User:Mark Macbeth/Sandbox Set7 9: Difference between revisions

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Histone methylation has been found to be associated with both gene activation and deactivation. The factors influencing the specific outcome are the methylation site, residue type (Lys or Arg) and the extent (mono-, di- or tri-methylation).<ref name="Dong">PMID: 23566087</ref> Sites known for gene activation are Lys-4, Lys-36, and Lys-79 on H3; whereas, methylation at Lys-9 and Lys-27 on H3 and Lys-20 on H4 are known for gene inactivation.<ref name="Rizzo">PMID: 21847010</ref> Typically, methylation of some of these sites are can be found on both active and inactive genes. Some tumor related genes such as [https://en.wikipedia.org/wiki/P53 p53] are site specifically methylated to promote biological function <ref name = "Rizzo" />, whereas hypomethylation of [https://en.wikipedia.org/wiki/CpG_site#Methylation,_silencing,_cancer,_and_aging CpG] is linked to tumor genesis.<ref name="Lun" />   
Histone methylation has been found to be associated with both gene activation and deactivation. The factors influencing the specific outcome are the methylation site, residue type (Lys or Arg) and the extent (mono-, di- or tri-methylation).<ref name="Dong">PMID: 23566087</ref> Sites known for gene activation are Lys-4, Lys-36, and Lys-79 on H3; whereas, methylation at Lys-9 and Lys-27 on H3 and Lys-20 on H4 are known for gene inactivation.<ref name="Rizzo">PMID: 21847010</ref> Typically, methylation of some of these sites are can be found on both active and inactive genes. Some tumor related genes such as [https://en.wikipedia.org/wiki/P53 p53] are site specifically methylated to promote biological function <ref name = "Rizzo" />, whereas hypomethylation of [https://en.wikipedia.org/wiki/CpG_site#Methylation,_silencing,_cancer,_and_aging CpG] is linked to tumor genesis.<ref name="Lun" />   


Sidechain methylation of basic amino acids in histone proteins is accomplished by the Histone Methyltransferase class of enzymes. In all but one instance, the many enzymes that are lysine substrate specific contain the structural protein domain known as the [https://en.wikipedia.org/wiki/SET_domain SET domain]. Generally, these are known to methylate lysine in the H3, H4 and H2a core proteins. One enzyme in this family is the <scene name='81/811092/Kmt_full/2'>SET7/9 lysine methyltransferase</scene>, which adds a methyl group to Lys4 of the H3 protein. This histone modification results in promotion of gene unwinding and gene transcription.<ref name="Xiao" />, <ref name="Dong" />
Sidechain methylation of basic amino acids in histone proteins is accomplished by the Histone Methyltransferase class of enzymes. In all but one instance, the many enzymes that are lysine substrate specific contain the structural protein domain known as the [https://en.wikipedia.org/wiki/SET_domain SET domain]. Generally, these are known to methylate lysine in the H3, H4 and H2a core proteins. One enzyme in this family is the <scene name='81/811092/Kmt_full/2'>SET7/9 lysine methyltransferase</scene>, which adds a methyl group to Lys4 of the H3 protein. This histone modification results in promotion of gene unwinding and gene transcription.<ref name="Xiao">PMID: 12540855</ref>, <ref name="Dong" />


==Lysine Methyltransferase (KMT) Structure==
==Lysine Methyltransferase (KMT) Structure==

Latest revision as of 16:57, 13 January 2020

Histone Lysine Methyltransferase: Gene Activator

Lysine Methyl Transferase

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References


Student Contributors

Lauryn Padgett, Alexandra Pentala, Madeleine Wilson

Proteopedia Page Contributors and Editors (what is this?)

Mark Macbeth