User:Khadar Abdi/Sandbox1

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== Evolutionary related proteins ==
== Evolutionary related proteins ==
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TARS protein is highly dynamic protein that is necessary for protein synthesis, so it is no surprise to the <scene name='78/786634/Tars_conservation/2'>catalytic site to be the most conserved site</scene> for the protein. Since both mitochondrial and cytoplasmic activity in eukaryotic, bacterial and archaeal all perform similar function, it makes sense there is no deviation from structure from the catalytic site. The mostly highly conserved amino acid includes R363 (R448 in eukaryotes) which as mentioned earlier is important for ATP binding and is important for the step 1 mechanism of forming threonyl adenylate product<ref>PMID:10632708</ref><ref>PMID:12875846</ref>
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The image displays the <scene name='78/786634/Tars_conservation/1'>Representation of TARS ''S. Aureus'' conservation of amino acids</scene>.
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Asides catalytic site, the Anticodon binding domain is also highly conserved in most TARS enzymes. However, N2-domain seems to differ between from mostly bacterial and eukaryotic cells and in archaeal version. In fact for most archaeal cells and mitochodrial TARS, there is no presence of N2-domain and perform a different editing mechanism<ref>PMID:15079065</ref>. As mentioned earlier, AARS and TARS editing mechanism are homologous since the C-terminal domain of AARS and N2-domain of TARS both perform similar mechanism and use similar amino acids to select for serine bound tRNA(alanine or Thr) to hydrolyze and replace with correct amino acid<ref>PMID:10319817</ref>.
==Disease Relevance==
==Disease Relevance==

Revision as of 16:14, 2 May 2018

Threonyl-tRNA Synthetase/ligase

Staphylococcus aureus threonyl-tRNA Synthetase bound to Threonyl-Sulfamoyl Adenosine

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Khadar Abdi

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