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The C Terminus of YopT Is Crucial for Activity and the N Terminus Is Crucial for Substrate Binding

机译:YopT的C末端对于活性至关重要而N末端对于底物结合至关重要

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摘要

Recently, it was shown that Yersinia outer protein T (YopT) belongs to a new family of cysteine proteases containing invariant C, H, and D residues that are crucial for its activity. YopT cleaves RhoA, Rac, and Cdc42 at their C termini, thereby releasing them from the membrane. Moreover, YopT inhibits the Rho-rhotekin and Rho-guanine nucleotide dissociation inhibitor interactions. To characterize the active domain of YopT, we constructed N- and C-terminal truncations and expressed them as glutathione S-transferase fusion proteins in Escherichia coli. The toxin fragments were tested for stability by trypsin digestion. The activity of the proteins was studied by membrane release assay, rhotekin pulldown experiments, and microinjection. Whereas deletion of the first 74 N-terminal amino acids did not influence the activity of YopT, deletion of 8 amino acids from the C terminus led to complete loss of activity. N-terminal deletion of 100 amino acids led to an inactive protein, although it still contained the amino acids C139, H258, and D274, which are essential for catalysis. Loss of activity of the N-terminal deletions corresponded to the block of interaction with RhoA, indicating that residues 75 to 100 of YopT are essential for binding to the GTPase. By contrast, when up to 15 amino acids of the C terminus were deleted, the protein had no activity but was still able to interact with RhoA, suggesting a role for the C terminus in the enzyme activity of YopT.
机译:最近,表明耶尔森氏菌外蛋白T(YopT)属于一个新的半胱氨酸蛋白酶家族,其半胱氨酸恒定,C和H残基均对其活性至关重要。 YopT在其C末端切割RhoA,Rac和Cdc42,从而将它们从膜中释放出来。此外,YopT抑制Rho-rhotekin和Rho-鸟嘌呤核苷酸解离抑制剂的相互作用。为了表征YopT的活性域,我们构建了N和C端截短,并在大肠杆菌中将其表达为谷胱甘肽S-转移酶融合蛋白。通过胰蛋白酶消化测试毒素片段的稳定性。通过膜释放测定,类红素下拉实验和显微注射研究了蛋白质的活性。删除前74个N末端氨基酸不会影响YopT的活性,而从C末端删除8个氨基酸会导致活性完全丧失。 N末端100个氨基酸的缺失导致蛋白质失活,尽管该蛋白质仍包含催化必需的氨基酸C139,H258和D274。 N末端缺失的活性丧失对应于与RhoA相互作用的阻断,表明YopT的75至100个残基对于结合GTP酶必不可少。相反,当删除C末端多达15个氨基酸时,该蛋白质没有活性,但仍能够与RhoA相互作用,表明C末端在YopT的酶活性中起作用。

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