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相关概念视频

Autophagy01:27

Autophagy

4.2K
Autophagy is a self-digesting process by which a cell protects itself from threats both within and outside the cell, ranging from abnormal proteins to invading bacteria. In this process, obsolete components of the cell and invading microbes are degraded by hydrolytic enzymes active in an acidic environment of the lysosomal lumen.
An autophagic pathway consists of a series of signaling events activated in response to diverse stress and physiological conditions such as food deprivation,...
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Delivery Pathways to the Lysosome01:36

Delivery Pathways to the Lysosome

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Eukaryotic cells use different mechanisms to eliminate toxic waste obsolete and worn-out substances. Lysosomes play a pivotal role in this, and hence, these substances are carried to the lysosome from other parts of the cell and extracellular space through different pathways. The most elaborately studied pathways to the lysosome are the endocytic pathways.
Endocytosis
In endocytosis, the cell membrane takes up macromolecules and particles from the surrounding medium. Clathrin-mediated...
6.1K
Integration of Synaptic Events01:28

Integration of Synaptic Events

1.4K
Synaptic integration mainly includes the summation of graded potentials. Graded potentials, regardless of their type, cause subtle alterations in membrane voltage, resulting in either depolarization or hyperpolarization. These incremental changes, when combined or summed, can propel the neuron toward its threshold. Consider, for example, a membrane experiencing a +15 mV shift, causing it to depolarize from -70 mV to -55 mV. In this scenario, graded potentials govern the membrane's ability...
1.4K
Autophagic Cell Death01:18

Autophagic Cell Death

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Christian de Duve discovered “autophagy,” a process in which cellular components are engulfed by membrane-bound organelles called autophagosomes. The autophagosomes then fuse with lysosomes to digest the enclosed contents. Autophagy is generally activated in cells to prevent cell death. However, cell death is triggered when the damage is beyond repair.
Autophagy and Apoptosis
Autophagy can activate apoptosis. In normal conditions, the autophagy activating protein Beclin-1 and...
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Chemical Synapses01:26

Chemical Synapses

8.7K
Chemical synapses are specialized sites between two neurons or between a neuron and a non-neuronal cell like a muscle, glandular or sensory cell.
Because chemical synapses depend on the release of neurotransmitter molecules from synaptic vesicles to pass on their signal, there is an approximately one millisecond delay between when the axon potential reaches the presynaptic terminal and when the neurotransmitter leads to opening of postsynaptic ion channels. Additionally, this signaling is...
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Long-term Depression01:03

Long-term Depression

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Long-term depression, or LTD, is one of the ways by which synaptic plasticity—changes in the strength of chemical synapses—can occur in the brain. LTD is the process of synaptic weakening that occurs over time between pre and postsynaptic neuronal connections. The synaptic weakening of LTD works in opposition to synaptic strengthening by long-term potentiation (LTP) and together are the main mechanisms that underlie learning and memory.
Calcium Ion Concentration Mechanism
If over...
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TRPML1 positions lysosomes and regulates actin-membrane linkers in astrocyte processes.

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Differential regulation of p62-ubiquitin conjugates in neurons versus astrocytes during cellular stress.

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Differential regulation of p62-ubiquitin conjugates in neurons versus astrocytes during cellular stress.

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Autophagy and mitophagy at the synapse and beyond: implications for learning, memory and neurological disorders.

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Astrocytes mobilize a broader repertoire of lysosomal repair mechanisms than neurons.

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Sorting trash from treasure: Separate pathways for autophagy and endocytic trafficking in axons.

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相关实验视频

Updated: Jun 5, 2025

An Optical Assay for Synaptic Vesicle Recycling in Cultured Neurons Overexpressing Presynaptic Proteins
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An Optical Assay for Synaptic Vesicle Recycling in Cultured Neurons Overexpressing Presynaptic Proteins

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把垃圾变成黄金:突触功能中的自.

Erin Marie Smith1, Maeve Louise Coughlan1, Sandra Maday1

  • 1Department of Neuroscience, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA 19104, USA.

Current opinion in neurobiology
|December 12, 2024
PubMed
概括

宏观自 (自) 通过清除蛋白质,对维持大脑突触至关重要. 新兴研究表明,它还调节神经元活动,传播和可塑性.

科学领域:

  • 神经科学是一个神经科学.
  • 细胞生物学 细胞生物学

背景情况:

  • 突触对于大脑功能至关重要,需要不断重塑以获得灵活性.
  • 宏自 (自) 传统上可以清除受损的蛋白质,以维持神经元的生存.

研究的目的:

  • 探索神经元和质自在突触功能中的多面性作用.
  • 讨论自对突触过程的影响的调节和机制.

主要方法:

  • 关于神经元和质细胞自的现有文献的综述.
  • 对调查自与突触活动之间的联系的研究进行分析.

主要成果:

  • 自对于修剪突触蛋白质组至关重要.
  • 有证据表明,自会在对神经元活动的反应中降解特定的载荷.
  • 自会影响神经元传输,刺激性和突触可塑性.

结论:

  • 自作用在平衡之外发挥着动态作用,积极塑造突触功能.
  • 质细胞自也对突触调节作出了重大贡献.

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