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相关概念视频

The Early Endosome: Endocytosis of Transferrin01:28

The Early Endosome: Endocytosis of Transferrin

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Essential proteins such as insulin or low-density lipoprotein (LDL) and micronutrients such as iron enter a eukaryotic cell through receptor-mediated endocytosis. Subsequently, the early endosomes fuse with the vesicles containing such receptor-ligand complexes and play a vital role in sorting the incoming ligands and receptors. While the ligands are either degraded inside the vesicle or released into the cytosol, their receptors are returned to the plasma membrane for further rounds of...
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Tail-anchoring of Proteins in the ER Membrane01:45

Tail-anchoring of Proteins in the ER Membrane

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Tail-anchored, or TA, proteins are estimated to make up to 3-5% of membrane proteins found in the eukaryotic cell. Such proteins have a single transmembrane domain located approximately 30 amino acid residues upstream from the C-terminal end. As a result, the signal recognition particle (SRP) cannot guide a TA protein to the ER membrane for cotranslational insertion. Hence, they are integrated into the ER membrane post-translationally using their C-terminal end as the anchor. TA proteins...
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Directing Proteins to the Rough Endoplasmic Reticulum01:34

Directing Proteins to the Rough Endoplasmic Reticulum

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The organelle-specific signaling sequences direct proteins synthesized in the cytosol to their final destination like ER, mitochondria, peroxisomes, etc. Some of the proteins directed to ER are then trafficked via vesicles to other organelles within the cell or the extracellular environment through the Golgi complex. For example, the rough ER synthesizes soluble proteins for transportation to the lysosomes or secretion out of the cell. It can also synthesize transmembrane proteins that can...
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Insertion of Single-pass Transmembrane Proteins in the RER01:26

Insertion of Single-pass Transmembrane Proteins in the RER

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Integral membrane proteins are proteins adhered to the lipid bilayer of a cell organelle or membrane. They can be of two types: transmembrane integral proteins that span the lipid bilayer and monotopic proteins that are attached to either side of the membrane but do not pass through it.
Integral transmembrane proteins possess transmembrane and extra membrane domains. The transmembrane domains are primarily made of 20-25 hydrophobic amino acids arranged in a helical secondary confirmation. These...
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Insertion of Multi-pass Transmembrane Proteins in the RER01:29

Insertion of Multi-pass Transmembrane Proteins in the RER

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The rough ER membrane synthesizes, assembles, and embeds transmembrane proteins in diverse topologies. These proteins function as transporters or channels and can remain in the ER membrane or are sent to the Golgi complex, lysosome, and cell membrane.
The multipass transmembrane proteins are the type IV integral membrane proteins with multiple topogenic sequences determining their spatial arrangement in the ER membrane. Nearly all multipass proteins lack a cleavable signal sequence and use...
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Structure of Porins01:21

Structure of Porins

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Mitochondria, chloroplasts, and gram-negative bacteria have transmembrane, beta-barrel proteins called porins to mediate the free diffusion of ions and metabolites across the membrane. Mitochondrial porin precursors contain conserved amino acid sequences called beta signals at their C-terminal. Beta signals have a  motif of PoXGXXHyXHy (Po-Polar, X-Any amino acid, G-Glycine, Hy-LargeHydrophobic), which are crucial for precursor recognition to initiate precursor assembly. Beta-barrel...
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相关实验视频

Updated: Jun 22, 2025

Monitoring Conformational Dynamics of Single Unmodified Proteins using Plasmonic Nanotweezers
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封装费里类蛋白质:一个结构视角

Elif Eren1, Norman R Watts1, Felipe Montecinos1

  • 1Protein Expression Laboratory, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

Biomolecules
|June 27, 2024
PubMed
概括

封装素是细菌纳米隔间,含有类似费里的蛋白质 (FLP),可以处理铁. 这些FLP显示出生物传感器,生物反应器和治疗药物的前景,因为它们的铁处理能力.

科学领域:

  • 生物化学 生物化学
  • 分子生物学分子生物学
  • 纳米技术 纳米技术

背景情况:

  • 囊素是细菌和古生物体中发现的自我组装的蛋白质纳米结构.
  • 它们封装了特定的载荷蛋白,促进了新陈代谢过程,并保护了细胞组件.
  • 费里类蛋白 (FLP) 是关键的载荷,控制铁的稳态和氧化应激.

研究的目的:

  • 本综述侧重于封装的费里类蛋白 (FLP).
  • 它强调它们在铁代谢中的作用以及它们的潜在应用.
  • 该审查探讨了FLP作为生物传感器,生物反应器和治疗点.

主要方法:

  • 关于封装素和封装FLP的研究的文献综述.
  • 在铁氧化和储存中分析FLP结构功能关系.
  • 探索当前和潜在的生物技术和生物医学应用.

主要成果:

  • 封装的FLP有效地将铁 (Fe+2) 转化为铁 (Fe+3) 用于储存.
  • 这一过程对于铁的稳定性和对氧化应激的保护至关重要.
  • 在铁催化过程中,FLP表现出高的特异性和效率.
关键词:
细菌性费里素是一种细菌性费里素.细菌化物中的细菌化物.封装中的胰岛素.类似于费里的蛋白质.铁氧化酶是一种铁氧化.铁是铁,铁是铁,铁是铁.金属的平衡是金属的平衡.

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结论:

  • 封装FLP是多功能纳米机器,在生物医学和生物技术方面具有重大潜力.
  • 它们的应用包括开发新的生物传感器和生物反应器.
  • 此外,FLP也在接受癌症和传染病治疗干预的研究.