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関連する概念動画

Centrioles and Centrosomes01:13

Centrioles and Centrosomes

Most animal cells comprise a pair of centrioles together called a centrosome. The cell duplicates its centrosome and contains two centrosomes side-by-side, which begin to move apart during the prophase. As the centrosomes migrate to two different sides of the cell, microtubules start extending from each centrosome toward the other end. The mitotic spindle is composed of the centrosomes and their emerging microtubules.
Near the end of the prophase, also called late prophase or "prometaphase,"...
Centrosome Duplication02:25

Centrosome Duplication

The primary microtubule organizing center (MTOC) in animal cells is the centrosome. A centrosome has two cylindrical centrioles at its core. Each centriole consists of nine sets of three microtubules held together by proteins. The centrioles are positioned at right angles to each other and surrounded by a shapeless protein cloud called the pericentriolar matrix, or pericentriolar material (PCM).
To ensure that each daughter cell receives a centrosome after cell division, centrosome duplication...
Centrosome Duplication02:25

Centrosome Duplication

The primary microtubule organizing center (MTOC) in animal cells is the centrosome. A centrosome has two cylindrical centrioles at its core. Each centriole consists of nine sets of three microtubules held together by proteins. The centrioles are positioned at right angles to each other and surrounded by a shapeless protein cloud called the pericentriolar matrix, or pericentriolar material (PCM).
To ensure that each daughter cell receives a centrosome after cell division, centrosome duplication...
Histone Variants at the Centromere02:30

Histone Variants at the Centromere

Histone variants are the histone proteins with structural and sequence variations. These variants may be regarded as “mutant” forms that replace their canonical histone counterparts in the nucleosomes. Specific post-translational modifications on the histone variants enable further chromatin complexity and regulate tissue-specific gene expression. The most common histone variants are from histone H2A, H2B, and linker histone H1 families. However, several variants of histone H3 variants are also...
The Mitotic Spindle02:27

The Mitotic Spindle

The mitotic spindle—or spindle apparatus—is a eukaryotic, cytoskeletal structure made up of long protein fibers called microtubules. Formed during cell division, the spindle separates sister chromatids and moves them to opposite ends of a parental cell, where the now individual chromosomes are distributed to two daughter cell nuclei.
The bipolar configuration of the mitotic spindle facilitates chromosomal segregation, preparing the cell for division. One mechanism that ensures bipolar mitotic...
The Mitotic Spindle02:27

The Mitotic Spindle

The mitotic spindle—or spindle apparatus—is a eukaryotic, cytoskeletal structure made up of long protein fibers called microtubules. Formed during cell division, the spindle separates sister chromatids and moves them to opposite ends of a parental cell, where the now individual chromosomes are distributed to two daughter cell nuclei.
The bipolar configuration of the mitotic spindle facilitates chromosomal segregation, preparing the cell for division. One mechanism that ensures bipolar mitotic...

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Acto-myosin network geometry defines centrosome position.

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Centrosome organization and functions.

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A helical inner scaffold provides a structural basis for centriole cohesion.

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A moment at the cell centre.

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関連する実験動画

Updated: May 25, 2026

Imaging Centrosomes in Fly Testes
09:41

Imaging Centrosomes in Fly Testes

Published on: September 20, 2013

細胞や生物のセンターソーム.

Michel Bornens1

  • 1UMR144 du Centre Nationale de la Recherche Scientifique, Institut Curie, 26 rue d'Ulm, Paris Cedex 05, France. mbornens@curie.fr

Science (New York, N.Y.)
|January 28, 2012
PubMed
まとめ

細胞分裂と二極性にとって不可欠なセンターソームは,すべての生物に普遍的に存在するわけではありません. 核の位置づけと胚の極性定義におけるその役割は,その進化的意義を強調する.

科学分野:

  • 細胞生物学 細胞生物学
  • 進化生物学の進化生物学について
  • 遺伝学 遺伝学とは

背景:

  • セントロソームは,動物細胞の主要な微小管核形成器官である.
  • これはミトスのスパインドルの指向とゲノム安定性の維持に不可欠です.
  • セントロソームは,いくつかの多細胞生物や特定の細胞タイプでは存在しない.

研究 の 目的:

  • 細胞の極性形成におけるセンターソームの役割について説明します.
  • センターソーム機能が核の位置づけにどのように影響するかを探求する.
  • センターソームイノベーションがメタゾオンの進化に与える潜在的な影響を調査する.

主な方法:

  • センターソーム機能に関する既存の文献のレビュー.
  • 細胞分裂と極性におけるセンターソームの役割の分析.
  • センターソームの存在と機能の比較進化的分析.

主要な成果:

  • セントロソームの繁殖は,子細胞に極性を伝達する.
  • 精子提供されたセンターソームは,通常,胚の極性性を確立します.
  • セントロソームは,細胞内の核を中心に位置させるための鍵です.

さらに関連する動画

Quantitative Immunofluorescence Assay to Measure the Variation in Protein Levels at Centrosomes
09:39

Quantitative Immunofluorescence Assay to Measure the Variation in Protein Levels at Centrosomes

Published on: December 20, 2014

Isolation and Fluorescence Imaging for Single-particle Reconstruction of Chlamydomonas Centrioles
10:38

Isolation and Fluorescence Imaging for Single-particle Reconstruction of Chlamydomonas Centrioles

Published on: September 21, 2018

関連する実験動画

Last Updated: May 25, 2026

Imaging Centrosomes in Fly Testes
09:41

Imaging Centrosomes in Fly Testes

Published on: September 20, 2013

Quantitative Immunofluorescence Assay to Measure the Variation in Protein Levels at Centrosomes
09:39

Quantitative Immunofluorescence Assay to Measure the Variation in Protein Levels at Centrosomes

Published on: December 20, 2014

Isolation and Fluorescence Imaging for Single-particle Reconstruction of Chlamydomonas Centrioles
10:38

Isolation and Fluorescence Imaging for Single-particle Reconstruction of Chlamydomonas Centrioles

Published on: September 21, 2018

結論:

  • センターソームは,細胞の極性および核の組織に不可欠です.
  • セントロソームの革新は,メタゾアンの進化の重要な要因であったかもしれない.