Sandbox Reserved 1644: Difference between revisions

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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.<p>
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 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].
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].<p>
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 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>
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">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>
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 18:12, 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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References