首页> 外文期刊>Journal of Molecular Biology >Protein-splicing reaction via a thiazolidine intermediate: crystal structure of the VMA1-derived endonuclease bearing the N and C-terminal propeptides.
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Protein-splicing reaction via a thiazolidine intermediate: crystal structure of the VMA1-derived endonuclease bearing the N and C-terminal propeptides.

机译:通过噻唑烷中间体的蛋白剪接反应:带有N和C端前肽的VMA1衍生的核酸内切酶的晶体结构。

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摘要

Protein splicing excises an internal intein segment from a protein precursor precisely, and concomitantly ligates flanking N and C-extein polypeptides at the respective sides of the precursor. Here, a series of precursor recombinants bearing 11 N-extein and ten C-extein residues is prepared for the intein of the Saccharomyces cerevisiae VMA1-derived homing endonuclease referred to as VDE and as PI-SceI. The recombinant with replacements of C284S, H362N, N737S, and C738S is chosen as a spliceable precursor model and is then subjected to a 2.1A resolution crystallographic analysis. The crystal structure shows that the introduced extein polypeptides are located in the vicinity of the splicing site, and that each of their peptide bonds is in the trans conformation. The S284 O(gamma) atom located at a distance of 3.1A from the G283 C atom in the N-terminal junction suggests that a nucleophilic attack of the C284 S(gamma) atom on the G283 C atom forms a tetrahedral intermediate containing a five-membered thiazolidine ring. The tetrahedral intermediate is supposedly resolved into a thioester acyl group upon the cleavage of the linkage between the G283 C and C284 N atoms, and this thioester acyl formation completes the initial steps of Nright arrowS acyl shift at the junction between the N-extein and intein. The S738 O(gamma) atom in the C-terminal junction is placed in close proximity to the S284 O(gamma) atom at a distance of 3.6A, and is well suited for another nucleophilic attack on the resultant thioester acyl group that is then subjected to the transesterification in the next step. The reaction steps proposed for the acyl shift are driven entirely by protonation and deprotonation, in which proton ingress and egress is balanced within the splicing site.
机译:蛋白质剪接可精确地从蛋白质前体中切除内部内含蛋白片段,并随之在前体的各个侧面连接侧翼的N和C-外泌蛋白多肽。在这里,准备了一系列带有11个N-蛋白和10个C-蛋白残基的前体重组体,用于酿酒酵母VMA1衍生的归巢内切核酸酶的内含子,称为VDE和PI-SceI。选择具有C284S,H362N,N737S和C738S替代物的重组体作为可拼接的前体模型,然后对其进行2.1A分辨率的晶体学分析。晶体结构表明,引入的外源蛋白多肽位于剪接位点附近,并且它们的每个肽键都处于反式构象。位于N末端连接点与G283 C原子相距3.1A的S284 O(γ)原子表明C284 S(γ)原子对G283 C原子的亲核攻击形成了一个四面体中间体,其中包含五个元的噻唑烷环。据推测,四面体中间体会在G283 C和C284 N原子之间的键断裂时分解为硫酯酰基,该硫酯酰基的形成完成了N右旋蛋白与内含肽之间连接处Nright arrowS酰基转移的初始步骤。 。 C末端连接处的S738 O(γ)原子与S284 O(γ)原子的距离为3.6A,非常适合对所得硫酯酰基进行另一次亲核攻击在下一步中进行酯交换。建议的酰基转移反应步骤完全由质子化和去质子化驱动,其中质子的进出在剪接位点内是平衡的。

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