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首页> 外文期刊>The biochemical journal >Crystal structure of fibrinogen-Aα peptide 1–23 (F8Y) bound to bovine thrombin explains why the mutation of Phe-8 to tyrosine strongly inhibits normal cleavage at Arg-16
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Crystal structure of fibrinogen-Aα peptide 1–23 (F8Y) bound to bovine thrombin explains why the mutation of Phe-8 to tyrosine strongly inhibits normal cleavage at Arg-16

机译:与牛凝血酶结合的纤维蛋白原-Aα肽1-23(F8Y)的晶体结构解释了为什么Phe-8突变为酪氨酸会强烈抑制Arg-16的正常裂解

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pA peptide containing residues 1–50 of the Aα-chain of fibrinogen, expressed as a fusion peptide with β-galactosidase, is rapidly cleaved by thrombin at Arg-16, similarly to whole fibrinogen. When Phe-8, which is highly conserved, is replaced with tyrosine (F8Y), the cleavage is slowed drastically [Lord, Byrd, Hede, Wei and Colby (1990) J. Biol. Chem. b265/b, 838–843]. To examine the structural basis for this result, we have determined the crystal structure of bovine thrombin complexed with a synthetic peptide containing residues 1–23 of fibrinogen Aα and the F8Y mutation. The crystals are in space group iP/i4sub3/sub2sub1/sub2, with unit-cell dimensions of ia/i = 88.3 ? (1 ? = 0.1 nm), ic/i = 195.5 ? and two complexes in the asymmetric unit. The final iR/i factor is 0.183 for 2σ data from 7.0 to 2.5 ? resolution. There is continuous density for the five residues in the P3, P2, P1, P1′ and P2′ positions of the peptide (Gly-14f to Pro-18f) at the active site of thrombin, and isolated but well-defined density for Tyr-8f at position P9 in the hydrophobic pocket of thrombin. The tyrosine residue is shifted relative to phenylalanine in the native peptide because the phenol side chain is larger and makes a novel, intrapeptide hydrogen bond with Gly-14f. Adjacent peptide residues cannot form the hydrogen bonds that stabilize the secondary structure of the native peptide. Consequently, the ‘reaction’ geometry at the scissile bond, eight residues from the mutation, is perturbed and the peptide is mostly uncleaved in the crystal structure./p
机译:>含有纤维蛋白原Aα链1-50残基的肽,表达为与β-半乳糖苷酶的融合肽,与整个纤维蛋白原相似,在Arg-16处被凝血酶迅速裂解。当高度保守的Phe-8被酪氨酸(F8Y)取代时,裂解会大大减慢[Lord,Byrd,Hede,Wei and Colby(1990)J.化学 265 ,838–843]。为了检查该结果的结构基础,我们确定了牛凝血酶的晶体结构,该结构与含有纤维蛋白原Aα的1–23残基和F8Y突变的合成肽复合。晶体在空间群 P 4 3 2 1 2中,晶胞尺寸为 a = 88.3 &nbsp ;? (1?= 0.1纳米), c = 195.5?和两个不对称单元中的络合物。对于2σ数据(从7.0到2.5),最终 R 因子为0.183。解析度。在凝血酶的活性位点,肽(Gly-14f至Pro-18f)的P3,P2,P1,P1'和P2'位置上的5个残基具有连续的密度,而Tyr的分离但定义明确的密度凝血酶疏水口袋中P9位置的-8f。酪氨酸残基相对于天然肽中的苯丙氨酸移位,因为苯酚侧链更大,并与Gly-14f形成了新的肽内氢键。相邻的肽残基不能形成稳定天然肽二级结构的氢键。因此,易位键处的“反应”几何结构(突变的8个残基)受到干扰,肽段的晶体结构大部分未被切割。

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