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相关概念视频

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...
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...
Leaky Scanning02:28

Leaky Scanning

During most eukaryotic translation processes, the small 40S ribosome subunit scans an mRNA from its 5' end until it encounters the first start AUG codon. The large 60S ribosomal subunit then joins the smaller one to initiate protein synthesis. The location of the translation initiation is largely determined by the nucleotides near the start codon as there may be multiple translation initiation sites present on the mRNA.  Marilyn Kozak discovered that the sequence RCCAUGG (where R stands for...
Nucleic Acid Structure01:25

Nucleic Acid Structure

The pentose sugar in DNA is deoxyribose, while in RNA the pentose sugar is ribose. The difference between the sugars is the presence of the hydroxyl group on the ribose's second carbon and a hydrogen on the deoxyribose's second carbon. The phosphate residue attaches to the hydroxyl group of the 5′ carbon of one sugar and the hydroxyl group of the 3′ carbon of the sugar of the next nucleotide, which forms  a 5′ to 3′ phosphodiester linkage.
DNA Structure
DNA has a double-helix structure. The...
Diversity of Antigen Receptors01:28

Diversity of Antigen Receptors

Antigen receptors are essential components of the immune system crucial in defending the body against foreign invaders. These receptors are present on the surface of B and T cells, enabling them to recognize antigens and mount an appropriate immune response.
Before encountering any antigen, lymphocytes express these receptors. On B cells, the antigen receptor is a membrane-bound antibody molecule called BCR; on T cells, it is a T cell receptor or TCR. B and T cell receptors are composed of two...
Antibody Structure and Classes01:25

Antibody Structure and Classes

Antibodies, also known as immunoglobulins, are produced by B cells in response to foreign substances, such as bacteria and viruses. These proteins are critical for recognizing and neutralizing these substances, protecting the body from potential harm.
The basic structure of an antibody consists of four protein chains: two identical heavy chains and two identical light chains. These chains are held together by disulfide bonds and other non-covalent interactions, forming a Y-shaped structure.

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相关实验视频

Updated: Jun 7, 2026

High-resolution Melting PCR for Complement Receptor 1 Length Polymorphism Genotyping: An Innovative Tool for Alzheimer's Disease Gene Susceptibility Assessment
07:26

High-resolution Melting PCR for Complement Receptor 1 Length Polymorphism Genotyping: An Innovative Tool for Alzheimer's Disease Gene Susceptibility Assessment

Published on: July 18, 2017

人类DR抗原的结构多态性.

J Silver, S Ferrone

    Nature
    |May 31, 1979
    PubMed
    概括

    人类白细胞抗原 (HLA) DR抗原是细胞表面分子,对免疫功能至关重要. 研究揭示了DR抗原的结构变异,可能解释疾病关联和免疫反应调节.

    科学领域:

    • 免疫学 免疫学 免疫学
    • 遗传学 遗传学 是一个
    • 分子生物学分子生物学

    背景情况:

    • DR抗原是多态的细胞表面分子,与人类的主要基因相容性复合体 (MHC) 相关.
    • 它们与小鼠La抗原同源,在T细胞,B细胞和巨细胞相互作用中发挥作用.
    • DR抗原由α和β多组成,与疾病易感性和免疫反应的遗传控制有关.

    研究的目的:

    • 为了研究DR抗原之间的结构变异.
    • 了解DR抗原功能背后的分子机制及其在疾病中的作用.

    主要方法:

    • 从培养的淋巴状B细胞与不同的DR表型中分离DR抗原.
    • 分析孤立的DR抗原之间的结构变异的性质和程度.

    主要成果:

    • 在DR抗原中存在结构变异.
    • 这种变化可能与疾病易感性和免疫反应调节有关.

    结论:

    • 了解DR抗原的结构变异是阐明它们的功能机制的关键.
    • 进一步的研究可以阐明免疫反应的分子基础和与DR抗原相关的疾病关联.

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