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Directing Proteins to the Rough Endoplasmic Reticulum01:34

Directing Proteins to the Rough Endoplasmic Reticulum

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...
Cotranslational Protein Translocation01:20

Cotranslational Protein Translocation

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...
Post-translational Translocation of Proteins to the RER01:27

Post-translational Translocation of Proteins to the RER

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...
Overview of Protein Sorting and Transport01:45

Overview of Protein Sorting and Transport

Eukaryotic cells have different membrane-bound organelles with distinct protein requirements. The process by which proteins are targeted to a specific organelle is called protein sorting.
Protein sorting can be of two types: signal-based sorting and vesicle-based trafficking. In signal-based sorting, specific amino acid sequences called sorting signals target proteins to the proper location inside the cell either via gated transport or by protein translocation.  In gated transport, folded...
Improving Translational Accuracy02:07

Improving Translational Accuracy

Base complementarity between the three base pairs of mRNA codon and the tRNA anticodon is not a failsafe mechanism. Inaccuracies can range from a single mismatch to no correct base pairing at all. The free energy difference between the correct and nearly correct base pairs can be as small as 3 kcal/ mol. With complementarity being the only proofreading step, the estimated error frequency would be one wrong amino acid in every 100 amino acids incorporated. However, error frequencies observed in...
Protein Transport to the Thylakoids01:22

Protein Transport to the Thylakoids

Thylakoids are membrane-bound sac-like structures within the chloroplast that serve as sites for photosynthesis. Thylakoid lumen contains many electron transport proteins and is enclosed by a thylakoid membrane rich in the light-harvesting complex. Proteins targeted to the thylakoids are transported as precursors and are sorted by the general TOC/TIC import pathway. Once the precursor reaches the stroma, stromal processing peptidases remove their transit signal and expose thylakoid signal...

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Updated: Jun 13, 2026

Quantitative Immunofluorescence to Measure Global Localized Translation
09:13

Quantitative Immunofluorescence to Measure Global Localized Translation

Published on: August 22, 2017

配列的チェックポイントは,コトランスレーション性タンパク質ターゲティングの際に基板の選択を統制する.

Xin Zhang1, Rumana Rashid, Kai Wang

  • 1Division of Chemistry and Chemical Engineering, California Institute of Technology, 1200 East California Boulevard, Pasadena, CA 91125, USA.

Science (New York, N.Y.)
|May 8, 2010
PubMed
まとめ

バクテリアにおける高精度タンパク質ターゲティングは,初期結合だけでなく,複数のチェックポイントに依存しています. 信号認識粒子 (SRP) 経路は,連続した選択ステップを通じて正しいタンパク質の配送を保証します.

科学分野:

  • 分子生物学は分子生物学である.
  • 細胞生物学 細胞生物学
  • バイオフィジックス 生物物理学

背景:

  • タンパク質の正確な局所化は,細胞の機能にとって極めて重要です.
  • タンパク質ターゲティング経路の高精度を保証する正確なメカニズムは,ほとんど未知のままです.
  • E. coli の信号認識粒子 (SRP) 経路は,信号配列を介してタンパク質を細菌の内膜に標的にします.

研究 の 目的:

  • バクテリアのSRP経路における高信頼性の基礎となるメカニズムを調査する.
  • SRP経路が貨物タンパク質の正確な選択をどのように達成するのかを判断する.

主な方法:

  • タンパク質と貨物の相互作用を研究するために生体物理学的分析を用いた.
  • Escherichia coli.におけるSRPターゲティング経路の連続的なステップを分析した.

主要な成果:

  • ハイフィデリティは,SRPが貨物との初期結合 afinity にのみ依存するものではありません.
  • 間違った貨物タンパク質は,ターゲティングプロセス中に複数のチェックポイントを介して拒絶されます.
  • これらのチェックポイントは,タンパク質の正確な局所化を確実にするために,累積的に作用します.

さらに関連する動画

Global Identification of Co-Translational Interaction Networks by Selective Ribosome Profiling
06:58

Global Identification of Co-Translational Interaction Networks by Selective Ribosome Profiling

Published on: October 7, 2021

Using SecM Arrest Sequence as a Tool to Isolate Ribosome Bound Polypeptides
09:42

Using SecM Arrest Sequence as a Tool to Isolate Ribosome Bound Polypeptides

Published on: June 19, 2012

関連する実験動画

Last Updated: Jun 13, 2026

Quantitative Immunofluorescence to Measure Global Localized Translation
09:13

Quantitative Immunofluorescence to Measure Global Localized Translation

Published on: August 22, 2017

Global Identification of Co-Translational Interaction Networks by Selective Ribosome Profiling
06:58

Global Identification of Co-Translational Interaction Networks by Selective Ribosome Profiling

Published on: October 7, 2021

Using SecM Arrest Sequence as a Tool to Isolate Ribosome Bound Polypeptides
09:42

Using SecM Arrest Sequence as a Tool to Isolate Ribosome Bound Polypeptides

Published on: June 19, 2012

結論:

  • SRP経路における高精度基板選択は,一連のチェックポイントから得られます.
  • この複数のチェックポイントの原則は,他の選択的信号認識経路にも広く適用できるかもしれません.
  • これらのメカニズムを理解することは,基本的な細胞のプロセスを理解するための鍵です.