蛋白质酶激活:一种针对无法药物治疗的内在无序蛋白质的新策略
Qian Yu1, Zheng Wang1, Yutong Tu2
1Key Laboratory of Novel Targets and Drug Study for Neural Repair of Zhejiang Province, School of Medicine, Hangzhou City University, Hangzhou, 310015, Zhejiang Province, China; College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310058, Zhejiang Province, China.
Bioorganic chemistry
|February 18, 2024
概括
内在无序的蛋白质 (IDP) 缺乏稳定的结构,但驱动疾病. 新的策略,比如调节蛋白质体降解,为与IDP相关的疾病提供了有前途的治疗途径.
科学领域:
- 生物化学 生物化学
- 分子生物学分子生物学
- 药物发现 药物发现 药物发现
背景情况:
- 内在失调的蛋白质 (IDP) 在疾病发病过程中至关重要,包括癌症和神经退行性疾病.
- 国内流离失所者缺乏固定的结构使传统的基于结构的药物设计复杂化.
- 针对境内流离失所者的现有方法存在重大局限性,需要新的方法.
研究的目的:
- 审查近期内在无序蛋白 (IDP) 研究的进展.
- 探索针对内脏病患者的间接治疗策略,重点关注蛋白质体退化.
- 为开发新药物提供洞察力,以针对疾病中的IDP积累.
主要方法:
- 对当前的IDP研究进行文献综述.
- 对国内流离失所者间接监管策略的分析.
- 专注于蛋白质酶介导的降解途径.
主要成果:
- 国内流离失所者与各种疾病有关,这给传统药物开发带来了挑战.
- 通过蛋白质酶体调节IDP降解是一种可行的间接向策略.
- 了解IDP动态是开发有效治疗干预措施的关键.
结论:
- 针对内在失序蛋白 (IDP) 需要创新的策略超越传统方法.
- 间接调制,特别是通过蛋白质体降解,提供了一个有前途的治疗方向.
- 对IDP监管的进一步研究可以为许多疾病提供新的药物开发机会.
相关概念视频
The Proteasome
835
Eukaryotic cells can degrade proteins through several pathways. One of the most important among these is the ubiquitin-proteasome pathway. It helps the cell eliminate the misfolded, damaged, or unwarranted cytoplasmic proteins in a highly specific manner.
In this pathway, the target proteins are first tagged with small proteins called ubiquitin. This involves participation of a series of enzymes including— E1 (ubiquitin-activating enzyme), E2 (ubiquitin-conjugating enzyme), and E3...
In this pathway, the target proteins are first tagged with small proteins called ubiquitin. This involves participation of a series of enzymes including— E1 (ubiquitin-activating enzyme), E2 (ubiquitin-conjugating enzyme), and E3...
835
The Proteasome Structure
752
The ubiquitin-proteasome pathway is a well-known mechanism utilized by eukaryotic cells to remove cytoplasmic proteins that are misfolded, damaged, or no longer needed. In this pathway, the protein that needs to be eliminated undergoes a process called ubiquitination, where a chain of ubiquitin molecules is attached to the 48th lysine residue of the target protein. This ubiquitin modification helps the proteasome distinguish between a target protein and a healthy protein.
The proteasome is an...
The proteasome is an...
752
The Unfolded Protein Response
4.6K
The ER is the hub of protein synthesis in a cell. It has robust systems to quality control protein folding and also for degradation of terminally misfolded proteins. Under normal conditions, a small proportion of misfolded proteins that cannot be salvaged need to be transported to the cytoplasm by the ER-associated degradation or ERAD pathways. However, if the ERAD cannot handle the misfolded proteins, the cell activates the unfolded protein response or UPR to adjust the protein folding...
4.6K
Intrinsically Disordered Proteins
17.8K
Intrinsically disordered proteins are a group of proteins that do not fold into specific three-dimensional structures. Their structural flexibility allows them to complement ordered proteins to perform functions that are inaccessible to rigid structures. They are more common in eukaryotes than prokaryotes and may either be exclusively intrinsically disordered or hybrid proteins, consisting of a mix of ordered and disordered regions. The absence of a rigid structure in these proteins can be...
17.8K
Regulated Protein Degradation
7.3K
It is vital to regulate the activity of enzymatic as well as non-enzymatic proteins inside the cell. This can be achieved either through creating a balance between their rate of synthesis and degradation or regulating the intrinsic activity of the protein. Both these regulation mechanisms play an essential role in the normal functioning of cells.
Protein degradation plays two important roles in the cells. It helps to protect cells from misfolded or damaged proteins before they lead to a...
Protein degradation plays two important roles in the cells. It helps to protect cells from misfolded or damaged proteins before they lead to a...
7.3K
Protein-protein Interfaces
12.5K
Many proteins form complexes to carry out their functions, making protein-protein interactions (PPIs) essential for an organism's survival. Most PPIs are stabilized by numerous weak noncovalent chemical forces. The physical shape of the interfaces determines the way two proteins interact. Many globular proteins have closely-matching shapes on their surfaces, which form a large number of weak bonds. Additionally, many PPIs occur between two helices or between a surface cleft and a...
12.5K


