Role of the aspartyl-asparaginyl-beta-hydroxylase gene in neuroblastoma cell motility

Author(s): Sepe PS, Lahousse SA, Gemelli B, Chang H, Maeda T, et al.

Abstract

Aspartyl (asparaginyl) beta-hydroxylase (AAH) is overexpressed in various malignant neoplasms, and high levels of immunoreactivity mainly occur in infiltrating or metastasized tumors. In addition, AAH is abundantly expressed in normally invasive placental trophoblastic cells. These observations led to the hypothesis that AAH may have a role in motility and aggressive behavior of tumor cells. The present study demonstrates that AAH is overexpressed in primary human malignant neuroectodermal tumors, including medulloblastomas and neuroblastomas, and that AAH expression is at a low level or undetectable in the normal mature brain. In the Sy5y neuroblastoma cell line, endogenous expression of the approximately 86-kd AAH protein was demonstrated by Western blot analysis, and immunoreactivity predominantly localized to the cell surface by immunocytochemical staining and FACS analysis. Sy5y cells that were stably transfected with the human AAH cDNA had increased levels of proliferating cell nuclear antigen and Bcl-2, and reduced levels of p21/Waf1 and p16. In addition, increased AAH expression enhanced Sy5y cell motility, whereas antisense oligodeoxynucleotide inhibition of AAH significantly reduced Sy5y cell motility and increased the levels of p21/Waf1 and p16. The findings suggest that AAH overexpression contributes to the malignant phenotype of neuroectodermal tumor cells by increasing motility and enhancing proliferation, survival, and cell cycle progression. Because AAH expression is at a low level or undetectable in normal brain, the AAH gene may be a target for treating primitive neuroectodermal tumors.

Similar Articles

Fetal alcohol spectrum disorders: an overview

Author(s): Riley EP, Infante MA, Warren KR

Regulation of neuronal survival by the serine-threonine protein kinase Akt

Author(s): Dudek H, Datta SR, Franke TF, Birnbaum MJ, Yao R, et al.

Ethanol inhibition of insulin signaling in hepatocellular carcinoma cells

Author(s): Banerjee K, Mohr L, Wands JR, de la Monte SM

Partial rescue of ethanol-induced neuronal apoptosis by growth factor activation of phosphoinositol-3-kinase

Author(s): de la Monte SM, Ganju N, Banerjee K, Brown NV, Luong T, et al.

Acute ethanol exposure inhibits insulin signaling in the liver

Author(s): He J, de la Monte S, Wands JR

Potential role of PTEN phosphatase in ethanol-impaired survival signaling in the liver

Author(s): Yeon JE, Califano S, Xu J, Wands JR, De La Monte SM

Frizzled signaling and the developmental control of cell polarity

Author(s): Shulman JM, Perrimon N, Axelrod JD

Roles of Wnt proteins in neural development and maintenance

Author(s): Patapoutian A, Reichardt LF

Hippocampus development and generation of dentate gyrus granule cells is regulated by LEF1

Author(s): Galceran J, Miyashita-Lin EM, Devaney E, Rubenstein JL, Grosschedl R

Wnt signalling required for expansion of neural crest and CNS progenitors

Author(s): Ikeya M, Lee SM, Johnson JE, McMahon AP, Takada S

Wnt signaling regulates hepatic metabolism

Author(s): Liu H, Fergusson MM, Wu JJ, Rovira II, Liu J, et al.

Wnt signaling regulates mitochondrial physiology and insulin sensitivity

Author(s): Yoon JC, Ng A, Kim BH, Bianco A, Xavier RJ, et al.

Structural and functional characterization of the Wnt inhibitor APC membrane recruitment 1 (Amer1)

Author(s): Tanneberger K, Pfister AS, Kriz V, Bryja V, Schambony A, et al.

Deconstructing the ßcatenin destruction complex: mechanistic roles for the tumor suppressor APC in regulating Wnt signaling

Author(s): Roberts DM, Pronobis MI, Poulton JS, Waldmann JD, Stephenson EM, et al.

Notch in the vertebrate nervous system: an old dog with new tricks

Author(s): Pierfelice T, Alberi L, Gaiano N

Notch targets and their regulation

Author(s): Bray S, Bernard F

Roles of bHLH genes in neural stem cell differentiation

Author(s): Kageyama R, Ohtsuka T, Hatakeyama J, Ohsawa R

Overexpression of human aspartyl(asparaginyl)beta-hydroxylase in hepatocellular carcinoma and cholangiocarcinoma

Author(s): Lavaissiere L, Jia S, Nishiyama M, de la Monte S, Stern AM, et al.

Aspartyl-(asparaginyl)-beta-hydroxylase regulates hepatocellular carcinoma invasiveness

Author(s): de la Monte SM, Tamaki S, Cantarini MC, Ince N, Wiedmann M, et al.

Impaired placentation in fetal alcohol syndrome

Author(s): Gundogan F, Elwood G, Longato L, Tong M, Feijoo A, et al.

AKT proto-oncogene overexpression is an early event during sporadic colon carcinogenesis

Author(s): Roy HK, Olusola BF, Clemens DL, Karolski WJ, Ratashak A, et al.

Wnt signaling function in Alzheimer's disease

Author(s): De Ferrari GV, Inestrosa NC