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HDAC3丝氨酸424磷酸模拟和磷酸缺失突变体双向调节成年和衰老小鼠大脑中的长期记忆形成和突触可塑性。

HDAC3 Serine 424 Phospho-mimic and Phospho-null Mutants Bidirectionally Modulate Long-Term Memory Formation and Synaptic Plasticity in the Adult and Aging Mouse Brain.

作者信息

Rodriguez Alyssa C, Kramár Eniko A, Augustynski Agatha S, Keiser Ashley A, Dong Tri N, Jones Tamara S, Vakilian Shanya N, Patel Sasha T, Rounds Jacob S, Chinn Carlene A, Kwapis Janine L, Matheos Dina P, Wood Marcelo A

机构信息

Department of Neurobiology and Behavior, University of California, Irvine, California 92697.

Arizona State University-Banner Neurodegenerative Disease Research Center at the Biodesign Institute, Tempe, Arizona 85287.

出版信息

J Neurosci. 2025 Jul 16;45(29):e1619242025. doi: 10.1523/JNEUROSCI.1619-24.2025.

Abstract

Long-term memory (LTM) formation is negatively regulated by histone deacetylase 3 (HDAC3), a transcriptional repressor. Emerging evidence suggests that posttranslational phosphorylation of HDAC3 at its serine 424 (S424) residue is critical for its deacetylase activity in transcription. However, it remains unknown if HDAC3 S424 phosphorylation regulates the ability of HDAC3 to modulate LTM formation. To examine the functionality of S424, we expressed an HDAC3-S424D phospho-mimic mutant (constitutively active form) or an HDAC3-S424A phospho-null mutant (phospho-dead form) in the dorsal hippocampus of mice. We assessed the functional consequence of these mutants on LTM formation and long-term potentiation (LTP) in young adult male mice. We also assessed whether the HDAC3-S424A mutant could ameliorate age-related deficits in LTM and LTP in aging male and female mice. Results demonstrate that young adult male mice expressing the HDAC3-S424D phospho-mimic mutant in the dorsal hippocampus exhibit significantly impaired LTM and LTP. In contrast, the HDAC3-S424A phospho-null mutant expressed in the hippocampus of young adult male mice enabled the transformation of subthreshold learning into robust LTM and enhanced LTP. Similarly, expression of the HDAC3-S424A mutant enabled LTM formation and enhanced LTP in aging male and aging female mice. Overall, these findings demonstrate that HDAC3 S424 is a pivotal residue that has the ability to bidirectionally regulate synaptic plasticity and LTM formation in the adult and aging brain.

摘要

长期记忆(LTM)的形成受到组蛋白去乙酰化酶3(HDAC3)的负调控,HDAC3是一种转录抑制因子。新出现的证据表明,HDAC3在其丝氨酸424(S424)残基上的翻译后磷酸化对其在转录中的去乙酰化酶活性至关重要。然而,HDAC3 S424磷酸化是否调节HDAC3调节LTM形成的能力仍不清楚。为了研究S424的功能,我们在小鼠背侧海马中表达了HDAC3-S424D磷酸模拟突变体(组成型活性形式)或HDAC3-S424A磷酸缺失突变体(磷酸失活形式)。我们评估了这些突变体对年轻成年雄性小鼠LTM形成和长时程增强(LTP)的功能影响。我们还评估了HDAC3-S424A突变体是否可以改善衰老雄性和雌性小鼠中与年龄相关的LTM和LTP缺陷。结果表明,在背侧海马中表达HDAC3-S424D磷酸模拟突变体的年轻成年雄性小鼠表现出明显受损的LTM和LTP。相比之下,在年轻成年雄性小鼠海马中表达的HDAC3-S424A磷酸缺失突变体能够将阈下学习转化为强大的LTM并增强LTP。同样,HDAC3-S424A突变体的表达使衰老雄性和衰老雌性小鼠能够形成LTM并增强LTP。总体而言,这些发现表明HDAC3 S424是一个关键残基,能够双向调节成年和衰老大脑中的突触可塑性和LTM形成。

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