ACAD10和ACAD11允许4-基脂肪酸进入β-氧化过程
Stéphanie Paquay1,2,3, Julia Duraffourd1,2, Marina Bury1,2
1Metabolic Research Group, de Duve Institute & WELRI, Université Catholique de Louvain, 1200, Brussels, Belgium.
Cellular and molecular life sciences : CMLS
|August 22, 2024
概括
两个酶,ACAD10和ACAD11,将4-基脂肪酸引入细胞能量生产途径. 这些酶具有双酶和乙-CoA脱酶活动,影响脂质代谢.
科学领域:
- 生物化学 生物化学
- 分子生物学分子生物学
- 细胞生物学 细胞生物学
背景情况:
- 氧化脂肪酸在脂质代谢和信号传递中至关重要.
- 对于4-基脂肪酸的代谢途径尚不清楚.
研究的目的:
- 阐明ACAD10和ACAD11在4-基脂肪酸代谢中的酶机制和生理作用.
- 研究ACAD10和ACAD11的基质特异性和局部化.
主要方法:
- 使用重组ACAD10和ACAD11的酶活性测定.
- 在淘汰细胞系中进行研究,以评估体内功能.
- 蛋白质裂变分析和域函数调查.
主要成果:
- ACAD10和ACAD11具有双酶和乙-CoA脱酶活动,使4-基亚-CoA酸化和随后进入β-氧化.
- ACAD10准短链4-氧脂肪酸 (6个碳) 并定位到线粒体,而ACAD11准长链 (10个碳) 并定位到过氧体.
- ACAD10经历内部裂变,产生不同的功能域,其中酸脱酶 (HAD) 域被认为具有调节作用.
结论:
- ACAD10和ACAD11是引入4-基脂肪酸到线粒体和过氧体β氧化中的关键酶.
- 酶局部化影响基质的特异性,尽管有重叠的催化能力.
- ACAD10 HAD域可能调节激酶活性,防止中间积累.
相关概念视频
Overview of Fatty Acid Metabolism
30.3K
Lipids also are sources of energy that power cellular processes. Like carbohydrates, lipids are composed of carbon, hydrogen, and oxygen, but these atoms are arranged differently. Most lipids are nonpolar and hydrophobic. Major types include fats and oils, waxes, phospholipids, and steroids.
Fatty acids are catabolized in a process called beta-oxidation, which takes place in the matrix of the mitochondria and converts their fatty acid chains into two-carbon units of acetyl groups. The acetyl...
Fatty acids are catabolized in a process called beta-oxidation, which takes place in the matrix of the mitochondria and converts their fatty acid chains into two-carbon units of acetyl groups. The acetyl...
30.3K
Pyruvate Oxidation
158.6K
After glycolysis, the charged pyruvate molecules enter the mitochondria via active transport and undergo three enzymatic reactions. These reactions ensure that pyruvate can enter the next metabolic pathway so that energy stored in the pyruvate molecules can be harnessed by the cells.
First, the enzyme pyruvate dehydrogenase removes the carboxyl group from pyruvate and releases it as carbon dioxide. The stripped molecule is then oxidized and releases electrons, which are then picked up by NAD+...
First, the enzyme pyruvate dehydrogenase removes the carboxyl group from pyruvate and releases it as carbon dioxide. The stripped molecule is then oxidized and releases electrons, which are then picked up by NAD+...
158.6K
Fats as Energy Storage Molecules
24.8K
Triglycerides are a form of long-term energy storage molecules. They are made of glycerol and three fatty acids. To obtain energy from fat, triglycerides must first be broken down by hydrolysis into their two principal components, fatty acids and glycerol. This process, called lipolysis, takes place in the cytoplasm. The resulting fatty acids are oxidized by β-oxidation into acetyl-CoA, which is used by the Krebs cycle. The glycerol that is released from triglycerides after lipolysis...
24.8K
Carboxylic Acids to Esters: Acid-Catalyzed (Fischer) Esterification Mechanism
7.8K
Carboxylic acids react with alcohols to yield esters via an acid-catalyzed condensation reaction called Fischer esterification. This is a nucleophilic acyl substitution reaction that proceeds via a tetrahedral intermediate, where a water molecule is eliminated as the leaving group.
7.8K
Phase II Reactions: Acetylation Reactions
199
Acetylation, a phase II biotransformation reaction, introduces an acetyl group to drugs or their metabolites. Acetyltransferase enzymes facilitate this reaction, which resembles α-amino acid conjugation due to the addition of a functional group to the drug molecule.
The substrates for acetylation are typically drugs or their metabolites with an amino, sulfonamide, or hydrazine functional group. Acetylation can occur at several points in the drug molecule, including primary, secondary, and...
The substrates for acetylation are typically drugs or their metabolites with an amino, sulfonamide, or hydrazine functional group. Acetylation can occur at several points in the drug molecule, including primary, secondary, and...
199
Loss of Carboxy Group as CO2: Decarboxylation of β-Ketoacids
3.1K
Carboxylic acids, upon heating, undergo a decarboxylation reaction by releasing carbon dioxide gas. Monocarboxylic acids do not undergo decarboxylation easily. However, a silver salt of carboxylic acid reacts with bromine or iodine under high temperature to release carbon dioxide gas and forms halide with one less carbon. This reaction is called the Hunsdiecker reaction.
3.1K


