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Garay, P.

Publications and source records attributed to Garay, P..

2 recordsLinked to original sources

Characterization of Social and Repetitive Behaviors of Mllt11/Af1q/TcF7c Conditional Knockout Mice

Mllt11 (myeloid/lymphoid or mixed-lineage leukemia translocated to chromosome 11; also known as Af1q/TcF7c) has been identified as a novel regulator of neural development, playing a role in the migration and outgrowth of cortical projection neurons. We previously reported that the conditional inactivation of the Mllt11 gene in the mouse superficial cortex resulted in reduced connectivity of the corpus callosum and white matter fiber tracts, resulting in reduced cortical thickness. However, the behavioral consequences of Mllt11 loss are unknown. Callosal abnormalities are thought to be present in 3-5% of all neurodevelopmental disorders and reduced corpus callosum volume correlates with core symptoms of autism spectrum disorder (ASD) in humans. Cortical thickness dysregulation is likewise shared among various neurodevelopmental disorders including ASD. We therefore investigated the behavioral consequences of conditional knockout of Mllt11 in upper cortical layer 2/3 projection neurons using transgenic Cux2iresCre mice. Utilizing tasks designed to reflect core ASD symptoms, we examined the behaviors of both male and female conditional knockout animals. These tests included olfaction habituation/dishabituation, three-chambered social approach, marble burying, and nestlet shredding. We found sex-dependent disruptions in social preference and nestlet shredding in animals lacking Mllt11, with the female mice presenting with more disruptions than the males. Understanding the behavioral phenotype associated with genes of interest, specifically in the context of sex differences, is crucial to individualized treatment for neurodevelopmental disorders.

neuroscience↗

Alcohol-specific transcriptional dynamics of memory reconsolidation

Relapse, a critical issue in alcohol addiction, can be attenuated by disruption of alcohol-associated memories. Memories are thought to temporarily destabilize upon retrieval during the reconsolidation process. Here, we characterized the alcohol-specific transcriptional dynamics that regulate these memories. Using a mouse place-conditioning procedure, we found that alcohol memory retrieval increased the expression of Arc and Zif268 in the dorsal hippocampus (DH) and medial prefrontal cortex (mPFC). Alcohol seeking was abolished by post-retrieval non-specific inhibition of gene transcription in the DH, as well as by downregulating ARC expression in the DH using antisense-oligodeoxynucleotides. Since sucrose memory retrieval also increased Arc and Zif268 expression, we performed an RNA-sequencing assay, and revealed alterations in the expression of Adcy8, Neto1, Slc8a3 in the DH and Fkbp5 in the mPFC, caused by the retrieval of alcohol but not sucrose memories. This offers a first insight into the unique transcriptional dynamics underpinning alcohol memory reconsolidation.

neuroscience↗