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A PKM generated by calpain cleavage of a classical PKC is required for activity-dependent intermediate-term facilitation in the presynaptic sensory neuron of Aplysia

机译:钙蛋白酶裂解经典PKC产生的PKM是海葵突触前感觉神经元活动依赖性中期促进的必需条件

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摘要

Atypical PKM, a persistently active form of atypical PKC, is proposed to be a molecular memory trace, but there have been few examinations of the role of PKMs generated from other PKCs. We demonstrate that inhibitors used to inhibit PKMs generated from atypical PKCs are also effective inhibitors of other PKMs. In contrast, we demonstrate that dominant-negative PKMs show isoform-specificity. A dominant-negative PKM from the classical PKC Apl I blocks activity-dependent intermediate-term facilitation (a-ITF) when expressed in the sensory neuron, while a dominant-negative PKM from the atypical PKC Apl III does not. Consistent with a specific role for PKM Apl I in activity-dependent facilitation, live imaging FRET-based cleavage assays reveal that activity leads to cleavage of the classical PKC Apl I, but not the atypical PKC Apl III in the sensory neuron varicosities of Aplysia. In contrast, massed intermediate facilitation (m-ITF) induced by 10 min of 5HT is sufficient for cleavage of the atypical PKC Apl III in the motor neuron. Interestingly, both cleavage of PKC Apl I in the sensory neuron during a-ITF and cleavage of PKC Apl III in the motor neuron during m-ITF are inhibited by a dominant-negative form of a penta-EF hand containing classical calpain cloned from Aplysia. Consistent with a role for PKMs in plasticity, this dominant-negative calpain also blocks both a-ITF when expressed in the sensory neuron and m-ITF when expressed in the motor neuron. This study broadens the role of PKMs in synaptic plasticity in two significant ways: (i) PKMs generated from multiple isoforms of PKC, including classical isoforms, maintain memory traces; (ii) PKMs play roles in the presynaptic neuron.
机译:非典型PKM(一种非典型PKC的一种持久活性形式)被认为是分子记忆的踪迹,但是很少检查其他PKC产生的PKM的作用。我们证明用于抑制由非典型PKC生成的PKM的抑制剂也是其他PKM的有效抑制剂。相反,我们证明显性阴性PKM显示同工型特异性。当在感觉神经元中表达时,来自经典PKC Apl I的显性负PKM会阻断与活动有关的中期促进(a-ITF),而来自非典型PKC Apl III的显性负PKM则不会。与PKM Apl I在依赖于活性的促进中的特定作用一致,基于FRET的实时成像裂解分析显示,活性导致经典的PKC Apl I裂解,而不导致非典型的PKC Apl III裂解,导致Aplysia的感觉神经变性。相反,由10分钟的5HT诱导的大量中间促进(m-ITF)足以裂解运动神经元中的非典型PKC Apl III。有趣的是,a-ITF期间感觉神经元中PKC Apl I的裂解和m-ITF期间运动神经元中PKC Apl III的裂解均受包含从海兔中克隆的经典钙蛋白酶的penta-EF显性负型抑制。 。与PKM在可塑性中的作用一致,这种显性负钙蛋白酶在感觉神经元中表达时也阻断a-ITF,在运动神经元中表达时也阻断m-ITF。这项研究通过两种重要方式拓宽了PKM在突触可塑性中的作用:(i)由PKC的多种同工型(包括经典同工型)产生的PKM保持记忆痕迹; (ii)PKM在突触前神经元中发挥作用。

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