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関連する概念動画

CRISPR01:59

CRISPR

46.4K
Genome editing technologies allow scientists to modify an organism’s DNA via the addition, removal, or rearrangement of genetic material at specific genomic locations. These types of techniques could potentially be used to cure genetic disorders such as hemophilia and sickle cell anemia. One popular and widely used DNA-editing research tool that could lead to safe and effective cures for genetic disorders is the CRISPR-Cas9 system. CRISPR-Cas9 stands for Clustered Regularly Interspaced...
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Apoptosis01:30

Apoptosis

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Apoptosis is a combination of two Greek words, 'apo' and 'ptosis,' meaning separation and falling off, respectively. Hippocrates used this word to describe gangrene, which was caused due to bandaging of fractured bones. Apoptosis was distinguished from necrosis in 1970 when John Kerr reported observations of morphological changes occurring during apoptosis. During one experiment, he observed that the disruption of blood supply to the liver tissue resulted in a size...
12.0K
Caspases01:24

Caspases

8.7K
Caspase, a family of cysteine proteases, serve as effectors in apoptosis. The ced3 gene in C.elegans was first identified to be involved in apoptosis. This gene encodes the ced-3 caspase that is similar to the interleukin-1-beta converting enzyme or ICE in mammals. In addition to apoptosis, caspases also function in the inflammatory response. Inflammatory caspases are essential in activating pro-inflammatory cytokines that recruit immune cells and block the replication of pathogens inside...
8.7K
The Extrinsic Apoptotic Pathway01:17

The Extrinsic Apoptotic Pathway

6.2K
The extrinsic apoptotic pathway is initiated when extracellular death-inducing signals, such as specific cytokines, activate the death receptors expressed on the cell surface. The immune cells involved in this pathway are natural killer cells (NK cells) and cytotoxic T-lymphocytes. NK cells are critical in innate immune response, while cytotoxic T-lymphocytes are associated with adaptive immune response. These cells recognize specific receptors expressed on the altered cells and activate...
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The Intrinsic Apoptotic Pathway01:31

The Intrinsic Apoptotic Pathway

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Internal cellular stress, such as cellular injury or hypoxia, triggers intrinsic apoptosis. The B-cell lymphoma 2 (Bcl-2) family of proteins are the primary regulators of the intrinsic apoptotic pathway. For example, during DNA damage, checkpoint proteins, such as Ataxia Telangiectasia Mutated (ATM protein) and Checkpoints Factor-2 (Chk2) proteins, are activated. These proteins phosphorylate p53 which further activates pro-apoptotic proteins, such as Bax, Bak, PUMA, and Noxa, and inhibits...
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CRISPR/Cas9 Genome Editing01:28

CRISPR/Cas9 Genome Editing

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The CRISPR-Cas system serves as a bacterial defense mechanism against invading genetic elements such as viruses and plasmids, forming the foundation for its adaptation as a powerful genome-editing tool. Originally discovered in prokaryotes, this system has been repurposed to revolutionize genetic engineering across a wide range of organisms, including plants, animals, and humans. The core component, Cas9, is an endonuclease derived from Streptococcus pyogenes, capable of introducing...
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関連する実験動画

Updated: May 5, 2026

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
08:47

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation

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カスパース・クリバージュは,誰にでも向いているわけではありません.

Carrie E Johnson1, Sally Kornbluth

  • 1Department of Pharmacology and Cancer Biology, Duke University, Durham, NC 27710, USA.

Cell
|September 9, 2008
PubMed
まとめ

新しい研究は,アポトーシス中にこれまで知られていなかった数百のカスパース基板を特定しています. これらの基板は,潜在的に新しい機能を持つポリペプチド断片を生成し,プログラムされた細胞死の理解を前進させます.

科学分野:

  • 細胞生物学 細胞生物学
  • 分子生物学は分子生物学である.
  • バイオケミストリー バイオケミストリー

背景:

  • アポトーシス,またはプログラムされた細胞死は,カスパスが細胞基板を分裂することを含む.
  • この裂け方は,細胞の分解と包装を容易にし,細胞を除去します.

研究 の 目的:

  • アポトーシス中の新しいカスパース基板を特定するために.
  • 結果となるポリペプチド断片の機能的可能性を調査する.

主な方法:

  • カスパース分裂部位を特定するために新しいタンパク質学的アプローチを使用しました.
  • アポトーシス中に処理された細胞基板を分析した.

主要な成果:

  • 以前に認識されなかった数百のカスパース基板を特定しました.
  • 多くの基板が潜在的に新しい機能を持つポリペプチド断片を生成することを発見した.

結論:

  • この研究は,カスパース基板の既知のレパートリーを拡張しています.
  • 新しく特定された断片は,特徴づけられない生物学的活動を有し,細胞死とシグナル伝達に関する研究のための新しい道を開く可能性があります.

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