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関連する概念動画

Negative Regulator Molecules01:23

Negative Regulator Molecules

Positive regulators allow a cell to advance through cell cycle checkpoints. Negative regulators have an equally important role as they terminate a cell’s progression through the cell cycle—or pause it—until the cell meets specific criteria.
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...
Inhibition of Cdk Activity02:34

Inhibition of Cdk Activity

The orderly progression of the cell cycle depends on the activation of Cdk protein by binding to its cyclin partner. However, the cell cycle must be restricted when undergoing abnormal changes. Most cancers correlate to the deregulated cell cycle, and since Cdks are a central component of the cell cycle, Cdk inhibitors are extensively studied to develop anticancer agents. For instance, cyclin D associates with several Cdks, such as Cdk 4/6, to form an active complex. The cyclin D-Cdk4/6 complex...
What is the Cell Cycle?00:56

What is the Cell Cycle?

The cell cycle refers to the sequence of events occurring throughout a typical cell’s life. In eukaryotic cells, the somatic cell cycle has two stages: the interphase and the mitotic phase. During interphase, the cell grows, performs its basic metabolic functions, copies its DNA, and prepares for mitotic cell division. Then, during mitosis and cytokinesis, the cell divides its nuclear and cytoplasmic materials, respectively. This generates two daughter cells that are identical to the original...
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...

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関連する実験動画

Updated: May 8, 2026

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
06:00

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics

Published on: May 14, 2016

G1 細胞サイクル制御とがん

Joan Massagué1

  • 1Cancer Biology and Genetics Program, and Howard Hughes Medical Institute, Box 116, Memorial Sloan Kettering Cancer Center, 1275 York Avenue, New York 10021, USA. j-massague@ski.mskcc.org

Nature
|November 19, 2004
PubMed
まとめ

G1フェーズ中の細胞周期調節は,がんの予防に不可欠です. G1シグナリングネットワークの理解は,標的を絞ったがん治療の開発に新たな道を開く.

科学分野:

  • 細胞生物学 細胞生物学
  • 分子腫瘍学 分子腫瘍学

背景:

  • G1段階は,DNA複製に先立つ細胞サイクルにおける重要なチェックポイントです.
  • G1中の細胞信号は,細胞分裂と運命を決定し,がん発症に繋がる誤差がある.

研究 の 目的:

  • G1段階を制御する複雑なシグナリングネットワークを解明する.
  • G1シグナル伝達の障害が腫瘍形成にどのように寄与するかを特定する.
  • ガン治療のためのG1経路を標的とした治療戦略を探求する.

主な方法:

  • G1相信号伝達経路の分析.
  • 細胞運命を決定するG1ネットワークの整合性の役割を調査する.
  • G1信号ダイナミクスの計算モデリング.

主要な成果:

  • 主要なG1信号構成要素とその相互作用の詳細なマッピング.
  • 様々な悪性腫瘍に関連した特定のシグナル伝達異常の特定.
  • 細胞の成長,増殖,およびストレス反応の調整におけるG1ネットワークの役割の実証.

結論:

  • G1信号ネットワークの包括的な理解は,がんの起源を定義するために不可欠です.

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

Preparation of Primary Acute Lymphoblastic Leukemia Cells in Different Cell Cycle Phases by Centrifugal Elutriation
09:09

Preparation of Primary Acute Lymphoblastic Leukemia Cells in Different Cell Cycle Phases by Centrifugal Elutriation

Published on: November 10, 2017

関連する実験動画

Last Updated: May 8, 2026

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
06:00

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics

Published on: May 14, 2016

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

Preparation of Primary Acute Lymphoblastic Leukemia Cells in Different Cell Cycle Phases by Centrifugal Elutriation
09:09

Preparation of Primary Acute Lymphoblastic Leukemia Cells in Different Cell Cycle Phases by Centrifugal Elutriation

Published on: November 10, 2017

  • G1の調節メカニズムをターゲットにすることは,新しいがん治療法にとって有望である.