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Structural basis of conformational transitions in the active site and 80′s loop in the FK506-binding protein FKBP12

机译:FK506结合蛋白FKBP12的活性位点和80环的构象转变的结构基础

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摘要

The extensive set of NMR doublings exhibited by the immunophilin FKBP12 (FK506-binding protein 12) arose from a slow transition to the cis-peptide configuration at Gly89 near the tip of the 80′s loop, the site for numerous protein-recognition interactions for both FKBP12 and other FKBP domain proteins. The 80′s loop also exhibited linebroadening, indicative of microsecond to millisecond conformational dynamics, but only in the trans-peptide state. The G89A variant shifted the trans–cis peptide equilibrium from 88:12 to 33:67, whereas a proline residue substitution induced fully the cis-peptide configuration. The 80′s loop conformation in the G89P crystal structure at 1.50 Å resolution differed from wild-type FKBP12 primarily at residues 88, 89 and 90, and it closely resembled that reported for FKBP52. Structure-based chemical-shift predictions indicated that the microsecond to millisecond dynamics in the 80′s loop probably arose from a concerted main chain (ψ88 and ϕ89) torsion angle transition. The indole side chain of Trp59 at the base of the active-site cleft was reoriented ~90o and the adjacent backbone was shifted in the G89P crystal structure. NOE analysis of wild-type FKBP12 demonstrated that this indole populates the perpendicular orientation at 20%. The 15N relaxation analysis was consistent with the indole reorientation occurring in the nanosecond timeframe. Recollection of the G89P crystal data at 1.20 Å resolution revealed a weaker wild-type-like orientation for the indole ring. Differences in the residues that underlie the Trp59 indole ring and altered interactions linking the 50′s loop to the active site suggested that reorientation of this ring may be disfavoured in the other six members of the FKBP domain family that bear this active-site tryptophan residue.
机译:亲免蛋白FKBP12(FK506结合蛋白12)表现出的广泛的NMR加倍作用是由80环末端附近的Gly 89 缓慢过渡到顺肽构型引起的。 FKBP12和其他FKBP结构域蛋白的大量蛋白质识别相互作用的位点。 80's环也表现出线宽,表明微秒至毫秒的构象动力学,但仅在跨肽状态下。 G89A变体使反式-顺式肽平衡从88:12变为33:67,而脯氨酸残基取代完全诱导了顺式肽构型。 G89P晶体结构中80'环的构象以1.50Å的分辨率不同于野生型FKBP12,主要在残基88、89和90处不同,它与FKBP52的报道极为相似。基于结构的化学位移预测表明,在80年代的环中,微秒到毫秒的动力学可能是由一致的主链(ψ88和ϕ89)扭转角转变引起的。在活动部位裂口底部的Trp 59 的吲哚侧链被重新定向为〜90 o ,相邻的主链在G89P晶体结构中移动。野生型FKBP12的NOE分析表明,该吲哚在垂直方向的分布为20%。 15 N弛豫分析与纳秒时间内发生的吲哚重新取向一致。以1.20Å的分辨率收集G89P晶体数据后发现,吲哚环的野生型取向较弱。 Trp 59 吲哚环下方残基的不同以及连接50环与活性位点之间相互作用的相互作用的改变表明,该环的重新定向可能不适合FKBP结构域家族的其他六个成员带有这个活性位点色氨酸残基。

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