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関連する概念動画

Role of ER in the Secretory Pathway01:17

Role of ER in the Secretory Pathway

6.4K
Eukaryotic cells have a special pathway that enables communication between various intracellular membrane-bound compartments and also with the extracellular environment. This pathway is termed as the secretory pathway.
Components of the secretory pathway
About a third of proteins synthesized in the cell are sorted via the secretory route. They shuffle between different compartments in membrane-bound vesicles until they reach their final destination. The main intracellular compartments involved...
6.4K
Overview of Secretory Vesicles01:33

Overview of Secretory Vesicles

8.9K
Secretory vesicles, also known as dense core vesicles (DCVs), are membrane-bound vesicles that transport secretory proteins, such as hormones or neurotransmitters. Regulated secretory vesicles transport proteins from the trans-Golgi network to the exterior of the cell. Proteins present in regulated secretory vesicles are required to be rapidly exocytosed in large amounts upon a specific stimulus.
Various proteins regulate the aggregation of molecules inside the secretory vesicles. Chromogranins...
8.9K
Fusion of Secretory Vesicles with the Plasma Membrane01:26

Fusion of Secretory Vesicles with the Plasma Membrane

16.0K
Proteins and neurotransmitters in secretory vesicles can be released from a cell upon vesicle docking, priming, and fusion with the plasma membrane. Vesicles are docked and primed in preparation for the quick exocytosis of their contents in response to a stimulus. The fusion process is mainly carried out by a SNAP Receptor or SNARE complex, consisting of synaptobrevin, syntaxin-1, and SNAP-25.
In 1993, Jim Rothman proposed that the antiparallel pairing of vesicular and transmembrane SNAREs, or...
16.0K
Mitochondrial Precursor Proteins01:39

Mitochondrial Precursor Proteins

2.9K
Mitochondrial precursors are partially unfolded or loosely folded polypeptide chains. Newly synthesized precursors are inhibited from spontaneously folding into their native conformation by the cytosolic chaperones, heat shock proteins 70 (Hsp70), and mitochondrial import stimulation factors (MSFs). Precursors bound to MSFs are guided to the TOM70-TOM37 receptors, while precursors bound to Hsp70  chaperones are targetted to TOM20-TOM22 receptor complexes.
Most of the mitochondrial...
2.9K
Translocation of Proteins into the Mitochondria01:19

Translocation of Proteins into the Mitochondria

8.9K
Mitochondrial precursors are translocated to the internal subcompartments via independent mechanisms involving distinct protein machineries called translocases.
Sorting of outer membrane proteins:
Mitochondrial outer membrane proteins are of two types: the transmembrane, beta-barrel porins, and the membrane-anchored, alpha-helical proteins. Beta-barrel porin precursors are translocated by the TOM complex and inserted into the outer mitochondrial membrane by the SAM complex. In contrast,...
8.9K
COP Coated Vesicles00:59

COP Coated Vesicles

12.8K
Membrane-enclosed structures called vesicles transport proteins and lipids across the cell. The vesicles derive their cargo from the plasma membrane, Golgi, ER, or endosome. Coated vesicles are spherical, protein-coated carriers with a 50–100 nm diameter that mediate bidirectional transport between the ER and the Golgi. The distribution of proteins between the ER and Golgi complex is dynamic and is maintained by different coated vesicles. Their formation is driven by the assembly of...
12.8K

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関連する実験動画

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Preparation of Synaptic Plasma Membrane and Postsynaptic Density Proteins Using a Discontinuous Sucrose Gradient
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Preparation of Synaptic Plasma Membrane and Postsynaptic Density Proteins Using a Discontinuous Sucrose Gradient

Published on: September 3, 2014

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共通の前駆体から派生した複数のニューロペプチドは,差異的にパッケージされ,輸送されます.

J M Fisher1, W Sossin, R Newcomb

  • 1Department of Biological Sciences, Stanford University, California 94305.

Cell
|September 9, 1988
PubMed
まとめ

産卵ホルモン (ELH) プロホルモンは,アプリシアの産卵行動を制御するペプチドを生成します. これらのペプチドは,早期の分裂とゴルギの分類を含むプロセスを通して,それらのレベルと局所を調節し,異なる膀に分類されます.

科学分野:

  • 神経生物学 神経生物学とは
  • 分子生物学は分子生物学である.
  • 細胞生物学 細胞生物学

背景:

  • アプリシアの産卵ホルモン (ELH) プロホルモンは,複数の生物活性ペプチドの前駆体です.
  • これらのペプチドは,産卵などの複雑な行動を調節することが知られている.

研究 の 目的:

  • ELHプロホルモンから派生したペプチドの細胞内処理および分類機構を調査する.
  • これらのメカニズムがニューロン内の個々のペプチドの局所化と安定状態のレベルにどのように影響するかを理解する.

主な方法:

  • 定量免疫細胞化学はペプチドの分布を視覚化および定量化するために使用されました.
  • 実験は,タンパク質分解分裂とトランス・ゴルギ分類経路に焦点を当てた.

主要な成果:

  • ELHプロホルモンの処理により,少なくとも9種類の異なるペプチドが生成されます.
  • ペプチドは特定の膀のクラスに分類され,細胞内密輸が規制されていることを示唆しています.
  • アミノ端末ペプチド (例えば,袋細胞ペプチド) は,カルボキシ端末ペプチド (例えば,ELH) よりも安定状態レベルが低い.

結論:

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Multi-Faceted Mass Spectrometric Investigation of Neuropeptides in Callinectes sapidus
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Cell Subtype-specific Analysis of Neuronal Membrane Proteasome in Somatosensory Neurons
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Preparation of Synaptic Plasma Membrane and Postsynaptic Density Proteins Using a Discontinuous Sucrose Gradient
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Multi-Faceted Mass Spectrometric Investigation of Neuropeptides in Callinectes sapidus
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  • 細胞内包装とルーティングメカニズムは,単一のプロホルモンから派生したペプチドの異なる局所化と豊富さを決定する上で重要な役割を果たします.
  • これらのプロセスは,Aplysia.のニューロン機能と行動の調節に不可欠です.