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相关概念视频

Complement System01:27

Complement System

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The complement system is a group of approximately 20 plasma proteins that strengthen the body's defenses against infections through opsonization, inflammation, and cell lysis. Opsonization involves coating pathogens with complement proteins, making them more recognizable and facilitating phagocyte engulfment. Certain complement proteins induce inflammation that attracts immune cells to the site of infection. Cell lysis involves the destruction of pathogens through the formation of a...
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Antibody Structure01:10

Antibody Structure

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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...
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Protein Complexes with Interchangeable Parts01:57

Protein Complexes with Interchangeable Parts

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Groups of proteins may form a complex where each protein in this complex has a different role in the overall execution of the complex’s function. Often some of the proteins in the complex can be replaced by a closely related variant to give a complex that contains many of the same components yet is functionally distinct.
The SCF ubiquitin ligase is a protein complex of five individual proteins. This complex attaches ubiquitin to other target proteins to mark them for degradation. In order...
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Protein Folding01:25

Protein Folding

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Proteins are chains of amino acids linked together by peptide bonds. Upon synthesis, a protein folds into a three-dimensional conformation, critical to its biological function. Interactions between its constituent amino acids guide protein folding, and hence the protein structure is primarily dependent on its amino acid sequence.
Protein Structure Is Critical to Its Biological Function
Proteins perform a wide range of biological functions such as catalyzing chemical reactions, providing...
8.1K
Amyloid Fibrils03:03

Amyloid Fibrils

9.6K
Amyloid fibrils are aggregates of misfolded proteins.  Under most circumstances, misfolded proteins are either refolded by chaperone proteins or degraded by the proteasome. However, in the case of a mutation or a disease, these proteins can accumulate to form large clusters and often further assemble to form elongated fibers, called fibrils. 
Amyloid deposits were observed as early as 1639 in the liver and the spleen.   In 1854, Rudolph Virchow performed iodine staining,...
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Antibody Structure and Classes01:25

Antibody Structure and Classes

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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: Jul 11, 2025

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

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脂蛋白C3:形式产生功能

Karin E Bornfeldt1

  • 1Division of Metabolism, Endocrinology and Nutrition, Department of Medicine, UW Medicine Diabetes Institute and Department of Laboratory Medicine and Pathology, University of Washington, Seattle, WA, USA.

Journal of lipid research
|November 16, 2023
PubMed
概括

高水平的阿波利波蛋白C3 (APOC3) 通过阻碍脂蛋白清除,增加心血管疾病 (CVD) 的风险. 不同形式的APOC3在动脉样硬化中具有不同的作用,需要进一步研究以确定向疗法.

科学领域:

  • 生物化学 生物化学
  • 心血管科学 心血管科学
  • 分子生物学分子生物学

背景情况:

  • 升高的阿波利波蛋白C3 (APOC3) 水平与心血管疾病 (CVD) 风险有关.
  • APOC3促进动脉样硬化,主要是通过阻碍富含甘油三脂蛋白 (TRLs) 的清除.
  • 独特的APOC3池和形式表现出各种各样的生物活动和与动脉生成的关联.

研究的目的:

  • 阐明动脉样硬化中各种阿波利波蛋白C3 (APOC3) 形式的差异性机制.
  • 为了研究脂质自由与脂质结合的APOC3在单细胞炎症酶激活中的不同作用.
  • 探索APOC3丰富的LDL与血管蛋白质糖结合的影响,以及APOC3糖形对心血管疾病风险的影响.

主要方法:

  • 分析循环APOC3水平及其与心血管疾病风险的关联.
  • 在体外研究检查无脂APOC3.3的炎症酶激活.
  • 对APOC3丰富的LDL与大甘结合的评估.
  • 与心脏病风险相关的APOC3糖形模式的评估.

主要成果:

  • 没有脂质的APOC3触发了单细胞中的炎性酶激活,与与脂质颗粒结合的APOC3不同.
  • 与APOC3贫乏的LDL相比,APOC3丰富的LDL对血管大甘的结合增强.
关键词:
它们是阿波利波蛋白.动脉样硬化是一种动脉样硬化.炎症 炎症是一种炎症.这就是为什么LDL,LDL是LDL.三甲酸甘油三甲酸甘油是什么这是VLDLDL.

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  • 特定的APOC3糖形模式与心血管疾病风险有不同的相关性.
  • 结论:

    • 不同的APOC3形式和池具有不同的异性异质效应.
    • 了解这些差异化机制对于开发基于APOC3的向疗法至关重要.
    • 需要进一步的研究来确定APOC3抑制是否有利于服用降低LDL胆固醇的药物患者.