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PMID: 6361516 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, P.H.S. Review

Structural and functional properties of the non-muscle tropomyosins.

Molecular and cellular biochemistry ·Vol. 57 ·No. 2 ·1983-00-00 ·Pages 127-46

Côté GP

Abstract

The non-muscle tropomyosins (TMs), isolated from such tissues as platelets, brain and thyroid, are structurally very similar to the muscle TMs, being composed of two highly alpha-helical subunits wound around each other to form a rod-like molecule. The non-muscle TMs are shorter than the muscle TMs; sequence analysis demonstrates that each subunit of equine platelet TM consists of 247 amino acids, 37 fewer than for skeletal muscle TM. The major differences in sequence between platelet and skeletal muscle TM are found near the amino and carboxyl terminal ends of the proteins. Probably as the result of such alterations, the non-muscle TMs aggregate in a linear end-to-end manner much more weakly than do the muscle TMs. Since end-to-end interactions are responsible for the highly cooperative manner in which TM binds to actin, the non-muscle TMs have a lower affinity for actin filaments than do the muscle TMs. However, the attachment of other proteins to actin (e.g. the Tn-I subunit of skeletal muscle troponin or the S-1 subfragment of skeletal muscle myosin) can increase the affinity of actin filaments for non-muscle TM. The non-muscle TMs interact functionally with the Tn-I component of skeletal muscle troponin to inhibit the ATPase activity of muscle actomyosin and with whole troponin to regulate the muscle actomyosin ATPase in a Ca++-dependent manner, even though one of the binding sites for troponin on skeletal TM is missing in non-muscle TM. A novel actomyosin regulatory system can be produced using Tn-I, calmodulin and non-muscle TM; in this case inhibition is released when the non-muscle TM detaches from the actin filament in the presence of Ca++. Although it has not yet been demonstrated that the non-muscle TMs participate in a Ca++-dependent contractile regulatory system in vivo it does appear that they are associated with actin filaments in vivo.

MeSH Terms
Amino Acid Sequence Amino Acids/analysis Animals Blood Platelets/analysis Brain Chemistry Cattle Chickens Fibroblasts/analysis Horses Humans Molecular Weight Muscles/analysis Protein Conformation Rabbits Species Specificity Swine Thyroid Gland/analysis Tissue Distribution Tropomyosin/analysis Troponin/analysis
Chemicals
Amino Acids Tropomyosin Troponin
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Côté G P
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118 references, click to expand
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Article Info
Journal
Molecular and cellular biochemistry
Abbr.
Mol Cell Biochem
ISSN
0300-8177
Published
1983-00-00
Pages
127-46
Language
English
Region
Netherlands
NLM ID
0364456
Subset
IM
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