Published April 19, 2022 | Version v1
Publication

Effects of classical PKC activation on hippocampal neurogenesis and cognitive performance: mechanism of action

Description

Hippocampal neurogenesis has widely been linked to memory and learning performance. New neurons generated from neural stem cells (NSC) within the dentate gyrus of the hippocampus (DG) integrate in hippocampal circuitry participating in memory tasks. Several neurological and neuropsychiatric disorders show cognitive impairment together with a reduction in DG neurogenesis. Growth factors secreted within the DG promote neurogenesis. Protein kinases of the protein kinase C (PKC) family facilitate the release of several of these growth factors, highlighting the role of PKC isozymes as key target molecules for the development of drugs that induce hippocampal neurogenesis. PKC activating diterpenes have been shown to facilitate NSC proliferation in neurogenic niches when injected intracerebroventricularly. We show in here that long-term administration of diterpene ER272 promotes neurogenesis in the subventricular zone and in the DG of mice, affecting neuroblasts differentiation and neuronal maturation. A concomitant improvement in learning and spatial memory tasks performance can be observed. Insights into the mechanism of action reveal that this compound facilitates classical PKCα activation and promotes transforming growth factor alpha (TGFα) and, to a lesser extent, neuregulin release. Our results highlight the role of this molecule in the development of pharmacological drugs to treat neurological and neuropsychiatric disorders associated with memory loss and a deficient neurogenesis.

Abstract

Ministerio de Ciencia, Innovación y Universidades de España (MICINN) RTI-2018-099908-B-C21 y RTI-2018-099908-B-C22

Abstract

Ministerio de Ciencia, Innovación y Universidades de España y Fondos FEDER de la Unión Europea (MICINN/FEDER) BFU2016-75038R

Abstract

Consejería de Economía, Conocimiento, Empresas y Universidades de la Junta de Andalucía y Fondos FEDER. FEDER-UCA18-106647

Additional details

Created:
March 25, 2023
Modified:
November 30, 2023