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Updated: Aug 24, 2026

Myosin-Specific Adaptations of In vitro Fluorescence Microscopy-Based Motility Assays
Published on: February 4, 2021
Myosin phosphatase: structure, regulation and function
Masaaki Ito1, Takeshi Nakano, Ferenc Erdodi
1First Department of Internal Medicine, Mie University School of Medicine, Tsu, Mie, Japan. naika1@clin.medic.mie-u.ac.jp
Abstract:
Phosphorylation of myosin II plays an important role in many cell functions, including smooth muscle contraction. The level of myosin II phosphorylation is determined by activities of myosin light chain kinase and myosin phosphatase (MP). MP is composed of 3 subunits: a catalytic subunit of type 1 phosphatase, PPlc; a targeting subunit, termed myosin phosphatase target subunit, MYPT; and a smaller subunit, M20, of unknown function. Most of the properties of MP are due to MYPT and include binding of PP1c and substrate. Other interactions are discussed. A recent discovery is the existence of an MYPT family and members include, MYPT1, MYPT2, MBS85, MYPT3 and TIMAP. Characteristics of each are outlined. An important discovery was that the activity of MP could be regulated and both activation and inhibition were reported. Activation occurs in response to elevated cyclic nucleotide levels and various mechanisms are presented. Inhibition of MP is a major component of Ca2+-sensitization in smooth muscle and various molecular mechanisms are discussed. Two mechanisms are cited frequently: (1) Phosphorylation of an inhibitory site on MYPT1, Thr696 (human isoform) and resulting inhibition of PP1c activity. Several kinases can phosphorylate Thr696, including Rho-kinase that serves an important role in smooth muscle function; and (2) Inhibition of MP by the protein kinase C-potentiated inhibitor protein of 17 kDa (CPI-17). Examples where these mechanisms are implicated in smooth muscle function are presented. The critical role of RhoA/Rho-kinase signaling in various systems is discussed, in particular those vascular smooth muscle disorders involving hypercontractility.
Insights
Myosin phosphatase (MP) regulates smooth muscle contraction by controlling myosin II phosphorylation. MP activity is modulated by MYPT1 phosphorylation and CPI-17 inhibition, impacting vascular smooth muscle function.
Area of Science:
- Cell Biology
- Biochemistry
- Physiology
Background:
- Myosin II phosphorylation is crucial for smooth muscle contraction.
- Myosin phosphatase (MP) regulates myosin II phosphorylation levels.
- MP comprises catalytic (PP1c), targeting (MYPT), and M20 subunits.
Purpose of the Study:
- To review the regulation of myosin phosphatase (MP) activity.
- To discuss the role of MP in smooth muscle contraction and vascular disorders.
- To highlight the MYPT family and their functions.
Main Methods:
- Literature review of MP regulation and function.
- Discussion of MYPT family members and their characteristics.
- Analysis of MP activation and inhibition mechanisms.
Main Results:
- MP activity is regulated by both activation and inhibition.
- Activation involves elevated cyclic nucleotide levels.
- Inhibition mechanisms include MYPT1 Thr696 phosphorylation and CPI-17.
Conclusions:
- MP regulation is critical for smooth muscle function.
- Dysregulation of MP contributes to vascular smooth muscle disorders.
- RhoA/Rho-kinase signaling plays a key role in hypercontractility.
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