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相关概念视频

Role of Neurotransmitters in Memory01:23

Role of Neurotransmitters in Memory

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Neurotransmitters are integral to the brain's communication system, enabling neurons to transmit signals across synapses. This chemical exchange underpins various cognitive functions, including memory processes. The role of neurotransmitters in memory is multifaceted, influencing the encoding, consolidation, and retrieval of memories through their action on different neural circuits.
 Glutamate and Synaptic Plasticity
Glutamate, the brain's main excitatory neurotransmitter, is...
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Interactions Between Signaling Pathways01:19

Interactions Between Signaling Pathways

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Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
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MAPK Signaling Cascades01:07

MAPK Signaling Cascades

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Mitogen-activated protein kinase, or MAPK pathway, activates three sequential kinases to regulate cellular responses such as proliferation, differentiation, survival, and apoptosis. The canonical MAPK pathway starts with a mitogen or growth factor binding to an RTK. The activated RTKs stimulate Ras, which recruits Raf or MAP3 Kinase (MAPKKK), the first kinase of the MAPK signaling cascade. Raf further phosphorylates and activates MEK or MAP2 Kinases (MAPKK), which in turn phosphorylates MAP...
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Immunological Memory01:23

Immunological Memory

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Immunological memory, a pivotal pillar of the adaptive immune system, is responsible for the body's ability to remember and respond more swiftly and effectively to previously encountered pathogens. This remarkable feature is what makes vaccines so effective in preventing diseases.
What is Immunological Memory?
Immunological memory is an integral function of the immune system that allows it to recognize and react more rapidly and effectively to pathogens previously encountered. This feature...
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Covalently Linked Protein Regulators02:04

Covalently Linked Protein Regulators

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Proteins can undergo many types of post-translational modifications, often in response to changes in their environment. These modifications play an important role in the function and stability of these proteins. Covalently linked molecules include functional groups, such as methyl, acetyl, and phosphate groups, and also small proteins, such as ubiquitin. There are around 200 different types of covalent regulators that have been identified.
These groups modify specific amino acids in a protein....
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Interference and Decay01:16

Interference and Decay

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Forgetting is a complex cognitive phenomenon influenced by several factors, among which interference and decay are particularly prominent. These processes explain why individuals often struggle to retrieve specific information from memory, leading to lapses in recall that can be observed in everyday situations.
Interference occurs when competing memories hinder the retrieval of particular information. It can be classified into two types: proactive and retroactive interference. Proactive...
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Self-Organized Neural Integrators in Noisy Spiking Networks.

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The telomerase/shelterin system is impaired in acromegaly and Cushing´s disease: Potential pathophysiological relevance.

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PKMζ-PKCι/λ double-knockout demonstrates atypical PKC is crucial for the persistence of hippocampal LTP and spatial memory.

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Persistently Increased Expression of PKMzeta and Unbiased Gene Expression Profiles Identify Hippocampal Molecular Traces of a Long-Term Active Place Avoidance Memory and "Shadow" Proteins.

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相关实验视频

Updated: Jan 18, 2026

Studying RNA Interactors of Protein Kinase RNA-Activated during the Mammalian Cell Cycle
10:05

Studying RNA Interactors of Protein Kinase RNA-Activated during the Mammalian Cell Cycle

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PKMζ-KIBRA相互作用,分子循环和记忆

Changchi Hsieh, David A Cano, Panayiotis Tsokas

    bioRxiv : the preprint server for biology
    |January 16, 2026
    PubMed
    概括

    持久的KIBRA-PKMζ寡合体通过克服分子周转来维持长期记忆. 新的结构揭示了抑制剂如何破坏这些对记忆持久性至关重要的分子相互作用.

    科学领域:

    • 神经科学是一个神经科学.
    • 分子生物学分子生物学
    • 结构生物学 结构生物学

    背景情况:

    • 基布拉和PKMζ之间持续的相互作用对突触可塑性和记忆至关重要.
    • 分子循环挑战了长期记忆的稳定性.
    • 假设寡合体结构能够克服分子降解.

    研究的目的:

    • 阐明KIBRA-PKMζ相互作用的结构基础.
    • 研究KIBRA-PKMζ寡合体维持长期记忆的机制.
    • 分析KIBRA-PKMζ相互作用抑制剂的作用.

    主要方法:

    • 使用AlphaFold 3进行KIBRA-PKMζ复合物的结构预测.
    • 使用KIBRA-PKMζ抑制剂 (K-ZAP和 ζ-stat) 来研究记忆障碍.
    • 评估了抑制剂对已建立空间记忆的影响.

    主要成果:

    • 预测KIBRA-PKMζ异构体和异构体的结构.
    • 确定了K-ZAP (异构体形成) 和z-stat (寡合化) 的独特抑制机制.
    • 证明 ζ-stat 破坏1个月的空间记忆,类似于 K-ZAP.

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    Last Updated: Jan 18, 2026

    Studying RNA Interactors of Protein Kinase RNA-Activated during the Mammalian Cell Cycle
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    Aversive Associative Learning and Memory Formation by Pairing Two Chemicals in Caenorhabditis elegans
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    Aversive Associative Learning and Memory Formation by Pairing Two Chemicals in Caenorhabditis elegans

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    Quantifying Subcellular Ubiquitin-proteasome Activity in the Rodent Brain
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    Quantifying Subcellular Ubiquitin-proteasome Activity in the Rodent Brain

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    结论:

    • 持续形成KIBRA-PKMζ寡合体是长期记忆持久性的关键机制.
    • 结构性见解解释了抑制剂如何损害记忆维护.
    • 寡合化对于克服记忆巩固中的分子周转率至关重要.