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February 1, 1994Proceedings of the National Academy of Sciences55 citationsOpen Access

Association of a cellular myosin II with anionic phospholipids and the neuronal plasma membrane.

DLDi LiMMMark S. MillerPCPeter D. Chantler

Key Result

A significant fraction (>30%, saturable around 90%) of brain myosin II, but not skeletal or cardiac muscle myosin II, binds to lipid vesicles composed of the anionic phospholipid L-a-phosphatidyl-L-serine.

Structured PICO

P
Population
Preclinical models: dissociated rat embryonic day 16 (E16) neuronal tissue, Neuro-2A cells, and purified myosin II from bovine brain, heart, and skeletal muscle.
E
Exposure
Incubation with anionic phospholipid L-alpha-phosphatidyl-L-serine (PS) vesicles.
C
Comparator
Incubation with neutral phospholipid L-alpha-phosphatidylcholine (PC) vesicles or no lipid.
O
Outcome
Binding of myosin II to lipid vesicles and plasma membranes.surrogate

Brain myosin II, unlike cardiac or skeletal muscle myosin II, can bind directly to anionic phospholipids, suggesting a mechanism for its role in neuronal cell motility.

Limitations

  • Cannot determine whether the binding is due to the action of one or more distinct isoforms of brain myosin II.
  • Cannot determine if binding is due to the action of one or more distinct isoforms.

Abstract

Myosin II has been observed in close proximity to the neuronal plasma membrane, suggesting the possibility that at least one isoform of neuronal myosin II may be capable of direct association. Here, we demonstrate that a significant fraction (> 30%, saturable around 90%) of brain myosin II, but not myosins from skeletal or cardiac muscle, can bind to lipid vesicles composed of the anionic phospholipid L-alpha-phosphatidyl-L-serine but not with vesicles made from the neutral phospholipid L-alpha-phosphatidylcholine. Binding to lipid vesicles made from L-alpha-phosphatidyl-L-serine is enhanced in the presence of millimolar amounts of free calcium. ATPase activity remains unimpaired after vesicle association. Myosin II was also shown to remain in tight association with purified plasma membranes, even after depletion of actin. The above observations suggest that mechanisms involving membrane-bound myosin II are required to facilitate metazoan cell motility.

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Cite This Study

Li et al. (1994) studied this question. Brain myosin II vs. Skeletal or cardiac muscle myosin II was evaluated on Binding to lipid vesicles composed of L-a-phosphatidyl-L-serine. A significant fraction (>30%, saturable around 90%) of brain myosin II, but not skeletal or cardiac muscle myosin II, binds to lipid vesicles composed of the anionic phospholipid L-a-phosphatidyl-L-serine.

synapsesocial.com/papers/6a6e1dc826a7f98052db9df2https://doi.org/10.1073/pnas.91.3.853
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