[F32] Defining molecular pathways in monoamine circuit development using autism-related syndrome genes in zebrafish
Ente: National Institute of Mental Health
Scadenza: 2029-08-19
Importo max: 81.280 EUR
Paese: US
Descrizione
ABSTRACT
Autism Spectrum (AS) is a complex, heterogeneous condition associated with hundreds of genes. Modeling the
genes that cause the changes in behavior is complex due to the need to study a large number of genes both in
isolation and in combination. Syndromic conditions, like Pitt-Hopkins, Coffin-Siris, Rett, and Fragile X syndromes
and others, are considered monogenic, with single causal genes linked to these syndromes. They also share
features with AS, including social withdrawal, intellectual disability, sensory sensitivity, and anxiety. The involved
genes act at a higher order of gene regulation, regulating several downstream processes, including additional
genes and molecular pathways associated with AS. Defining which downstream molecular pathways cause
changes in neural circuits and behavior could help prioritize which genes should be investigated in future
research on autism-related genes. In this proposal, I propose to conduct behavioral assays, sequencing, and
imaging of monoamine circuits and brain-wide changes in activity in zebrafish with mutations in genes associated
with several syndromes in humans, namely the Pitt-Hopkins gene tcf4, the Coffin-Siris gene arid1b, bcl11ba,
tcf7l2, ash1l, foxp1b, and hivep2a, all of which have namesake syndromes. All of these syndromes have
symptoms seen in individuals with autism, including intellectual disability, seen in 1 in 3 individuals with autism.
Several of these genes are also implicated in dopamine signaling, which is critical for social behaviors and
processes like learning and memory. In the first aim, I will define changes in molecular pathways caused by
these genes by performing bulk RNA sequencing, CUT&RUN, and Single-cell Combinatorial Indexing (sci)
sequencing, and manipulating downstream direct targets of my focal genes. In aim 2, I will define effects on brain
activity during a working memory task, define effects on pre- and post-synaptic structures, and define effects on
circuit development. The work in this proposal will greatly enhance our understanding of common and distinct
pathways altered by these syndrome-causing genes and potentially identify key pathways and circuits that
should be emphasized in AS-related investigations. The findings will also set the stage for larger-scale studies,
both in the broader field of modeling AS-related genes and that I can build my future lab around to investigate
the molecular networks of transcription factors that underlie brain development.
Istituzione: UNIV OF MASSACHUSETTS MED SCH WORCESTER
PI: Brandon Lee Bastien
Progetto: 1F32MH143397-01A1
Settori: National Institute of Mental Health
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