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Necessity of protein synthesis in long-term potentiation (LTP) in the CA3 area of the rat hippocampus.

机译:大鼠海马CA3区长时程增强(LTP)中蛋白质合成的必要性。

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摘要

Protein synthesis (PS) has been implicated in memory formation. Previous studies have shown PS, either near the soma or at the synapse, may contribute to the activation and establishment of various proteins needed to facilitate or maintain synaptic modifications. In the hippocampus (HC), these vibrant changes are expressed at virtually every synapse. Previous studies have shown PS dependence in the mossy fiber to CA3 and Schaffer collateral to CA1 pyramidal cells during the early phase (E-LTP) and late phase (L-LTP), respectfully. It is not known whether Long-Term Potentiation (LTP) induced at the Medial or Lateral Perforant Path (MPP, LPP) or Commissural/Associational (C/A) projections to the CA3 are dependent on PS during its E-LTP or L-LTP in-vivo. Acute extracellular responses were evoked by stimulation of LPP, MPP or C/A projections and recorded in the CA3 area of the rat HC. Protein synthesis inhibitors, anisomycin or cycloheximide were administered intracranially in the CA3 pyramidal cell layer in-vivo. Results varied with each individual pathway. The LPP results show that if either the drug is present prior to induction it blocked LTP. The application of the drug 30 minutes after induction did not block LTP, suggesting that the critical time period for PS in the LPP is immediately after HFS. The application of the drug to either MPP or C/A prior to HFS did not block LTP 1 hour after induction. Repeated application of the drug in one hour intervals for 4 hours after induction blocked LTP in these pathways. In the presence of anisomycin, neither pathway showed an effect on paired pulse stimulation, suggesting that the drug did not affect synaptic transmission. A Bradford Assay, used for protein quantification, showed a decrease in protein concentration at one and four hours after induction, this indicates that protein synthesis was inhibited in the CA3 area of the hippocampus. Therefore, these results suggest that mRNA translation is critical in these pathways at a later time intervals. Overall, these data suggest that the early phase of the LPP is protein synthesis dependent but not at MPP or C/A projections to CA3.
机译:蛋白质合成(PS)与记忆形成有关。先前的研究表明,在躯体附近或突触处的PS可能有助于激活和建立促进或维持突触修饰所需的各种蛋白质。在海马(HC)中,几乎每个突触都表达了这些充满活力的变化。先前的研究表明,在早期(E-LTP)和晚期(L-LTP)期间,苔藓纤维中的PS依赖于CA3锥体细胞,而Schaffer邻近于CA1锥体细胞。尚不知道在CA3的内侧或外侧穿孔路径(MPP,LPP)或连合/协会(C / A)投影处诱导的长期增强(LTP)在其E-LTP或L-期间是否依赖于PS体内LTP。通过刺激LPP,MPP或C / A投影诱发急性细胞外反应,并记录在大鼠HC的CA3区域。在颅内CA3锥体细胞层中颅内施用蛋白质合成抑制剂,茴香霉素或环己酰亚胺。结果随每个单独的途径而异。 LPP结果显示,如果在诱导之前存在任何一种药物,则它会阻断LTP。诱导后30分钟应用该药物不会阻断LTP,这表明LPP中PS的关键时间段紧接在HFS之后。在HFS之前将药物应用于MPP或C / A不会在诱导后1小时阻止LTP。诱导后,以1小时为间隔的4个小时重复应用药物会阻断LTP的这些途径。在存在茴香霉素的情况下,这两种途径均未显示出对配对脉冲刺激的作用,表明该药物不影响突触传递。用于蛋白质定量的Bradford分析显示诱导后一小时和四小时蛋白质浓度降低,这表明海马CA3区蛋白质合成受到抑制。因此,这些结果表明在以后的时间间隔中,mRNA翻译在这些途径中至关重要。总体而言,这些数据表明,LPP的早期依赖蛋白质合成,但不依赖于对CA3的MPP或C / A预测。

著录项

  • 作者

    Orfila, James Edward.;

  • 作者单位

    The University of Texas at San Antonio.$bBiology.;

  • 授予单位 The University of Texas at San Antonio.$bBiology.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;
  • 关键词

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