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関連する概念動画

Glycocalyx and its Functions01:14

Glycocalyx and its Functions

6.7K
The glycocalyx is a carbohydrate-rich, fuzzy-appearing layer on the outer surface of the cell membrane. It is highly hydrophilic, because of this it attracts large amounts of water to the cell's surface. This aids the cell's interaction with the watery environment and also helps it to obtain substances dissolved in the water. It is also important for cell identification, self/non-self determination, and embryonic development and is used in cell-to-cell attachments to form tissues.
6.7K
Protein Glycosylation01:25

Protein Glycosylation

8.1K
Glycosylation, the most common post-translational modification for proteins, serves diverse functions. Adding sugars to proteins makes the proteins more resistant to proteolytic digestion. Glycosylated proteins can act as markers and receptors to promote cell-cell adhesion. Additionally, they have many essential quality control functions in the cell, such as correct protein folding and facilitating transport of misfolded proteins to the cytosol, which can be degraded.
Glycosylation occurs in...
8.1K
Outcomes of Glycolysis01:13

Outcomes of Glycolysis

104.9K
Nearly all the energy used by cells comes from the bonds that make up complex organic compounds. These organic compounds are broken down into simpler molecules, such as glucose. As a result, cells extract energy from glucose over many chemical reactions—a process called cellular respiration.
Cellular respiration can occur aerobically (with oxygen) or anaerobically (without oxygen). In the presence of oxygen, cellular respiration starts with glycolysis and continues with pyruvate...
104.9K
Overview of Carbohydrate Metabolism01:19

Overview of Carbohydrate Metabolism

2.4K
Carbohydrate metabolism is a fundamental biochemical process that ensures a constant supply of energy to living cells. The most important carbohydrate is glucose, which can be broken down via glycolysis to enter into the Krebs cycle and eventually lead to the production of ATP through oxidative phosphorylation.
Glucose transport into cells is facilitated by a family of transport proteins called GLUT (Glucose Transporters). GLUT4 is the primary glucose transporter for insulin-stimulated glucose...
2.4K
Proteoglycans01:05

Proteoglycans

4.2K
Glycans, a class of complex heterogeneous molecules, can be covalently attached to proteins to form glycosylated proteins that regulate various physiological and pathological processes. Glycosylated proteins or glycoproteins comprise N-linked and O-linked oligosaccharides. O-glycosylation is the most common type of protein glycosylation. Here, glycans attach to the oxygen atom of the hydroxyl groups of Serine or Threonine residues. O-linked glycosylation occurs later in protein processing,...
4.2K
What is Glycolysis?00:56

What is Glycolysis?

172.0K
Overview
Cells make energy by breaking down macromolecules. Cellular respiration is the biochemical process that converts "food energy" (from the chemical bonds of macromolecules) into chemical energy in the form of adenosine triphosphate (ATP). The first step of this tightly regulated and intricate process is glycolysis. The word glycolysis originates from the Latin glyco (sugar) and lysis (breakdown). Glycolysis serves two main intracellular functions: generating ATP and generating...
172.0K

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関連する実験動画

Updated: Nov 2, 2025

Glycan Node Analysis: A Bottom-up Approach to Glycomics
11:36

Glycan Node Analysis: A Bottom-up Approach to Glycomics

Published on: May 22, 2016

10.8K

グライコRNAの世界を垣間見る

Matthew D Disney1

  • 1The Scripps Research Institute, Department of Chemistry, Jupiter, FL 33458, USA.

Cell
|June 11, 2021
PubMed
まとめ

研究者たちは 細胞表面に炭水化物で装飾された 非コーディングRNAを発見しました この発見は,タンパク質と脂質に似た RNA機能化の新たな層を強調しています.

科学分野:

  • 分子生物学
  • グライコバイオロジー
  • RNA 生物学

背景:

  • 近年では,RNAの改変とその生物学的役割の理解が深まっています.
  • 保存された非コーディングRNAは,様々な細胞プロセスに参加することが知られている.

研究 の 目的:

  • 細胞表面のグリコRNAの発見を報告する
  • 炭水化物による非コーディングRNAの機能化について説明する.

主な方法:

  • 細胞表面分析のテクニック
  • RNAの分離と特徴づけの方法
  • グライカンの分析と検出

主要な成果:

  • 細胞の外表面に存在するグリコRNAの識別
  • 保存された非コーディングRNAが炭水化物で機能化できることを示す.
  • これらのRNAに結合したグリカン構造の特徴化.

結論:

  • グライコRNAは細胞表面分子の一種です
  • RNAの炭水化物改変は RNAの生物学と機能に新しい次元を追加します

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Author Spotlight: Exploring Metabolic and Aging Processes in C. elegans Using Low-Cost, High-Impact Assays
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Bioinformatics Resources for the Study of Glycan-Mediated Protein Interactions
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Bioinformatics Resources for the Study of Glycan-Mediated Protein Interactions

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関連する実験動画

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Glycan Node Analysis: A Bottom-up Approach to Glycomics
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Author Spotlight: Exploring Metabolic and Aging Processes in C. elegans Using Low-Cost, High-Impact Assays
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Bioinformatics Resources for the Study of Glycan-Mediated Protein Interactions
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Bioinformatics Resources for the Study of Glycan-Mediated Protein Interactions

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  • この発見により 細胞間のコミュニケーションや RNAによる調節を 理解する新たな道が開かれました