哺乳动物 Peroxiredoxins 在细胞信号传输中的月光功能
Yosup Kim1, Eun-Kyung Kim1, Ho Hee Jang1,2
1Department of Health Sciences and Technology, Graduate School of Medicine, Gachon University, Incheon 21999, Republic of Korea.
Antioxidants (Basel, Switzerland)
|February 27, 2026
概括
氧化素 (Prdxs) 对于细胞的氧化还原平衡至关重要,作为抗氧化剂和信号调节剂. 它们的多样化功能和通过翻译后修饰的调节突出了它们作为疾病生物标志物和治疗点的潜力.
科学领域:
- 生物化学 生物化学
- 细胞生物学 细胞生物学
- 分子医学是分子医学.
背景情况:
- 氧化素 (Prdxs) 是一种必要的醇特异性抗氧化酶.
- 它们维持细胞内氧化还原稳定,并参与氧化还原信号传递.
- Prdxs也表现出分子陪伴活动.
研究的目的:
- 审查Prdxs.的过氧化物降解活性和氧化还原开关机制.
- 为了总结 Prdx 寡合化过程中产生的伴侣函数.
- 突出异形特异性功能和翻译后修改 (PTM) 的影响.
主要方法:
- 关于Prdx过氧化物降解活性的文献综述.
- 分析Prdx寡合化和与陪伴者功能相关的结构变化.
- 关于调节 Prdx 活动和信号的 PTM 发现的汇编.
主要成果:
- Prdxs具有过氧化物降解活性和还氧化开关机制.
- 寡合化和结构变化赋予了陪伴者功能.
- 异形体特定的局部和功能 (Prdx1-Prdx6) 影响生理学和病理学.
- 不同的PTM (酸化,乙化等) 调节Prdx活动和信号传输.
结论:
- Prdxs是细胞氧化还原平衡和信号网络的关键调节者.
- 它们的功能超出了简单的抗氧化作用,作为过氧化物传感器和陪伴者.
- 作为疾病生物标志物和治疗点,PRDX具有显著的潜力.
更多相关视频
10:24Defining Hsp33's Redox-regulated Chaperone Activity and Mapping Conformational Changes on Hsp33 Using Hydrogen-deuterium Exchange Mass Spectrometry
Published on: June 7, 2018
9.3K
09:33Imaging Approaches to Assessments of Toxicological Oxidative Stress Using Genetically-encoded Fluorogenic Sensors
Published on: February 7, 2018
7.9K
相关概念视频
Peroxisomes
21.7K
Peroxisomes are specialized organelles present in fungi, plant, and animal cells. It can vary in number, size, morphology, and activity depending on the type of tissue and the nutritional state of the cell. For example, cells with active lipid metabolism, such as adipocytes, neurons, and hepatocytes, have more peroxisomes than other cells in the body. Besides their primary role in breaking down complex organic molecules, peroxisomes can also synthesize specific macromolecules and participate in...
21.7K
Protein Import into the Peroxisomes
5.5K
Cells contain membrane-bound organelles called peroxisomes that oxidize organic molecules by transferring hydrogen atoms to oxygen, producing hydrogen peroxide. Peroxisomes enzymatically convert the released hydrogen peroxide into water and oxygen.
Peroxisomal Protein Import:
Peroxisomes lack the genetic machinery required to code for their own proteins. Hence, most peroxisomal membrane, lumenal and transmembrane proteins are synthesized in the cytoplasm or ER and transported to the peroxisome...
Peroxisomal Protein Import:
Peroxisomes lack the genetic machinery required to code for their own proteins. Hence, most peroxisomal membrane, lumenal and transmembrane proteins are synthesized in the cytoplasm or ER and transported to the peroxisome...
5.5K
Redox Reactions
1.2K
Redox reactions are vital biochemical processes that underpin energy metabolism in cells. These reactions involve the transfer of electrons between molecules, occurring in tandem as oxidation and reduction. Oxidation refers to the loss of electrons, while reduction denotes their gain. This coupling ensures the seamless flow of electrons through metabolic pathways. For example, in bacterial metabolism, glucose undergoes oxidation to carbon dioxide, while oxygen is simultaneously reduced to...
1.2K
Redox Reactions
59.1K
Oxidation-reduction or redox reactions involve the transfer of electrons from one molecule or atom to another. When an atom gains an electron, another atom must lose an electron, meaning oxidation and reduction must occur together. Since the redox occurs in pairs, the atom that gets oxidized is also called the reducing agent or reductant, and the atom that is reduced is also called the oxidizing agent or oxidant. A straightforward way to remember the definitions of oxidation and reduction is...
59.1K
Peroxisomes and Mitochondria
99.0K
Peroxisomes and mitochondria are two important oxygen-utilizing organelles in eukaryotic cells. Mitochondria carry out cellular respiration—the process that converts energy from food into ATP. Peroxisomes carry out a variety of functions, primarily breaking down different substances, such as fatty acids.
The peroxisome is a single membrane-bound cellular organelle that can perform several different functions, including lipid metabolism and chemical detoxification. The enzymes within...
The peroxisome is a single membrane-bound cellular organelle that can perform several different functions, including lipid metabolism and chemical detoxification. The enzymes within...
99.0K
Oxidation of Phenols to Quinones
5.0K
In the presence of oxidizing agents, phenols are oxidized to quinones. Quinones can be easily reduced back to phenols using mild reducing agents. The electron-donating hydroxyl group enhances the reactivity of the aromatic ring, enabling oxidation of the ring even in the absence of an α hydrogen.
o-hydroxy phenols are oxidized to o-quinones and p-hydroxy phenols to p-quinones. Such redox reactions involve the transfer of two electrons and two protons. The reversible redox...
o-hydroxy phenols are oxidized to o-quinones and p-hydroxy phenols to p-quinones. Such redox reactions involve the transfer of two electrons and two protons. The reversible redox...
5.0K
