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首页> 外文期刊>Zeitschrift fur Arznei- und Gewurzpflanzen >Depending on the stress, histone deacetylase inhibitors act as heat shock protein co-inducers in motor neurons and potentiate arimoclomol, exerting neuroprotection through multiple mechanisms in ALS models
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Depending on the stress, histone deacetylase inhibitors act as heat shock protein co-inducers in motor neurons and potentiate arimoclomol, exerting neuroprotection through multiple mechanisms in ALS models

机译:取决于应力,组蛋白脱乙酰酶抑制剂在电动神经元和高压甘油甘油中充当热休克蛋白共同诱导剂,通过ALS模型中的多种机制施加神经保护剂

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摘要

Upregulation of heat shock proteins (HSPs) is an approach to treatment of neurodegenerative disorders with impaired proteostasis. Many neurons, including motor neurons affected in amyotrophic lateral sclerosis (ALS), are relatively resistant to stress-induced upregulation of HSPs. This study demonstrated that histone deacetylase (HDAC) inhibitors enable the heat shock response in cultured spinal motor neurons, in a stress-dependent manner, and can improve the efficacy of HSP-inducing drugs in murine spinal cord cultures subjected to thermal or proteotoxic stress. The effect of particular HDAC inhibitors differed with the stress paradigm. The HDAC6 (class IIb) inhibitor, tubastatin A, acted as a co-inducer of Hsp70 (HSPA1A) expression with heat shock, but not with proteotoxic stress induced by expression of mutant SOD1 linked to familial ALS. Certain HDAC class I inhibitors (the pan inhibitor, SAHA, or the HDAC1/3 inhibitor, RGFP109) were HSP co-inducers comparable to the hydroxyamine arimoclomol in response to proteotoxic stress, but not thermal stress. Regardless, stress-induced Hsp70 expression could be enhanced by combining an HDAC inhibitor with either arimoclomol or with an HSP90 inhibitor that constitutively induced HSPs. HDAC inhibition failed to induce Hsp70 in motor neurons expressing ALS-linked mutant FUS, in which the heat shock response was suppressed; yet SAHA, RGFP109, and arimoclomol did reduce loss of nuclear FUS, a disease hallmark, and HDAC inhibition rescued the DNA repair response in iPSC-derived motor neurons carrying the FUS(P525L)mutation, pointing to multiple mechanisms of neuroprotection by both HDAC inhibiting drugs and arimoclomol.
机译:热休克蛋白(HSP)的上调是一种治疗具有蛋白质受损的神经变性障碍的方法。许多神经元,包括在肌萎缩侧面硬化剂(ALS)中受影响的运动神经元,对HSP的应激诱导的Upregulation相对抗性。该研究表明,组蛋白脱乙酰化酶(HDAC)抑制剂能够以应力依赖性的方式在培养的脊柱运动神经元中进行热休克反应,并且可以提高HSP诱导药物在受热量或蛋白毒性应力的鼠脊髓培养物中的功效。特定HDAC抑制剂的效果与应力范例不同。 HDAC6(IIB类)抑制剂,Tupastatin A,作用为HSP70(HSPA1A)表达的共同诱导剂,其具有热冲击,而不是通过将与家族性ALS连接的突变体SOD1的表达引起的诱导的蛋白毒性应激。某些HDAC I类抑制剂(PAN抑制剂,SAHA或HDAC1 / 3抑制剂RGFP109)是与羟基胺芳莫罗莫罗醇响应于蛋白毒性应力,但不是热应力的HSP共同诱导剂。无论如何,通过将HDAC抑制剂与芳氯罗莫酚组合或与组成型HSP的HSP90抑制剂组合,可以提高应激诱导的HSP70表达。 HDAC抑制未能诱导表达ALS连接突变体FUS的运动神经元中的HSP70,其中抑制了热休克反应;然而,萨哈,RGFP109和Arimoclomol确实减少了核心核心丧失的丧失,疾病标志和HDAC抑制拯救了携带FUS(P525L)突变的IPSC衍生的运动神经元的DNA修复反应,指向HDAC抑制的多种神经保护机制药物和芳香氯芴醇。

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