Pyrrolysyl-tRNA synthetase: Difference between revisions

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== Function ==
== Function ==
[[Pyrrolysyl-tRNA synthetase]] (PyIRS) is encoded by the gene pyIS and is found to belong as a part of the group of enzymatic proteins whose role involves the cellular process of tRNA aminoacylation required for protein translation.<ref name="trans"> PMID:17267409 </ref> In particular, PyIRS is required for the activation of the amino acid [[Pyrrolysine]] as it associates with a tRNA generating a specific tRNA<sup>Pyl</sup>, which is then further used to transfer the amino acid to a growing polypeptide.<ref name="pept"> PMID:19022179 </ref> The involvement of PyIRS is carried out due to the anticodon CUA on the suppressor tRNA<sup>Pyl</sup> that is complementary to the UAG codon.<ref name="amber"> PMID:1796745 </ref> <ref>PMID:15314242 </ref> The interesting fact is that this is done by the response of the codon UAG (amber codon) on the mRNA that is normally a stop codon in other organisms. Pyrrolysine (Pyl) is the 22nd existing amino acid genetically encoded in nature that was first discovered as a byproduct contained by the active site of monomethylamine methyltransferase, exclusively from Methanosarcina barkeri (M. barkeri) species.<ref name="pept" /> <ref name="barkeri"> PMID:19118381 </ref> Thus, it is utilized  by a variety of organisms that metabolize methylamines for acquiring energy such as methanogenic Archaea of the family Methanosarcinace; along with two known bacterium species<ref name="trans" /> <ref name="barkeri" /> Pyrrolysine’s structural makeup consists of 4-methylpyrroline-5-carboxylate in amide linkage with the N<sup>ϵ</sup> of lysine.<ref name="lysine">PMID:16096277 </ref> This arrangement is comparable to lysine; however, being its derivative it contains an added pyrroline ring that is found to lie situated at the back of the structure.<ref name="lysine" />  
[[Pyrrolysyl-tRNA synthetase]] (PyIRS) or '''Pyrrolysyl-tRNA ligase''' is encoded by the gene pyIS and is found to belong as a part of the group of enzymatic proteins whose role involves the cellular process of tRNA aminoacylation required for protein translation.<ref name="trans"> PMID:17267409 </ref> In particular, PyIRS is required for the activation of the amino acid [[Pyrrolysine]] as it associates with a tRNA generating a specific tRNA<sup>Pyl</sup>, which is then further used to transfer the amino acid to a growing polypeptide.<ref name="pept"> PMID:19022179 </ref> The involvement of PyIRS is carried out due to the anticodon CUA on the suppressor tRNA<sup>Pyl</sup> that is complementary to the UAG codon.<ref name="amber"> PMID:1796745 </ref> <ref>PMID:15314242 </ref> The interesting fact is that this is done by the response of the codon UAG (amber codon) on the mRNA that is normally a stop codon in other organisms. Pyrrolysine (Pyl) is the 22nd existing amino acid genetically encoded in nature that was first discovered as a byproduct contained by the active site of monomethylamine methyltransferase, exclusively from Methanosarcina barkeri (M. barkeri) species.<ref name="pept" /> <ref name="barkeri"> PMID:19118381 </ref> Thus, it is utilized  by a variety of organisms that metabolize methylamines for acquiring energy such as methanogenic Archaea of the family Methanosarcinace; along with two known bacterium species<ref name="trans" /> <ref name="barkeri" /> Pyrrolysine’s structural makeup consists of 4-methylpyrroline-5-carboxylate in amide linkage with the N<sup>ϵ</sup> of lysine.<ref name="lysine">PMID:16096277 </ref> This arrangement is comparable to lysine; however, being its derivative it contains an added pyrroline ring that is found to lie situated at the back of the structure.<ref name="lysine" />  





Revision as of 08:12, 25 August 2026

Pyrrolysyl-tRNA synthetase complex with ATP analog and tert-butoxycarbo-lysine (PDB code 2zin)

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3D structures of pyrrolysyl-tRNA synthetase

See Pyrrolysine


Additional Resources

For Additional information, see: Ligases

References