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July 1, 1999Biological Chemistry40 citations

Functional Characterisation of Dictyostelium Myosin II with Conserved Tryptophanyl Residue 501 Mutated to Tyrosine

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RBRenu BatraDMDietmar J. Manstein

Key Result

The W501Y mutation in Dictyostelium myosin II decreased actin affinity 6-fold and abolished the 10% ATP-induced tryptophan fluorescence increase observed in the wild-type construct.

Structured PICO

P
Population
Dictyostelium discoideum strain lacking functional myosin II heavy chain gene, and soluble myosin head fragment M761-2R
I
Intervention
Myosin II mutant with conserved residue Trp-501 replaced by tyrosine (W501Y)
C
Comparator
Wild-type myosin construct
O
Outcome
Tryptophan fluorescence emission upon addition of ATPsurrogate

The study confirms that Trp-501 is the primary ATP-sensitive tryptophanyl residue in Dictyostelium myosin II.

Abstract

We created a Dictyostelium discoideum myosin II mutant in which the highly conserved residue Trp-501 was replaced by a tyrosine residue. The mutant myosin alone, when expressed in a Dictyostelium strain lacking the functional myosin II heavy chain gene, supported cytokinesis and multicellular development, processes which require a functional myosin in Dictyostelium. Additionally, we expressed the W501 Y mutant in the soluble myosin head fragment M761-2R (W501Y-2R) to characterise the kinetic properties of the mutant myosin motor domain. The affinity of the mutant myosin for actin was approximately 6-fold decreased, but other kinetic properties of the protein were changed less than 2-fold by the W501Y mutation. Based on spectroscopic studies and structural considerations, Trp-501, corresponding to Trp-510 in chicken fast skeletal muscle myosin, has been proposed to be the primary ATP-sensitive tryptophanyl residue. Our results confirm these conclusions. While the wild-type construct displayed a 10% fluorescence increase, addition of ATP to W501Y-2R was not followed by an increase in tryptophan fluorescence emission.

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Cite This Study

Batra et al. (1999) studied this question. W501Y mutation in Dictyostelium myosin II vs. Wild-type construct was evaluated on Tryptophan fluorescence emission upon addition of ATP. The W501Y mutation in Dictyostelium myosin II decreased actin affinity 6-fold and abolished the 10% ATP-induced tryptophan fluorescence increase observed in the wild-type construct.

synapsesocial.com/papers/6a5e61637dc1c0be7daf1b89https://doi.org/10.1515/bc.1999.126
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