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関連する概念動画

Positive Regulator Molecules01:45

Positive Regulator Molecules

To consistently produce healthy cells, the cell cycle—the process that generates daughter cells—must be precisely regulated.
The Cell Cycle Control System02:11

The Cell Cycle Control System

The cell cycle is an organized set of events that leads the cell to divide into two daughter cells, each containing chromosomes identical to the parent cell. It is the cell cycle that leads to the formation of an entire organism from a single-cell zygote. Besides, cell division also functions in the renewal or repair of tissues in adult multicellular eukaryotes. For example, in the bone marrow, the stem cells divide to form new blood cells. Although essential for several functions, cell...
Positive Regulator Molecules02:39

Positive Regulator Molecules

Mitotic cell division results in daughter cells that exactly resemble the parent cell. However, errors in the DNA replication or distribution of genetic material may lead to genetic mutations that may be passed down to every new cell formed from the resulting abnormal cell. Propagation of such mutant cells is restricted through checkpoint mechanisms present at different stages of the cell cycle. These checkpoints involve regulator molecules that either promote or demote cell cycle events.
The Cell Cycle Control System02:11

The Cell Cycle Control System

The cell cycle is an organized set of events that leads the cell to divide into two daughter cells, each containing chromosomes identical to the parent cell. It is the cell cycle that leads to the formation of an entire organism from a single-cell zygote. Besides, cell division also functions in the renewal or repair of tissues in adult multicellular eukaryotes. For example, in the bone marrow, the stem cells divide to form new blood cells. Although essential for several functions, cell...
The Cell Cycle Control System01:28

The Cell Cycle Control System

The cell cycle regulation directs how a cell proceeds from one phase to the next and begins mitosis. The cell cycle control system includes intracellular regulatory molecules and external triggers. They provide "stop" or "advance" signals and operate at specific cell cycle stages termed checkpoints to ensure that a particular process is completed before the cell advances to the next phase.
Cyclins and cyclin-dependent kinases (Cdks) are the primary cell cycle regulators and function at the cell...
Molecular Factors Affecting Cell Division01:27

Molecular Factors Affecting Cell Division

Several external and internal factors influence the initiation and inhibition of cell division. For instance, the death of nearby cells or the release of human growth hormone (hGH) promotes cell division. In contrast, lack of hGH or crowding of cells can inhibit cell division.
Several proteins function as internal regulators to ensure each cell cycle stage is completed faithfully before proceeding to the next. Regulator molecules may act directly or influence the activity or production of other...

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関連する実験動画

Updated: Jul 6, 2026

Studying Proteolysis of Cyclin B at the Single Cell Level in Whole Cell Populations
10:54

Studying Proteolysis of Cyclin B at the Single Cell Level in Whole Cell Populations

Published on: September 17, 2012

動的に局所化されたプロテアゼ複合体と極性特異性因子は,細胞周期の主調節器を制御する.

Patrick T McGrath1, Antonio A Iniesta, Kathleen R Ryan

  • 1Department of Physics, Stanford University, Stanford, CA 94305, USA.

Cell
|February 14, 2006
PubMed
まとめ

バクテリアの細胞周期は,制御されたタンパク質分解に依存しています. Caulobacterでは,ClpXPプロテアゼとRcdAタンパク質複合体は,CtrA調節器を標的とし,細胞極で分解し,適切な細胞サイクル進行を保証します.

科学分野:

  • 微生物学 微生物学とは
  • 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:

  • 調節されたタンパク質分解は,すべての生物の細胞サイクル進行に不可欠です.
  • ClpXPプロテアゼは,多くの細菌のタンパク質を分解する.
  • タンパク質の分解の精密な空間時間的制御は,細菌の細胞周期調節に不可欠です.

研究 の 目的:

  • カオロバクテルのClpXPプロテアゼの動的局所化と機能を調査する.
  • 細胞周期の主調節体CtrAが劣化するメカニズムを解明する.
  • バクテリアの細胞周期中のタンパク質分解の空間的調節に関与する要因を特定する.

主な方法:

  • ClpXPプロテアゼとRcdAタンパク質の細胞局所化研究.
  • カオロバクター変異体におけるCtrAタンパク質分解の分析.
  • CtrA,RcdA,ClpXを含むタンパク質複合体の形成アッセイ.

主要な成果:

  • ClpXPプロテアゼは,カオロバクテルの特定の細胞位置にダイナミックな局所化を示す.
  • 細胞循環の重要な調節体であるCtrAは,細胞極のClpXPによって分解される.

さらに関連する動画

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
12:02

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols

Published on: June 6, 2017

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast
08:13

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast

Published on: September 26, 2025

関連する実験動画

Last Updated: Jul 6, 2026

Studying Proteolysis of Cyclin B at the Single Cell Level in Whole Cell Populations
10:54

Studying Proteolysis of Cyclin B at the Single Cell Level in Whole Cell Populations

Published on: September 17, 2012

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
12:02

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols

Published on: June 6, 2017

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast
08:13

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast

Published on: September 26, 2025

  • 新しいタンパク質であるRcdAはCtrAとClpXと複合体を形成し,CtrAの極域の局所化と分解を媒介する.
  • RcdAの局所化は,ClpXの局所化に依存しています.
  • 結論:

    • 動的に局所化されたClpXPタンパク質分解複合体は,RcdAとともに,CtrAの劣化に時間的および空間的特異性を提供します.
    • このメカニズムは,CtrAの適切なクリアランスを確保し,Caulobacter.で染色体複製の開始を可能にします.
    • この発見は,標的型タンパク質の分解を介して細菌の細胞サイクル制御のための新しい調節経路を明らかにしています.