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H3K9me2/3 binding of the MBT domain protein LIN-61 is essential for Caenorhabditis elegans vulva development
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نویسنده
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koester-eiserfunke n. ,fischle w.
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منبع
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plos genetics - 2011 - دوره : 7 - شماره : 3
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چکیده
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Mbt domain proteins are involved in developmental processes and tumorigenesis. in vitro binding and mutagenesis studies have shown that individual mbt domains within clustered mbt repeat regions bind mono- and dimethylated histone lysine residues with little to no sequence specificity but discriminate against the tri- and unmethylated states. however,the exact function of promiscuous histone methyl-lysine binding in the biology of mbt domain proteins has not been elucidated. here,we show that the caenorhabditis elegans four mbt domain protein lin-61,in contrast to other mbt repeat factors,specifically interacts with histone h3 when methylated on lysine 9,displaying a strong preference for di- and trimethylated states (h3k9me2/3). although the fourth mbt repeat is implicated in this interaction,h3k9me2/3 binding minimally requires mbt repeats two to four. further,mutagenesis of residues conserved with other methyl-lysine binding mbt regions in the fourth mbt repeat does not abolish interaction,implicating a distinct binding mode. in vivo,h3k9me2/3 interaction of lin-61 is required for c. elegans vulva development within the synmuvb pathway. mutant lin-61 proteins deficient in h3k9me2/3 binding fail to rescue lin-61 synmuvb function. also,previously identified point mutant synmuvb alleles are deficient in h3k9me2/3 interaction although these target residues that are outside of the fourth mbt repeat. interestingly,lin-61 genetically interacts with two other synmuvb genes,hpl-2,an hp1 homologous h3k9me2/3 binding factor,and met-2,a setdb1 homologous h3k9 methyl transferase (h3k9mt),in determining c. elegans vulva development and fertility. besides identifying the first sequence specific and di-/trimethylation binding mbt domain protein,our studies imply complex multi-domain regulation of ligand interaction of mbt domains. our results also introduce a mechanistic link between lin-61 function and biology,and they establish interplay of the h3k9me2/3 binding proteins,lin-61 and hpl-2,as well as the h3k9mt met-2 in distinct developmental pathways. © 2011 koester-eiserfunke,fischle.
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آدرس
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laboratory of chromatin biochemistry,max planck institute for biophysical chemistry,göttingen, Germany, laboratory of chromatin biochemistry,max planck institute for biophysical chemistry,göttingen, Germany
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Authors
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