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関連する概念動画

Circadian Rhythms and Gene Regulation02:19

Circadian Rhythms and Gene Regulation

4.5K
The biological clock is involved in many aspects of regulating complex physiology in all animals. It was in 1935 when German zoologists, Hans Kalmus and Erwin Bünning, discovered the existence of circadian rhythm in Drosophila melanogaster. However, the internal molecular mechanisms behind the circadian clock remained a mystery until 1984, when Jeffrey C. Hall, Michael Rosbash, and Michael W. Young discovered the expression of the Per gene oscillating over a 24-hour cycle. In subsequent...
4.5K
The Cell Cycle Control System01:28

The Cell Cycle Control System

5.3K
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...
5.3K
The Cell Cycle Control System02:11

The Cell Cycle Control System

13.9K
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...
13.9K
Biological Clocks and Seasonal Responses02:45

Biological Clocks and Seasonal Responses

41.5K
The circadian—or biological—clock is an intrinsic, timekeeping, molecular mechanism that allows plants to coordinate physiological activities over 24-hour cycles called circadian rhythms. Photoperiodism is a collective term for the biological responses of plants to variations in the relative lengths of dark and light periods. The period of light-exposure is called the photoperiod.
41.5K
Molecular Factors Affecting Cell Division01:27

Molecular Factors Affecting Cell Division

3.8K
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...
3.8K
M-Cdk Drives Transition Into Mitosis02:15

M-Cdk Drives Transition Into Mitosis

6.2K
Checkpoints throughout the cell cycle serve as safeguards and gatekeepers, allowing the cell cycle to progress in favorable conditions and slow or halt it in problematic ones. This regulation is known as the cell cycle control system.
Cyclin-dependent kinases, or Cdks, work in concert with cyclins to control cell cycle transitions. M-Cdk, a complex of Cdk1 bound to M cyclin, is a well-known example of this coordinated control that drives the transition from the G2 to the M phase.
M cyclin...
6.2K

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関連する実験動画

Updated: Jan 13, 2026

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures
06:53

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures

Published on: November 11, 2016

8.8K

生物時計は核分裂を監視する

Colin Richard Gliech1, Andrew Jon Holland2

  • 1Division of Rheumatology, Department of Medicine, The Johns Hopkins University School of Medicine, Baltimore, MD, USA.

Nature cell biology
|January 6, 2026
PubMed
まとめ

正確な染色体分離は、がんを予防するために不可欠である。この研究は、新しい時計を探求する

科学分野:

  • 細胞生物学
  • ゲノム科学
  • がん研究

背景:

  • 正確な染色体分離は、発生異常やがんを予防するために不可欠である。
  • 細胞分裂のエラーは腫瘍形成と関連している。
  • 保護メカニズム、または核分裂時計は、細胞分裂中の忠実度を維持する。

研究 の 目的:

  • 核分裂のタイミングの理解における最近の進歩をレビューすること。
  • 新しい核分裂時計の出現に関する証拠を提示すること。
  • 細胞がゲノムの完全性を維持するために時間的合図をどのように使用するかについての枠組みを提案すること。

主な方法:

  • 最近の研究結果の文献レビューと統合。
  • 新しい核分裂時計に関する新たな証拠の分析。
  • 現在の理解に基づいた概念的枠組みの開発。

主要な成果:

  • 最近の進歩により、核分裂のタイミングの理解が深まった。
  • 新しい核分裂時計の存在を示唆する新たな証拠が現れている。
  • 細胞分裂における時間的合図を統合するための概念的枠組みが提案されている。
キーワード:
生物時計核分裂染色体分離腫瘍形成ゲノム安定性

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

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Live Cell Imaging to Assess the Dynamics of Metaphase Timing and Cell Fate Following Mitotic Spindle Perturbations
07:14

Live Cell Imaging to Assess the Dynamics of Metaphase Timing and Cell Fate Following Mitotic Spindle Perturbations

Published on: September 20, 2019

8.7K

関連する実験動画

Last Updated: Jan 13, 2026

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures
06:53

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures

Published on: November 11, 2016

8.8K
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

28.3K
Live Cell Imaging to Assess the Dynamics of Metaphase Timing and Cell Fate Following Mitotic Spindle Perturbations
07:14

Live Cell Imaging to Assess the Dynamics of Metaphase Timing and Cell Fate Following Mitotic Spindle Perturbations

Published on: September 20, 2019

8.7K

結論:

  • 核分裂のタイミングを理解することは、腫瘍形成を予防するための鍵である。
  • 新しい核分裂時計は、新しい治療標的を表す可能性がある。
  • 時間的合図を統合することは、ゲノムの完全性を維持するために不可欠である。