Sandbox Reserved 1644: Difference between revisions
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== General structure == | == General structure == | ||
Lon proteins are grouped into two families, '''LonA''' and '''LonB'''. The human protein LonP1 is part of the LonA proteins. This protein has three isoforms obtained by [https://en.wikipedia.org/wiki/Alternative_splicing alternative splicing] of the portion of DNA coding for this protein. | <p align="justify">Lon proteins are grouped into two families, '''LonA''' and '''LonB'''. The human protein LonP1 is part of the LonA proteins. This protein has three isoforms obtained by [https://en.wikipedia.org/wiki/Alternative_splicing alternative splicing] of the portion of DNA coding for this protein. | ||
Globally there is a great diversity of Lon proteins, but they are all organised in an oligomeric ring structure, mostly hexameric structure with identical subunits. | Globally there is a great diversity of Lon proteins, but they are all organised in an oligomeric ring structure, mostly hexameric structure with identical subunits. | ||
Lon proteins are therefore an hexameric chambered [https://en.wikipedia.org/wiki/Protease protease] complex. (This structure is similar with yeast [https://www.yeastgenome.org/locus/S000000118 Pim1] ) | Lon proteins are therefore an hexameric chambered [https://en.wikipedia.org/wiki/Protease protease] complex. (This structure is similar with yeast [https://www.yeastgenome.org/locus/S000000118 Pim1] ) | ||
The six Lon monomers are forming three pairs of legs owned by the N-terminal domain of the protein. This structure is emerging of the protein as a trimer of dimers. | The six Lon monomers are forming three pairs of legs owned by the N-terminal domain of the protein. This structure is emerging of the protein as a trimer of dimers.<p> | ||
Like many proteins, Lon is a '''flexible''' peptide which has different '''three-dimensional conformations'''. The protein can therefore pass from one conformation to another by hydrolysis of [https://biologydictionary.net/atp/ ATP]. | <p align="justify">Like many proteins, Lon is a '''flexible''' peptide which has different '''three-dimensional conformations'''. The protein can therefore pass from one conformation to another by hydrolysis of [https://biologydictionary.net/atp/ ATP]. | ||
With these conformational changes, the [https://en.wikipedia.org/wiki/Active_site '''active sites'''] of the Lon protein are protected from the external environment in the oligomeric complex that forms the '''degradation chamber'''. | With these conformational changes, the [https://en.wikipedia.org/wiki/Active_site '''active sites'''] of the Lon protein are protected from the external environment in the oligomeric complex that forms the '''degradation chamber'''. | ||
This form of degradation chamber is also found in bacteria, plants, fungi and metazoan, the similarities with bacteria are most probably due to the [https://en.wikipedia.org/wiki/Symbiogenesis endosymbiotic theory]. | This form of degradation chamber is also found in bacteria, plants, fungi and metazoan, the similarities with bacteria are most probably due to the [https://en.wikipedia.org/wiki/Symbiogenesis endosymbiotic theory].<p> | ||
This protein has a [https://en.wikipedia.org/wiki/Proteolysis '''proteolytic'''] and [https://en.wikipedia.org/wiki/Chaperone_(protein) '''chaperone''']-like activity, it cannot unfold aggregated proteins, but can participate in the assembling of some complexes). These two enzymatic activities are separated on two polypeptide chains forming a complex or two separate domains on the same polypeptide chain. | <p align="justify">This protein has a [https://en.wikipedia.org/wiki/Proteolysis '''proteolytic'''] and [https://en.wikipedia.org/wiki/Chaperone_(protein) '''chaperone''']-like activity, it cannot unfold aggregated proteins, but can participate in the assembling of some complexes). These two enzymatic activities are separated on two polypeptide chains forming a complex or two separate domains on the same polypeptide chain.<p> | ||
The Lon protein has three main distinct domains: the first, the '''N-terminal''' domain, is specialised in '''substrate binding''' and [https://en.wikipedia.org/wiki/Oligomer '''oligomerization''']. The second, called the '''AAA+ domain''' (or A domain) corresponds to the fixation and hydrolysis site of the [https://biologydictionary.net/atp/ATP ATP]. Finally, the third domain located at the '''C-terminal''' is an active serine site leading to '''substrate degradation'''. This is a [https://en.wikipedia.org/wiki/Proteolysis '''proteolytic'''] domain, called domain P. | <p align="justify">The Lon protein has three main distinct domains: the first, the '''N-terminal''' domain, is specialised in '''substrate binding''' and [https://en.wikipedia.org/wiki/Oligomer '''oligomerization''']. The second, called the '''AAA+ domain''' (or A domain) corresponds to the fixation and hydrolysis site of the [https://biologydictionary.net/atp/ATP ATP]. Finally, the third domain located at the '''C-terminal''' is an active serine site leading to '''substrate degradation'''. This is a [https://en.wikipedia.org/wiki/Proteolysis '''proteolytic'''] domain, called domain P.<p> | ||
Revision as of 18:11, 12 January 2021
| This Sandbox is Reserved from 26/11/2020, through 26/11/2021 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1643 through Sandbox Reserved 1664. |
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2x36 - Structure of the proteolytic domain of the Human Mitochondrial Lon protease
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