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Five atomic resolution structures of endothiapepsin inhibitor complexes: implications for the aspartic proteinase mechanism.

机译:内皮抑素抑制剂复合物的五个原子拆分结构:对天冬氨酸蛋白酶机制的影响。

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Endothiapepsin is derived from the fungus Endothia parasitica and is a member of the aspartic proteinase class of enzymes. This class of enzyme is comprised of two structurally similar lobes, each lobe contributing an aspartic acid residue to form a catalytic dyad that acts to cleave the substrate peptide bond. The three-dimensional structures of endothiapepsin bound to five transition state analogue inhibitors (H189, H256, CP-80,794, PD-129,541 and PD-130,328) have been solved at atomic resolution allowing full anisotropic modelling of each complex. The active sites of the five structures have been studied with a view to studying the catalytic mechanism of the aspartic proteinases by locating the active site protons by carboxyl bond length differences and electron density analysis. In the CP-80,794 structure there is excellent electron density for the hydrogen on the inhibitory statine hydroxyl group which forms a hydrogen bond with the inner oxygen of Asp32. The location of this proton has implications for the catalytic mechanism of the aspartic proteinases as it is consistent with the proposed mechanism in which Asp32 is the negatively charged aspartate. A number of short hydrogen bonds (approximately 2.6 A) with ESD values of around 0.01 A that may have a role in catalysis have been identified within the active site of each structure; the lengths of these bonds have been confirmed using NMR techniques. The possibility and implications of low barrier hydrogen bonds in the active site are considered.
机译:内皮抑素来自真菌寄生性内皮素,是天冬氨酸蛋白酶类别的一种酶。这类酶由两个结构相似的叶组成,每个叶贡献天冬氨酸残基以形成催化二元体,该二元体起作用以切割底物肽键。结合了五个过渡态类似物抑制剂(H189,H256,CP-80,794,PD-129,541和PD-130,328)的内皮蛋白酶的三维结构已在原子分辨率下得到解决,从而可以对每个复合物进行完整的各向异性建模。为了研究天冬氨酸蛋白酶的催化机理,通过羧基键长差和电子密度分析来定位活性位点质子,研究了这五个结构的活性位点。在CP-80,794结构中,抑制他汀类药物羟基上的氢具有极好的电子密度,该氢与Asp32的内部氧形成氢键。该质子的位置对天冬氨酸蛋白酶的催化机理有影响,因为它与所提出的其中Asp32是带负电荷的天冬氨酸的机理一致。在每个结构的活性位点内,已经鉴定出许多短的氢键(约2.6 A),其ESD值约为0.01 A,可能在催化中起作用。这些键的长度已使用NMR技术确认。考虑了在活性位点低势垒氢键的可能性和影响。

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