1ob8: Difference between revisions

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==Overview==
==Overview==
Two archaeal Holliday junction resolving enzymes, Holliday junction, cleavage (Hjc) and Holliday junction endonuclease (Hje), have been, characterized. Both are members of a nuclease superfamily that includes, the type II restriction enzymes, although their DNA cleaving activity is, highly specific for four-way junction structure and not nucleic acid, sequence. Despite 28% sequence identity, Hje and Hjc cleave junctions with, distinct cutting patterns--they cut different strands of a four-way, junction, at different distances from the junction centre. We report the, high-resolution crystal structure of Hje from Sulfolobus solfataricus. The, structure provides a basis to explain the differences in substrate, specificity of Hje and Hjc, which result from changes in dimer, organization, and suggests a viral origin for the Hje gene. Structural and, biochemical data support the modelling of an Hje:DNA junction complex, highlighting a flexible loop that interacts intimately with the junction, centre. A highly conserved serine residue on this loop is shown to be, essential for the enzyme's activity, suggesting a novel variation of the, nuclease active site. The loop may act as a conformational switch, ensuring that the active site is completed only on binding a four-way, junction, thus explaining the exquisite specificity of these enzymes.
Two archaeal Holliday junction resolving enzymes, Holliday junction cleavage (Hjc) and Holliday junction endonuclease (Hje), have been characterized. Both are members of a nuclease superfamily that includes the type II restriction enzymes, although their DNA cleaving activity is highly specific for four-way junction structure and not nucleic acid sequence. Despite 28% sequence identity, Hje and Hjc cleave junctions with distinct cutting patterns--they cut different strands of a four-way junction, at different distances from the junction centre. We report the high-resolution crystal structure of Hje from Sulfolobus solfataricus. The structure provides a basis to explain the differences in substrate specificity of Hje and Hjc, which result from changes in dimer organization, and suggests a viral origin for the Hje gene. Structural and biochemical data support the modelling of an Hje:DNA junction complex, highlighting a flexible loop that interacts intimately with the junction centre. A highly conserved serine residue on this loop is shown to be essential for the enzyme's activity, suggesting a novel variation of the nuclease active site. The loop may act as a conformational switch, ensuring that the active site is completed only on binding a four-way junction, thus explaining the exquisite specificity of these enzymes.


==About this Structure==
==About this Structure==
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[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Sulfolobus solfataricus]]
[[Category: Sulfolobus solfataricus]]
[[Category: Bond, C.S.]]
[[Category: Bond, C S.]]
[[Category: Middleton, C.L.]]
[[Category: Middleton, C L.]]
[[Category: Parker, J.L.]]
[[Category: Parker, J L.]]
[[Category: Richard, D.J.]]
[[Category: Richard, D J.]]
[[Category: White, M.F.]]
[[Category: White, M F.]]
[[Category: EDO]]
[[Category: EDO]]
[[Category: SO4]]
[[Category: SO4]]
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[[Category: thermophile]]
[[Category: thermophile]]


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