Literature DB >> 11862463

Distinct expression patterns of two zebrafish homologues of the human APP gene during embryonic development.

A Musa1, H Lehrach, V A Russo.   

Abstract

The human amyloid protein precursor (APP) gene correlates with early onset of Alzheimer's disease in humans. We have identified two APP homologues in zebrafish, which we call appa and appb. They show a high degree of identity to human APP particularly in the beta APP42 and the transmembrane domain. Widespread expression of both appa and appb was detected from mid-gastrulation until the bud stage. During segmentation, the two genes diverged in their pattern of expression: at 14 h post-fertilisation (hpf) and 18 hpf both genes were expressed rostrally in the prospective CNS, but only appa was found caudally in the paraxial segmental plate and presomitic mesoderm, excluding the midline. In contrast, appb was found caudally in the neural rod at 14 hpf and the developing spinal cord at 18 hpf. Later, at 24 hpf both genes shared common expression domains, namely the telencephalon, the ventral diencephalon, the trigeminal ganglia, and the posterior lateral line ganglia. Unique expression domains for appa were the lens, the otic vesicles and the somites, while appb was expressed in a serially repeated set of nuclei within the hindbrain, the ventral mesencephalon and the motoneurones of the developing spinal cord.

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Year:  2001        PMID: 11862463     DOI: 10.1007/s00427-001-0189-9

Source DB:  PubMed          Journal:  Dev Genes Evol        ISSN: 0949-944X            Impact factor:   0.900


  29 in total

Review 1.  Functions of the APP gene family in the nervous system: insights from mouse models.

Authors:  Dorothee Aydin; Sascha W Weyer; Ulrike C Müller
Journal:  Exp Brain Res       Date:  2011-09-20       Impact factor: 1.972

2.  Tol2 gene trap integrations in the zebrafish amyloid precursor protein genes appa and aplp2 reveal accumulation of secreted APP at the embryonic veins.

Authors:  Hsin-Kai Liao; Ying Wang; Kristin E Noack Watt; Qin Wen; Justin Breitbach; Chelsy K Kemmet; Karl J Clark; Stephen C Ekker; Jeffrey J Essner; Maura McGrail
Journal:  Dev Dyn       Date:  2012-02       Impact factor: 3.780

3.  Pharmacological analysis of Drosophila melanogaster gamma-secretase with respect to differential proteolysis of Notch and APP.

Authors:  Casper Groth; W Gregory Alvord; Octavio A Quiñones; Mark E Fortini
Journal:  Mol Pharmacol       Date:  2010-01-11       Impact factor: 4.436

Review 4.  Animal models in the drug discovery pipeline for Alzheimer's disease.

Authors:  Debby Van Dam; Peter Paul De Deyn
Journal:  Br J Pharmacol       Date:  2011-10       Impact factor: 8.739

Review 5.  Zebrafish as a Promising Tool for Modeling Neurotoxin-Induced Alzheimer's Disease.

Authors:  Baban S Thawkar; Ginpreet Kaur
Journal:  Neurotox Res       Date:  2021-03-09       Impact factor: 3.911

Review 6.  The state of the art of the zebrafish model for toxicology and toxicologic pathology research--advantages and current limitations.

Authors:  Jan M Spitsbergen; Michael L Kent
Journal:  Toxicol Pathol       Date:  2003 Jan-Feb       Impact factor: 1.902

Review 7.  Physiological functions of APP family proteins.

Authors:  Ulrike C Müller; Hui Zheng
Journal:  Cold Spring Harb Perspect Med       Date:  2012-02       Impact factor: 6.915

8.  Can zebrafish be used as animal model to study Alzheimer's disease?

Authors:  Soraya Santana; Eduardo P Rico; Javier S Burgos
Journal:  Am J Neurodegener Dis       Date:  2012-05-15

9.  Using zebrafish to assess the impact of drugs on neural development and function.

Authors:  Su Guo
Journal:  Expert Opin Drug Discov       Date:  2009-07-01       Impact factor: 6.098

10.  Modeling Alzheimer's disease: from past to future.

Authors:  Claudia Saraceno; Stefano Musardo; Elena Marcello; Silvia Pelucchi; Monica Di Luca
Journal:  Front Pharmacol       Date:  2013-06-19       Impact factor: 5.810

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