相关实验视频
Updated: May 30, 2025

07:38
Measuring In Vitro ATPase Activity for Enzymatic Characterization
Published on: August 23, 2016
18.0K
基质,调节,细胞功能和P4-ATPases的疾病关联
Hye-Won Shin1, Hiroyuki Takatsu2
1Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto, 606-8501, Japan. shin@pharm.kyoto-u.ac.jp.
Communications biology
|January 28, 2025
概括
P4-ATPases携带膜脂质以维持细胞不对称性. 本综述探讨了它们在健康和疾病中的多样化的基质,调节和作用.
科学领域:
- 生物化学 生物化学
- 细胞生物学 细胞生物学
- 分子生物学分子生物学
背景情况:
- P4-ATPases是必不可少的P型ATPases,可以调节跨细胞脂质的运动.
- 它们保存在真核生物中,对于维持膜脂质不对称至关重要.
研究的目的:
- 审查了解P4-ATPase功能的最新进展.
- 要突出基质多样性,细胞局部化和酶活性.
- 讨论P4-ATPases对生物体恒温和疾病的影响.
主要方法:
- 最近的结构和功能研究的文献综述.
- 对人类P4-ATPases的基因组数据的分析.
- 关于P4-ATPase基质特异性和调节的证据综合.
主要成果:
- P4-ATPases将各种脂转移到超出氨基脂的范围.
- 结构研究揭示了他们脂质运输机制的洞察力.
- 新出现的证据将P4-ATPases与细胞平衡和疾病发病联系起来.
结论:
- P4-ATPases表现出不同的基质特异性和调节机制.
- 它们的功能对于维持细胞和生物体健康至关重要.
- 对P4-ATPases的进一步研究可能会为相关疾病提供治疗见解.
相关概念视频
ATP Synthase: Mechanism
13.9K
In animals, the mitochondrial F1F0 ATP synthase is the key protein that synthesizes ATP molecules through a complex catalytic mechanism. While the nuclear genome encodes the majority of ATP synthase subunits, the mitochondrial genome encodes some of the enzyme's most critical components. The formation of this multi-subunit enzyme is a complex multi-step process regulated at the level of transcription, translation, and assembly. Defects in one or more of these steps can result in decreased...
13.9K
ATP Driven Pumps I: An Overview
7.9K
ATP-driven pumps, also known as transport ATPases, are integral membrane proteins. They have binding sites for ATP located on the membrane's cytosolic side and the ion-conducting domain in the transmembrane region. These pumps use the free energy released from ATP hydrolysis to move the solutes across cell membranes against an electrochemical gradient.
There are four main types of ATP-driven pumps - P-type, V-type, F-type, and ABC transporter. All these pumps are of varying complexities and...
There are four main types of ATP-driven pumps - P-type, V-type, F-type, and ABC transporter. All these pumps are of varying complexities and...
7.9K
ATP Driven Pumps II: P-type Pumps
4.5K
The P-type pumps are a large family of integral membrane transporter ATPases. They are divided into five major types based on substrate specificity, from I to V.
A typical P-type pump has three cytosolic domains: nucleotide-binding (N), phosphorylation (P), and activator (A) domains. These domains are connected to the membrane-spanning helices by short amino acid segments. ATP hydrolysis and covalent phosphoenzyme intermediate formation are crucial parts of the catalytic cycle. At the highly...
A typical P-type pump has three cytosolic domains: nucleotide-binding (N), phosphorylation (P), and activator (A) domains. These domains are connected to the membrane-spanning helices by short amino acid segments. ATP hydrolysis and covalent phosphoenzyme intermediate formation are crucial parts of the catalytic cycle. At the highly...
4.5K
ATP Synthase: Structure
11.9K
ATP synthase or ATPase is among the most conserved proteins found in bacteria, mammals, and plants. This enzyme can catalyze a forward reaction in response to the electrochemical gradient, producing ATP from ADP and inorganic phosphate. ATP synthase can also work in a reverse direction by hydrolyzing ATP and generating an electrochemical gradient. Different forms of ATP synthases have evolved special features to meet the specific demands of the cell. Based on their specific feature, ATP...
11.9K
ATP Driven Pumps III: V-type Pumps
3.5K
V-type pumps are ATP-driven pumps found in the vacuolar membranes of plants, yeast, endosomal and lysosomal membranes of animal cells, plasma membranes of a few specialized eukaryotic cells, and some prokaryotes. They are also known as the V1Vo-ATPase, that couple ATP hydrolysis to transport protons against a concentration gradient.
The peripheral or cytosolic V1 domain with eight subunits is involved in ATP hydrolysis. The integral or transmembrane V0 domain containing at least five subunits...
The peripheral or cytosolic V1 domain with eight subunits is involved in ATP hydrolysis. The integral or transmembrane V0 domain containing at least five subunits...
3.5K
ATP Energy Storage and Release
9.1K
ATP is a highly unstable molecule. Unless quickly used to perform work, ATP spontaneously dissociates into ADP and inorganic phosphate (Pi), and the free energy released during this process is lost as heat. The energy released by ATP hydrolysis is used to perform work inside the cell and depends on a strategy called energy coupling. Cells couple the exergonic reaction of ATP hydrolysis with endergonic reactions, allowing them to proceed.
One example of energy coupling using ATP involves a...
One example of energy coupling using ATP involves a...
9.1K

