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青少年应激引起腹侧海马长时程增强的持续增加:星形细胞谷氨酰胺合成酶的作用 被引量:1
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作者 Ivens S ?al??kan G +7 位作者 Papageorgiou I Cesetti T Malich A Kann O Heinemann U Stork O Albrecht A 杜一星 《神经损伤与功能重建》 2019年第11期F0003-F0003,共1页
童年期创伤是引发与压力有关的精神病的最重要风险因素之一,例如创伤后压力障碍或抑郁。尽管已证实星形胶质细胞在调节递质释放和突触可塑性中发挥作用,然而目前尚不清楚星形胶质递质代谢在这种应激诱导的精神病理学中所起的作用。在啮... 童年期创伤是引发与压力有关的精神病的最重要风险因素之一,例如创伤后压力障碍或抑郁。尽管已证实星形胶质细胞在调节递质释放和突触可塑性中发挥作用,然而目前尚不清楚星形胶质递质代谢在这种应激诱导的精神病理学中所起的作用。在啮齿动物,可以通过青少年应激暴露来模拟童年逆境,从而导致焦虑加剧以及成年后应对压力的能力下降。我们描述了这种幼年应激大鼠,无论成年期是否有其他应激,都会导致腹侧CA1(v CA1)Schaffer侧支的突触效力降低,而高频刺激后突触传递的长时程增强(LTP)增加。我们通过阻断星形胶质谷氨酸降解酶谷氨酰胺合成酶(GS)测试谷氨酸-谷氨酰胺循环是否引起青少年应激后可塑性的持久变化。用蛋氨酸亚砜亚胺对正常大鼠的切片中GS的药理抑制的确模仿青少年应激对vCA1-LTP的影响,而提供谷氨酰胺足以使LTP正常化。评估在青少年、成年期或青少年/成年联合应激后,vCA1辐射层中的稳态mRNA水平揭示了GS、星形细胞谷氨酸和谷氨酰胺转运蛋白表达的明显变化。尽管青少年应激后GS mRNA表达水平持续降低,但GS蛋白水平保持稳定。本研究结果表明,星形胶质细胞和谷氨酸-谷氨酰胺循环在介导青少年应激对vCA1(与焦虑和情绪记忆处理有关的区域)的可塑性的长期影响中起关键作用。 展开更多
关键词 星形胶质细胞 谷氨酸-谷氨酰胺循环 谷氨酰胺合成酶 青少年应激 长时程增强 腹侧海马
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A domesticated Harbinger transposase forms a complex with HDA6 and promotes histone H3 deacetylation at genes but not TEs in Arabidopsis
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作者 Xishi Zhou Junna He +12 位作者 Christos N.Velanis Yiwang Zhu Yuhan He Kai Tang Mingku Zhu Lisa Graser Erica de Leau Xingang Wang Lingrui Zhang W.Andy Tao Justin Goodrich Jian-Kang Zhu Cui-Jun Zhang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第8期1462-1474,共13页
In eukaryotes,histone acetylation is a major modification on histone N-terminal tails that is tightly connected to transcriptional activation.HDA6 is a histone deacetylase involved in the transcriptional regulation of... In eukaryotes,histone acetylation is a major modification on histone N-terminal tails that is tightly connected to transcriptional activation.HDA6 is a histone deacetylase involved in the transcriptional regulation of genes and transposable elements(TEs)in Arabidopsis thaliana.HDA6 has been shown to participate in several complexes in plants,including a conserved SIN3 complex.Here,we uncover a novel protein complex containing HDA6,several Harbinger transposon-derived proteins(HHP1,SANT1,SANT2,SANT3,and SANT4),and MBD domain-containing proteins(MBD1,MBD2,and MBD4).We show that mutations of all four SANT genes in the sant-null mutant cause increased expression of the flowering repressors FLC,MAF4,and MAF5,resulting in a late flowering phenotype.Transcriptome deep sequencing reveals that while the SANT proteins and HDA6 regulate the expression of largely overlapping sets of genes,TE silencing is unaffected in sant-null mutants.Our global histone H3 acetylation profiling shows that SANT proteins and HDA6 modulate gene expression through deacetylation.Collectively,our findings suggest that Harbinger transposon-derived SANT domain-containing proteins are required for histone deacetylation and flowering time control in plants. 展开更多
关键词 DEACETYLATION FLOWERING Harbinger HDA6 histone acetylation protein complex SANT
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