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Biology subjects

Kannon, T.

Publications and source records attributed to Kannon, T..

2 recordsLinked to original sources

Astroglial CD38 regulates social memory and synapse formation through SPARCL1 in the medial prefrontal cortex

Social behavior is essential for the health, survival and reproduction of animals, yet the role of astrocytes in social behavior is largely unknown. CD38 is critical for social behaviors by regulating oxytocin release from hypothalamic neurons. On the other hand, CD38 is most abundantly expressed in astrocytes especially in the postnatal cortex, and is important for astroglial development. Here, we demonstrate that astroglial CD38 plays a pivotal role in the social behavior. Selective deletion of CD38 in postnatal astrocytes, but not in adult astrocytes, specifically impaired social memory without any other behavioral abnormalities. Morphological analysis revealed reductions in spine numbers, mature spines and excitatory synapse numbers in the pyramidal neurons of the medial prefrontal cortex (mPFC) due to deletion of astroglial CD38 in the postnatal brain. Astrocyte-conditioned medium (ACM) of CD38 KO astrocytes reduced synaptogenesis of cortical neurons by reducing extracellular SPARCL1, a synaptogenic protein. Finally, the release of SPARCL1 from astrocytes is regulated by CD38/cADPR/calcium signaling. Our data indicate that astroglial CD38 developmentally regulates social memory and neural circuit formation in the developing brain by promoting synaptogenesis through SPARCL1.

neuroscience↗

The ATF6β-calreticulin axis protects hippocampal neurons against endoplasmic reticulum stress and excitotoxicity

While ATF6 plays a central role in the endoplasmic reticulum (ER) stress response, the function of ATF6{beta} is largely unknown. Here, we demonstrate that ATF6{beta} is highly expressed in the hippocampus of the brain, and specifically regulates the expression of calreticulin, a molecular chaperone in the ER with a high Ca2+-binding capacity. Calreticulin expression was reduced to ~50% in the central nervous system of Atf6b-/- mice, and restored by ATF6{beta}. Analysis using cultured hippocampal neurons revealed that ATF6{beta} deficiency reduced Ca2+ stores in the ER and enhanced ER stress-induced death, which was rescued by ATF6{beta}, calreticulin, Ca2+-modulating reagents such as BAPTA-AM and 2-APB, and ER stress inhibitor salubrinal. In vivo, kainate-induced neuronal death was enhanced in hippocampi of Atf6b-/- and Calr+/- mice, and restored by 2-APB and salubrinal. These results suggest that the ATF6{beta}-calreticulin axis plays a critical role in the neuronal survival by improving Ca2+ homeostasis under ER stress.

cell biology↗