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August 1, 1979Proceedings of the National Academy of Sciences543 citationsOpen Access

Titin: major myofibrillar components of striated muscle.

KWK WangJMJohn E. McClureATAye Tu

Structured PICO

P
Population
Striated muscle myofibrils from various vertebrate and invertebrate species (including chicken breast, chicken cardiac, rabbit back, and cricket leg muscles)
I
Intervention
Electrophoretic analyses, gel filtration purification, and immunofluorescent staining
O
Outcome
Identification, purification, and structural localization of titin in myofibrils

The discovery of titin as a major, structurally conserved, gigantic protein component of striated muscle myofibrils provides foundational knowledge for muscle biology and contractility.

Limitations

  • Protein aggregation prevented purification of titin in native forms
  • Precise molecular weights of titin polypeptides remain to be determined
  • Uncertainty concerning the distribution of individual bands of titin

Abstract

Electrophoretic analyses of protein components of striated muscle myofibril purified from various vertebrate and invertebrate species revealed that proteins much larger than myosin heavy chain are present in significant amounts. To define possible roles of these heretofore unidentified proteins, we purified a combination of two uncommonly large proteins, designated as titin, from chicken breast myofibrils. Chemical and immunological studies indicated that titin is distinct from myosin, actin, and filamin. Specific titin anti body crossreacts with similar protein in both skeletal and cardiac myofibrils of many vertebrate and invertebrate species. Immunofluorescent staining of glycerinated chicken breast myofibrils indicated that titin is present in M lines, Z lines, the junctions of A and I bands, and perhaps throughout the entire A bands. Similar staining studies of myofibrils from other species suggest that titinlike proteins may be organized in all myofibrils according to a common architectural plan. We conclude that titin is a structurally conserved myofibrillar component of vertebrate and invertebrate striated muscles.

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Cite This Study

Wang et al. (1979) studied this question.

synapsesocial.com/papers/6a101a92d8c5cf602efdaa63https://doi.org/10.1073/pnas.76.8.3698
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