Titin: Difference between revisions
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==Introduction== | ==Introduction== | ||
Titin, also known as connectin, is an elastic and approximately 3,6 MDalton large protein which assembles itself to protein filaments. It is made of more than 30000 amino acids and includes 320 protein domains and therefore is known as the largest human protein. | '''Titin''', also known as '''connectin''', is an elastic and approximately 3,6 MDalton large protein which assembles itself to protein filaments. It is made of more than 30000 amino acids and includes 320 protein domains and therefore is known as the largest human protein. | ||
It is a part of the [http://en.wikipedia.org/wiki/Sarcomere sarcomere], the smallest functional unit in the striated muscles. Tintins task in the sarcomere is to center the [http://en.wikipedia.org/wiki/Myosin myosinheads] between the [http://en.wikipedia.org/wiki/Actin actin] filaments and to re-establish the unstreched mode. | It is a part of the [http://en.wikipedia.org/wiki/Sarcomere sarcomere], the smallest functional unit in the striated muscles. Tintins task in the sarcomere is to center the [http://en.wikipedia.org/wiki/Myosin myosinheads] between the [http://en.wikipedia.org/wiki/Actin actin] filaments and to re-establish the unstreched mode. | ||
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As seen in the image (Z1Z2 / Telethonin complex), the major force enduring component of this complex is an elaborate intermolecular hydrogen bonding network formed across <scene name='2a38/Test/2'>β-strand</scene> among telethonin and Z1Z2 domains, and not intramolecularly among termini β-strands of individual Z1 or Z2 domains. This shift to a stronger force enduring interface reduces the possibility of unraveling the individual Ig-domains, thus stabilizing the complex. This demonstrates how <scene name='2a38/Test/2'>β-strand</scene> cross-linking via [http://en.wikipedia.org/wiki/Hydrogen_bonds hydrogen bonds] serves as an important mechanism. It functions as a molecular adhesive, increasing the ability of protein complexes to resist against mechanical stress. | As seen in the image (Z1Z2 / Telethonin complex), the major force enduring component of this complex is an elaborate intermolecular hydrogen bonding network formed across <scene name='2a38/Test/2'>β-strand</scene> among telethonin and Z1Z2 domains, and not intramolecularly among termini β-strands of individual Z1 or Z2 domains. This shift to a stronger force enduring interface reduces the possibility of unraveling the individual Ig-domains, thus stabilizing the complex. This demonstrates how <scene name='2a38/Test/2'>β-strand</scene> cross-linking via [http://en.wikipedia.org/wiki/Hydrogen_bonds hydrogen bonds] serves as an important mechanism. It functions as a molecular adhesive, increasing the ability of protein complexes to resist against mechanical stress. | ||
==Disease== | |||
See [[Titin related diseases]]. | |||
== 3D Structures of Titin == | == 3D Structures of Titin == | ||
[[Titin 3D structures]] | |||
[[ | |||
==Additional Resources== | ==Additional Resources== | ||
See: [[Titin Structure & Function]] for additional information <br /> | See: [[Titin Structure & Function]] for additional information <br /> | ||
Latest revision as of 11:31, 19 January 2023
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References
- https://www.ncbi.nlm.nih.gov:80/pmc/articles/PMC1948054/?tool=pmcentrez
- https://www.ks.uiuc.edu/Research/z1z2/
- https://www.ks.uiuc.edu/Research/telethonin/
- https://de.wikipedia.org/wiki/Titin
Created with the participation of Anton Schmidt, Wolfgang Hermann.
Proteopedia Page Contributors and Editors (what is this?)
Alexander Berchansky, David Canner, Jaime Prilusky, Michal Harel


