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首页|Arid1b haploinsufficiency in pyramidal neurons causes cellular and circuit changes in neocortex but is not sufficient to produce behavioral or seizure phenotypes

Arid1b haploinsufficiency in pyramidal neurons causes cellular and circuit changes in neocortex but is not sufficient to produce behavioral or seizure phenotypes

Arid1b haploinsufficiency in pyramidal neurons causes cellular and circuit changes in neocortex but is not sufficient to produce behavioral or seizure phenotypes

来源:bioRxiv_logobioRxiv
英文摘要

ABSTRACT Arid1b is a high confidence risk gene for autism spectrum disorder that encodes a subunit of a chromatin remodeling complex expressed in neuronal progenitors. Haploinsufficiency causes a broad range of social, behavioral, and intellectual disability phenotypes, including Coffin-Siris syndrome. Recent work using transgenic mouse models suggests pathology is due to deficits in proliferation, survival, and synaptic development of cortical neurons. However, there is conflicting evidence regarding the relative roles of excitatory projection neurons and inhibitory interneurons in generating abnormal cognitive and behavioral phenotypes. Here, we conditionally knocked out either one or both copies of Arid1b from excitatory projection neuron progenitors and systematically investigated the effects on intrinsic membrane properties, synaptic physiology, social behavior, and seizure susceptibility. We found that disrupting Arid1b expression in excitatory neurons alters their membrane properties, including hyperpolarizing action potential threshold; however, these changes depend on neuronal subtype. Using paired whole-cell recordings, we found increased synaptic connectivity rate between projection neurons. Furthermore, we found reduced strength of excitatory synapses to parvalbumin (PV)-expression inhibitory interneurons. These data suggest an increase in the ratio of excitation to inhibition. However, the strength of inhibitory synapses from PV interneurons to excitatory neurons was enhanced, which may rebalance this ratio. Indeed, Arid1b haploinsufficiency in projection neurons was insufficient to cause social deficits and seizure phenotypes observed in a preclinical germline haploinsufficient mouse model. Our data suggest that while excitatory projection neurons likely contribute to autistic phenotypes, pathology in these cells is not the primary cause.

Hanson Meretta A.、Bibi Noor、Fitzgerald Julie、Kokiko-Cochran Olga N.、Wester Jason C.、Marshall Alec H.、Gaitten Emilee、Nagarajan Devipriyanka、Gu Bin、Boyle Danielle J.

Department of NeuroscienceDepartment of NeuroscienceDepartment of Neuroscience||Chronic Brain Injury Program||Institute for Behavioral Medicine Research, The Ohio State University College of MedicineDepartment of Neuroscience||Chronic Brain Injury Program||Institute for Behavioral Medicine Research, The Ohio State University College of MedicineDepartment of NeuroscienceDepartment of NeuroscienceDepartment of NeuroscienceDepartment of NeuroscienceDepartment of NeuroscienceDepartment of Neuroscience

10.1101/2024.06.04.597344

基础医学神经病学、精神病学遗传学

Hanson Meretta A.,Bibi Noor,Fitzgerald Julie,Kokiko-Cochran Olga N.,Wester Jason C.,Marshall Alec H.,Gaitten Emilee,Nagarajan Devipriyanka,Gu Bin,Boyle Danielle J..Arid1b haploinsufficiency in pyramidal neurons causes cellular and circuit changes in neocortex but is not sufficient to produce behavioral or seizure phenotypes[EB/OL].(2025-03-28)[2025-05-02].https://www.biorxiv.org/content/10.1101/2024.06.04.597344.点此复制

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