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January 1, 1985Journal of Biological Chemistry54 citationsOpen Access

Myosin from human erythrocytes.

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AWAlbert J. WongDKDaniel P. KiehartTPThomas D. Pollard

Structured PICO

P
Population
Human erythrocytes
I
Intervention
Purification and biochemical characterization of myosin
C
Comparator
Platelet myosin (used as a reference for comparison)
O
Outcome
Biochemical and structural characteristics of erythrocyte myosin (molecular weight, filament formation, ATPase activity)surrogate

The identification and characterization of myosin in human erythrocytes suggests it may play a role in cellular shape changes.

Abstract

We have purified myosin from human erythrocytes using methods similar to that for other cytoplasmic myosins with a yield of about 500 micrograms/100 ml of packed cells. It consists of a 200-kDa heavy chain and light chains of 26- and 19.5 kDa and therefore differs from the isozyme in platelets which has light chains of 20- and 15 kDa. At low ionic strength, the myosin forms short bipolar filaments like those of platelet myosin. Eight of eight monoclonal antibodies to platelet myosin also bind to erythrocyte myosin. Like most myosins, it has a high ATPase activity in the presence of Ca2+ or EDTA, but is inhibited by Mg2+. Myosin light-chain kinase transfers 1 phosphate from ATP to the 20-kDa light chain, and this stimulates the actin-activated ATPase. Thus, myosin may play a role in shape changes in the erythrocytes.

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Cite This Study

Wong et al. (1985) studied this question.

synapsesocial.com/papers/6a1c66501d5b34640aa147d1https://doi.org/10.1016/s0021-9258(18)89689-2
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