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相关概念视频

Directing Proteins to the Rough Endoplasmic Reticulum01:34

Directing Proteins to the Rough Endoplasmic Reticulum

16.9K
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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Translational Regulation01:29

Translational Regulation

533
Translational regulation in prokaryotes ensures efficient protein synthesis by controlling ribosome access to mRNA. This regulation is mediated by secondary RNA structures, including translational riboswitches, RNA thermometers, and small RNAs (sRNAs), which respond to intracellular and environmental signals to modulate gene expression.Translational RiboswitchesRiboswitches in the leader region of mRNAs can regulate translation by altering the accessibility of the Shine-Dalgarno (SD) sequence,...
533
Regulation of Expression Occurs at Multiple Steps02:24

Regulation of Expression Occurs at Multiple Steps

25.7K
Gene expression can be regulated at almost every step from gene to protein. Transcription is the step that is most commonly regulated. This involves the binding of proteins to short regulatory sequences on the DNA. This association can either promote or inhibit the transcription of a gene associated with the respective sequence.
Transcription results in the generation of precursor (pre-mRNA) that consists of both exons and introns, which needs further processing before being translated to a...
25.7K
Regulation of Expression at Multiple Steps01:23

Regulation of Expression at Multiple Steps

1.3K
The gene expression in cells is regulated at different stages: (i) transcription, (ii) RNA processing, (iii) RNA localization, and (iv) translation. Transcriptional regulation is mediated by regulatory proteins such as transcription factors, activators, or repressors—these control gene expression by initiating or inhibiting the transcription of genes. Once a precursor or pre-mRNA is produced, it undergoes post-transcriptional modification, including 5' capping, splicing, and the...
1.3K
Post-translational Translocation of Proteins to the RER01:27

Post-translational Translocation of Proteins to the RER

7.5K
A sizable fraction of proteins destined for ER are first synthesized in the cell cytosol and then transported across the ER membrane–a process called post-translational translocation. Similar to cotranslationally translocated proteins, these proteins also use the Sec translocon complex to enter the ER lumen.
Targeting proteins to the ER
Hsp40 and Hsp70 chaperone molecules bind the translated proteins in the cytosol to prevent their folding. The chaperone binding helps to keep the signal...
7.5K
Cotranslational Protein Translocation01:20

Cotranslational Protein Translocation

9.6K
Translocation of proteins across membranes is an ancient process that occurs even in bacteria and archaebacteria. In fact, the components of the translocation machinery are still conserved between prokaryotes and eukaryotes.
Sec61 channel partners for cotranslational translocation
During cotranslational translocation, the Sec61 channel partners with the signal recognition particle (SRP), the signal recognition particle receptor (SR), and the ribosomes to transport the nascent polypeptide chain...
9.6K

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Updated: Jan 15, 2026

Quantitative Immunofluorescence to Measure Global Localized Translation
09:13

Quantitative Immunofluorescence to Measure Global Localized Translation

Published on: August 22, 2017

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在翻译过程中信号识别粒子的时间调节.

Ruilin Qian1, Radoslaw J Gora1, Sowmya Chandrasekar1

  • 1Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.

Journal of molecular biology
|October 11, 2025
PubMed
概括

信号识别粒子 (SRP) 随着新生链条的延长而失去将蛋白质向ER的能力. 新生的聚相关复合体 (NAC) 进一步阻碍了SRP功能,限制了共翻译向.

科学领域:

  • 分子生物学分子生物学
  • 细胞生物学 细胞生物学
  • 生物化学 生化学

背景情况:

  • 信号识别粒子 (SRP) 对于将蛋白质导向到内质网膜 (ER) 至关重要.
  • SRP将信号序列绑定到从核糖体中出现的新生蛋白质上.
  • 随着新生链条长度的增加,SRP准能力丧失的机制尚未完全理解.

研究的目的:

  • 调查SRP准能力丧失的分子机制,因为新生的多链变长.
  • 阐明新生聚相关复合体 (NAC) 在蛋白质合成过程中调节SRP功能的作用.

主要方法:

  • 使用了稳态和单分子光谱学.
  • 采用福斯特共振能量转移 (FRET) 试验来监测信号序列动态.
  • 研究了SRP与携带不同长度新生链的核糖体的相互作用.

主要成果:

  • 较长的新生链增加了来自SRP的信号序列的动态外出,导致了低于最佳的SRP构造.
  • 在较长的新生链中观察到SRP和SRP受体 (SR) 之间的相互作用动力学受损.
  • NAC放大了较长的新生链对SRP的抑制作用,进一步将其排除在ER向之外.

结论:

关键词:
针对蛋白质的向.核糖体的核糖体是指核糖体中的核糖体.信号识别粒子 信号识别粒子信号序列的信号序列.单个分子光的光.

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  • 新生聚的延长显著影响SRP的形状和活性.
  • 在SRP功能的时间调节中,NAC起着至关重要的作用.
  • 这些因素共同创造了一个有限的窗口,用于共同翻译的ER蛋白向.