorporation or clonogenicity. In addition, higher levels of c-kit mRNA expression were associated with parental neuroblastoma cell lines and subclones with a neuronal (N) differentiation phenotype, whereas lower levels of c-kit mRNA were associated with neuroblastoma cell line subclones having a schwannian/glial/melanocytic pattern of differentiation. However, the differentiation phenotype of neuroblastoma cell lines was not directly altered when c-kit expression was blocked using the SR-1 antibody. In summary, these data indicate that c-kit receptor expression may play a significant role in the growth regulation of the two neuroblastoma cell lines examined and suggest that c-kit may also play a similar role in neuroblastoma growth regulation in vivo. Simultaneous expression of SCF and c-kit mRNA in both neuroblastoma cell lines and tumors implies that c-kit may act as part of an autocrine growth loop in conjunction with endogenous production of SCF in this disease. (C) 1994 by The American Society of Hematology.
Keywords: sequence; protein; ligand; receptor; kinase; molecular-cloning; tyrosine phosphorylation; protooncogene; growth factor-ii; adrenal-gland
Journal Title: Blood
Volume: 84
Issue: 10
ISSN: 0006-4971
Publisher: American Society of Hematology  
Date Published: 1994-11-15
Start Page: 3465
End Page: 3472
Language: English
ACCESSION: WOS:A1994PR22100026
PROVIDER: wos
PUBMED: 7524740
DOI: 10.1182/blood.V84.10.3465.3465
Notes: Article -- Source: Wos
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