2h4r: Difference between revisions

New page: left|200px<br /><applet load="2h4r" size="350" color="white" frame="true" align="right" spinBox="true" caption="2h4r, resolution 2.700Å" /> '''Crystal structure o...
 
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==Overview==
==Overview==
Most serpins are associated with protease inhibition, and their ability to, form loop-sheet polymers is linked to conformational disease and the human, serpinopathies. Here we describe the structural and functional dissection, of how a unique serpin, the non-histone architectural protein, MENT, (Myeloid and Erythroid Nuclear Termination stage-specific protein), participates in DNA and chromatin condensation. Our data suggest that MENT, contains at least two distinct DNA-binding sites, consistent with its, simultaneous binding to the two closely juxtaposed linker DNA segments on, a nucleosome. Remarkably, our studies suggest that the reactive centre, loop, a region of the MENT molecule essential for chromatin bridging in, vivo and in vitro, is able to mediate formation of a loop-sheet oligomer., These data provide mechanistic insight into chromatin compaction by a, non-histone architectural protein and suggest how the structural, plasticity of serpins has adapted to mediate physiological, rather than, pathogenic, loop-sheet linkages.
Most serpins are associated with protease inhibition, and their ability to form loop-sheet polymers is linked to conformational disease and the human serpinopathies. Here we describe the structural and functional dissection of how a unique serpin, the non-histone architectural protein, MENT (Myeloid and Erythroid Nuclear Termination stage-specific protein), participates in DNA and chromatin condensation. Our data suggest that MENT contains at least two distinct DNA-binding sites, consistent with its simultaneous binding to the two closely juxtaposed linker DNA segments on a nucleosome. Remarkably, our studies suggest that the reactive centre loop, a region of the MENT molecule essential for chromatin bridging in vivo and in vitro, is able to mediate formation of a loop-sheet oligomer. These data provide mechanistic insight into chromatin compaction by a non-histone architectural protein and suggest how the structural plasticity of serpins has adapted to mediate physiological, rather than pathogenic, loop-sheet linkages.


==About this Structure==
==About this Structure==
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[[Category: Gallus gallus]]
[[Category: Gallus gallus]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Buckle, A.M.]]
[[Category: Buckle, A M.]]
[[Category: Irving, J.A.]]
[[Category: Irving, J A.]]
[[Category: McGowan, S.]]
[[Category: McGowan, S.]]
[[Category: Whisstock, J.C.]]
[[Category: Whisstock, J C.]]
[[Category: serine protease inhibitor]]
[[Category: serine protease inhibitor]]
[[Category: serpin]]
[[Category: serpin]]


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