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New page: left|200px<br /><applet load="2avw" size="350" color="white" frame="true" align="right" spinBox="true" caption="2avw, resolution 2.0Å" /> '''Crystal structure of ...
 
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==Overview==
==Overview==
Group A Streptococcus secretes cysteine proteases named Mac-1 and Mac-2, that mediate host immune evasion by targeting both IgG and Fc receptors., Here, we report the crystal structures of Mac-1 and its catalytically, inactive C94A mutant in two different crystal forms. Despite the lack of, sequence homology, Mac-1 adopts the canonical papain fold. Alanine, mutations at the active site confirmed the critical residues involved in a, papain-like catalytic mechanism. Mac-1 forms a symmetric dimer in both, crystal forms and displays the unique dimer interface among papain, superfamily members. Mutations at the dimer interface resulted in a, significant reduction in IgG binding and catalysis, suggesting that the, dimer contributes to both IgG specificity and enzyme cooperativity. A, tunnel observed at the dimer interface constitutes a target for designing, potential Mac-1-specific antimicrobial agents. The structures also offer, insight into the functional difference between Mac-1 and Mac-2.
Group A Streptococcus secretes cysteine proteases named Mac-1 and Mac-2 that mediate host immune evasion by targeting both IgG and Fc receptors. Here, we report the crystal structures of Mac-1 and its catalytically inactive C94A mutant in two different crystal forms. Despite the lack of sequence homology, Mac-1 adopts the canonical papain fold. Alanine mutations at the active site confirmed the critical residues involved in a papain-like catalytic mechanism. Mac-1 forms a symmetric dimer in both crystal forms and displays the unique dimer interface among papain superfamily members. Mutations at the dimer interface resulted in a significant reduction in IgG binding and catalysis, suggesting that the dimer contributes to both IgG specificity and enzyme cooperativity. A tunnel observed at the dimer interface constitutes a target for designing potential Mac-1-specific antimicrobial agents. The structures also offer insight into the functional difference between Mac-1 and Mac-2.


==About this Structure==
==About this Structure==
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[[Category: Agniswamy, J.]]
[[Category: Agniswamy, J.]]
[[Category: Liu, M.]]
[[Category: Liu, M.]]
[[Category: Musser, J.M.]]
[[Category: Musser, J M.]]
[[Category: Nagiec, M.J.]]
[[Category: Nagiec, M J.]]
[[Category: Schuck, P.]]
[[Category: Schuck, P.]]
[[Category: Sun, P.D.]]
[[Category: Sun, P D.]]
[[Category: GOL]]
[[Category: GOL]]
[[Category: SO4]]
[[Category: SO4]]
[[Category: mac-1]]
[[Category: mac-1]]


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