Factors that influence the Na/K-ATPase signaling and function
Yingnyu Gao1, Yunhui Xu2, Fang Bai3
1Marshall Institute for Interdisciplinary Research (MIIR), Marshall University, Huntington, WV, United States.
Abstract:
The transmembrane Na/K-ATPase is located in the plasma membrane of all mammalian cells. It utilizes energy from ATP hydrolysis to execute its pumping function and interacts with other proteins and/or kinase molecules to execute its signaling function. Digoxin, one of the earliest identified cardiotonic steroids (CTS) that specifically binds to the Na/K-ATPase, has been widely prescribed to manage patients with cardiovascular disease (CVD) and heart failure (HF) for over 200 years. Elevated plasma levels of CTS have been observed in patients with hypertension, chronic kidney disease (CKD), CVD, and congestive HF. After extensive research efforts spanning decades, there remain unresolved disagreements regarding the various mechanisms underlying the Na/K-ATPase signaling functions. This article examines the known and controversial mechanisms that initiate the Na/K-ATPase signaling functions and their related regulatory mechanisms.
More Related Videos
Related Concept Videos
Active Transport
Primary active transporters, like Na+, K+ and -ATPase, directly utilize ATP to move ions across the membrane. These transporters play significant roles in various physiological processes. For instance, Na+, K+ and -ATPase maintain...
ATP Driven Pumps III: V-type Pumps
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...
ATP Synthase: Mechanism
ATP Driven Pumps I: An Overview
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...
Primary Active Transport
ATP Driven Pumps II: P-type Pumps
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...


