User:Sumit Kamat/Sandbox Reserved 901

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[[Image:2w5y sequence chain final.PNG|thumb|750px|center|Figure 5. Secondary structure of KMT2A SET Domain with the cofactor product S-Adenosylhomocysteine. <ref> PMID: 6667333 </ref> ]]
[[Image:2w5y sequence chain final.PNG|thumb|750px|center|Figure 5. Secondary structure of KMT2A SET Domain with the cofactor product S-Adenosylhomocysteine. <ref> PMID: 6667333 </ref> ]]
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[[Image:Alignment of Kmt2a Domains.jpg|thumb|1000px|center|Figure 6. Phylogenetic analysis based on the sequence of only the SET domains of KMT2 proteins in yeast and Humans ]]
 
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KMT2A alone has over a dozen of binding partners and is cleaved into two pieces, a larger N-terminal fragment, involved in gene repression, and a smaller C-terminal fragment, which is a transcriptional activator. The cleavage, followed by the association of the two fragments, is necessary for KMT2A to be fully active. KMT2A-E can be distinguished through the catalytic Su(var)3–9, Enhancer of Zeste, Trithorax (SET) domain, however the number of PHD fingers found in these proteins differs considerably. Four PHD fingers are present in KMT2A and KMT2B, whereas KMT2C, KMT2D and KMT2E have eight, seven, and one, respectively <ref> Hsieh JJ, Ernst P, Erdjument-Bromage H, Tempst P, Korsmeyer SJ. Proteolytic cleavage of MLL generates a complex of N- and C-terminal fragments that confers protein stability and subnuclear localization. Mol Cell Biol. 2003;23(1):186–194. doi:10.1128/mcb.23.1.186-194.2003 </ref>.
KMT2A alone has over a dozen of binding partners and is cleaved into two pieces, a larger N-terminal fragment, involved in gene repression, and a smaller C-terminal fragment, which is a transcriptional activator. The cleavage, followed by the association of the two fragments, is necessary for KMT2A to be fully active. KMT2A-E can be distinguished through the catalytic Su(var)3–9, Enhancer of Zeste, Trithorax (SET) domain, however the number of PHD fingers found in these proteins differs considerably. Four PHD fingers are present in KMT2A and KMT2B, whereas KMT2C, KMT2D and KMT2E have eight, seven, and one, respectively <ref> Hsieh JJ, Ernst P, Erdjument-Bromage H, Tempst P, Korsmeyer SJ. Proteolytic cleavage of MLL generates a complex of N- and C-terminal fragments that confers protein stability and subnuclear localization. Mol Cell Biol. 2003;23(1):186–194. doi:10.1128/mcb.23.1.186-194.2003 </ref>.
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[[Image: Kmt2a conservation hmrf.PNG |thumb|750px|center|Figure 7. KMT2A Conservation between Humans, Rats, Mouse and Fruit Flies ]]
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[[Image: Kmt2a conservation hmrf.PNG |thumb|750px|center|Figure 6. KMT2A Conservation between Humans, Rats, Mouse and Fruit Flies ]]
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[[Image:Conservation final 2.PNG |thumb|500px|center|Figure 8.Schematic representation of the KMT2A-E subfamily ]]
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[[Image:Conservation final 2.PNG |thumb|500px|center|Figure 7.Schematic representation of the KMT2A-E subfamily ]]

Revision as of 17:26, 29 April 2020

Histone-lysine N-methyltransferase 2A KMT2A

Histone-lysine N-methyltransferase 2A KMT2A (PDB entry 2w5y)

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Sumit Kamat

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