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Karyotyping01:17

Karyotyping

Describing the number and physical features of chromosomes can reveal abnormalities that underlie genetic diseases. This description is facilitated by special staining techniques that produce a particular banding pattern on each chromosome. State-of-the-art techniques make this approach even more powerful, enabling the detection of individual genes that cause disease.A Simple Chromosome Staining Technique Provides Valuable Scientific InsightSome genetic diseases can be detected by looking at...
Antibody Structure01:10

Antibody Structure

Overview
Antibodies, also known as immunoglobulins (Ig), are essential players of the adaptive immune system. These antigen-binding proteins are produced by B cells and make up 20 percent of the total blood plasma by weight. In mammals, antibodies fall into five different classes, which each elicits a different biological response upon antigen binding.
The Y-Shaped Structure of Antibodies Consists of Four Polypeptide Chains
Antibodies consist of four polypeptide chains: two identical heavy...
Protein Families02:47

Protein Families

Protein families are groups of homologous proteins; that is, they have similarities in amino acid sequences and three-dimensional structures. Protein families usually occur because of gene duplication, where an additional copy of a gene is inserted into the genome of an organism.   Mutations that change the amino acids but still allow the protein to be properly synthesized, will lead to new protein family members.   If these new proteins contain similar amino acids in key locations, protein...
Chromosome Structure02:40

Chromosome Structure

A functional eukaryotic chromosome must contain three elements: a centromere, telomeres, and numerous origins of replication.
The centromere is a DNA sequence that links sister chromatids. This is also where kinetochores, protein complexes to which spindle microtubules attach, are constructed after the chromosome is replicated. The kinetochores allow the spindle microtubules to move the chromosomes within the cell during cell division.
Telomeres consist of non-coding repetitive nucleotide...
Polytene Chromosomes02:04

Polytene Chromosomes

Polytene chromosomes are giant interphase chromosomes with several DNA strands placed side by side. They were discovered in the year 1881 by Balbiani in salivary glands, intestine, muscles, malpighian tubules, and hypoderm of larvae Chironomus plumosus. Hence, these are also called "Salivary gland chromosomes." These are found in insects of the order Diptera and Collembola; in certain organs of mammals; and synergids, antipodes of flowering plants. Polytene chromosomes are also regularly...
Fixation and Sectioning01:03

Fixation and Sectioning

Two basic types of preparation are used to visualize specimens with a light microscope: wet mounts and fixed specimens.
The simplest type of preparation is the wet mount, in which the specimen is placed in a drop of liquid on the slide. A liquid specimen can be directly deposited on the slide using a dropper. Solid specimens, such as skin scraping, can be placed on the slide before adding a drop of liquid to prepare the wet mount. Sometimes the liquid is simply water, but stains are often added...

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Updated: Jun 26, 2026

Chromosomics: Detection of Numerical and Structural Alterations in All 24 Human Chromosomes Simultaneously Using a Novel OctoChrome FISH Assay
06:25

Chromosomics: Detection of Numerical and Structural Alterations in All 24 Human Chromosomes Simultaneously Using a Novel OctoChrome FISH Assay

Published on: February 6, 2012

クロマチンの構造: ミニクロモソームから導かれる.

J D Griffith

    Science (New York, N.Y.)
    |March 28, 1975
    PubMed
    まとめ

    シミアンウイルス40 ウイルスに感染した細胞は,ウイルスDNAをミニ染色体として含んでいます. これらの構造は,それぞれ200塩基対の100アングストロムの長さに分割され,真核染色体に似ており,現在の染色体構造モデルをサポートしています.

    科学分野:

    • 分子生物学は分子生物学である.
    • ウイルス学 ウイルス学 ウイルス学
    • 細胞生物学 細胞生物学

    背景:

    • シミアンウイルス40 (SV40) は,分子生物学の研究で広く使用されている,よく特徴づけられたDNA腫瘍ウイルスです.
    • 感染した細胞内のウイルスDNAの組織を理解することで,宿主細胞のプロセスとウイルスの複製メカニズムに関する洞察を得ることができます.

    研究 の 目的:

    • リチックに感染した細胞内のシミアンウイルス40DNAの構造的組織を調査する.
    • ウイルスDNAの構造を真核染色体組織と比較する.

    主な方法:

    • 電子顕微鏡検査または生体物理技術 (詳細は抽象文に記載されていません) を用いてシミアンウイルス40感染細胞のDNA構造の分析.
    • DNAセグメントサイズと塩基対組成の特徴.

    主要な成果:

    • シミアンウイルス40のDNAは,感染した細胞の小さな染色体 (ミニ染色体) として存在します.
    • これらのミニ染色体は100アングストームの長さに分割されています.
    • 各セグメントには約200塩基対のDNAが含まれています.

    結論:

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    Simultaneous Multicolor Imaging of Biological Structures with Fluorescence Photoactivation Localization Microscopy
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    Simultaneous Multicolor Imaging of Biological Structures with Fluorescence Photoactivation Localization Microscopy

    Published on: December 10, 2013

    Harnessing the DNA Dye-triggered Side Population Phenotype to Detect and Purify Cancer Stem Cells from Biological Samples
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    関連する実験動画

    Last Updated: Jun 26, 2026

    Chromosomics: Detection of Numerical and Structural Alterations in All 24 Human Chromosomes Simultaneously Using a Novel OctoChrome FISH Assay
    06:25

    Chromosomics: Detection of Numerical and Structural Alterations in All 24 Human Chromosomes Simultaneously Using a Novel OctoChrome FISH Assay

    Published on: February 6, 2012

    Simultaneous Multicolor Imaging of Biological Structures with Fluorescence Photoactivation Localization Microscopy
    12:51

    Simultaneous Multicolor Imaging of Biological Structures with Fluorescence Photoactivation Localization Microscopy

    Published on: December 10, 2013

    Harnessing the DNA Dye-triggered Side Population Phenotype to Detect and Purify Cancer Stem Cells from Biological Samples
    09:57

    Harnessing the DNA Dye-triggered Side Population Phenotype to Detect and Purify Cancer Stem Cells from Biological Samples

    Published on: May 10, 2017

  • 類人猿ウイルス40ミニクロモソームの観察された構造は,真核染色体染色体と非常に似ています.
  • これらの発見は,最近提案された染色体構造のモデルと一致し,支持しています.