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Publication : BACE1 Deficiency Causes Abnormal Neuronal Clustering in the Dentate Gyrus.

First Author  Hou H Year  2017
Journal  Stem Cell Reports Volume  9
Issue  1 Pages  217-230
PubMed ID  28669600 Mgi Jnum  J:311971
Mgi Id  MGI:6781104 Doi  10.1016/j.stemcr.2017.05.030
Citation  Hou H, et al. (2017) BACE1 Deficiency Causes Abnormal Neuronal Clustering in the Dentate Gyrus. Stem Cell Reports 9(1):217-230
abstractText  BACE1 is validated as Alzheimer's beta-secretase and a therapeutic target for Alzheimer's disease. In examining BACE1-null mice, we discovered that BACE1 deficiency develops abnormal clusters of immature neurons, forming doublecortin-positive neuroblasts, in the developing dentate gyrus, mainly in the subpial zone (SPZ). Such clusters were rarely observed in wild-type SPZ and not reported in other mouse models. To understand their origins and fates, we examined how neuroblasts in BACE1-null SPZ mature and migrate during early postnatal development. We show that such neuroblasts are destined to form Prox1-positive granule cells in the dentate granule cell layer, and mainly mature to form excitatory neurons, but not inhibitory neurons. Mechanistically, higher levels of reelin potentially contribute to abnormal neurogenesis and timely migration in BACE1-null SPZ. Altogether, we demonstrate that BACE1 is a critical regulator in forming the dentate granule cell layer through timely maturation and migration of SPZ neuroblasts.
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