A cis-Regulatory Mutation in Troponin-I of Drosophila Reveals the Importance of Proper Stoichiometry of Structural Proteins During Muscle Assembly

Author:

Firdaus Hena121,Mohan Jayaram131,Naz Sarwat1,Arathi Prabhashankar1,Ramesh Saraf R3,Nongthomba Upendra1

Affiliation:

1. Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore 560 012, India

2. Centre for Life Sciences, Central University of Jharkhand, Ranchi 835 205, India

3. Department of Studies in Zoology, University of Mysore, Manasagangotri, Mysore 570 006, India

Abstract

Abstract Rapid and high wing-beat frequencies achieved during insect flight are powered by the indirect flight muscles, the largest group of muscles present in the thorax. Any anomaly during the assembly and/or structural impairment of the indirect flight muscles gives rise to a flightless phenotype. Multiple mutagenesis screens in Drosophila melanogaster for defective flight behavior have led to the isolation and characterization of mutations that have been instrumental in the identification of many proteins and residues that are important for muscle assembly, function, and disease. In this article, we present a molecular-genetic characterization of a flightless mutation, flightless-H (fliH), originally designated as heldup-a (hdp-a). We show that fliH is a cis-regulatory mutation of the wings up A (wupA) gene, which codes for the troponin-I protein, one of the troponin complex proteins, involved in regulation of muscle contraction. The mutation leads to reduced levels of troponin-I transcript and protein. In addition to this, there is also coordinated reduction in transcript and protein levels of other structural protein isoforms that are part of the troponin complex. The altered transcript and protein stoichiometry ultimately culminates in unregulated acto-myosin interactions and a hypercontraction muscle phenotype. Our results shed new insights into the importance of maintaining the stoichiometry of structural proteins during muscle assembly for proper function with implications for the identification of mutations and disease phenotypes in other species, including humans.

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference82 articles.

1. A troponin switch that regulates muscle contraction by stretch instead of calcium.;Agianian;EMBO J.,2004

2. The wide spectrum of myofibrillar myopathy suggests a multifactorial etiology and pathogenesis.;Amato;Neurology,1998

3. Isolation of 88F actin mutants of Drosophila melanogaster and possible alterations in the mutant actin structures.;An;J. Mol. Biol.,1996

4. Determination of the consensus binding site for MEF2 expressed in muscle and brain reveals tissue-specific sequence constraints.;Andrés;J. Biol. Chem.,1995

5. Abnormal muscle development in the heldup3 mutant of Drosophila melanogaster is caused by a splicing defect affecting selected troponin I isoforms.;Barbas;Mol. Cell. Biol.,1993

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