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August 1, 1978European Journal of Biochemistry66 citationsOpen Access

Study of Actin and Its Interactions with Heavy Meromyosin and the Regulatory Proteins by the Pulse Fluorimetry in Polarized Light of a Fluorescent Probe Attached to an Actin Cysteine

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KTKatsuhisa TawadaKyushu UniversityPWPhilippe WahlCentre National de la Recherche ScientifiqueJAJean‐Claude AuchetCentre National de la Recherche Scientifique

Key Result

Micromolar concentrations of Ca2+ induce a conformational change in the complex of F actin with regulatory proteins tropomyosin and troponin, as indicated by changes in correlation time theta2.

Structured PICO

P
Population
Actin molecules labeled with N-iodoacetyl-N'-(5-sulfo-1-naphthyl)-ethylenediamine fluorescence attached to cysteine-373
I
Intervention
Interaction with heavy meromyosin and regulatory proteins (tropomyosin and troponin) in the presence of Ca2+
C
Comparator
Actin alone, or interaction with regulatory proteins in the absence of Ca2+
O
Outcome
Decay of anisotropy (correlation times theta1 and theta2)surrogate

Micromolar concentrations of Ca2+ induce a conformational change in the complex of F actin with the regulatory proteins tropomyosin and troponin.

Abstract

The decay of anisotropy of the N-iodoacetyl-N'-(5-sulfo-1-naphthyl)-ethylenediamine fluorescence attached to cysteine-373 of actin can be characterized by two correlation times theta1 and theta2. theta1 has a value of several nanoseconds and is thought to represent some local protein motion. theta2 is of the order of several hundreds of nanoseconds. Its value increases with actin concentration. It represents an average of the G and F actin correlation times. When actin interacts with heavy meromyosin, theta2 increases and becomes infinite at a molar ratio of one heavy meromyosin molecule per four actin protomers. It is concluded that a definite complex is then formed between F actin and heavy meromyosin. In the same time, G actin concentration becomes equal to zero. Finally, when F actin forms a complex with the regulatory proteins tropomyosin and troponin, the value of theta2 is greater in the absence than in the presence of Ca2+. This result indicates that micromolar concentrations of Ca2+ induces a conformation change of the complex of F actin with the regulatory proteins.

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Cite This Study

Tawada et al. (1978) studied this question. Micromolar concentrations of Ca2+ induce a conformational change in the complex of F actin with regulatory proteins tropomyosin and troponin, as indicated by changes in correlation time theta2.

synapsesocial.com/papers/6a0cd94532b1e5fd57fc0518https://doi.org/10.1111/j.1432-1033.1978.tb12463.x
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