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Two conformational states of Candida rugosa lipase.

机译:皱念珠菌脂肪酶的两种构象状态。

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摘要

The structure of Candida rugosa lipase in a new crystal form has been determined and refined at 2.1 A resolution. The lipase molecule was found in an inactive conformation, with the active site shielded from the solvent by a part of the polypeptide chain-the flap. Comparison of this structure with the previously determined "open" form of this lipase, in which the active site is accessible to the solvent and presumably the substrate, shows that the transition between these 2 states requires only movement of the flap. The backbone NH groups forming the putative oxyanion hole do not change position during this rearrangement, indicating that this feature is preformed in the inactive state. The 2 lipase conformations probably correspond to states at opposite ends of the pathway of interfacial activation. Quantitative analysis indicates a large increase of the hydrophobic surface in the vicinity of the active site. The flap undergoes a flexible rearrangement during which some of its secondary structure refolds. The interactions of the flap with the rest of the protein change from mostly hydrophobic in the inactive form to largely hydrophilic in the "open" conformation. Although the flap movement cannot be described as a rigid body motion, it has very definite hinge points at Glu 66 and at Pro 92. The rearrangement is accompanied by a cis-trans isomerization of this proline, which likely increases the energy required for the transition between the 2 states, and may play a role in the stabilization of the active conformation at the water/lipid interface. Carbohydrate attached at Asn 351 also provides stabilization for the open conformation of the flap.
机译:已确定新的晶体形式的皱纹念珠菌脂肪酶的结构,并以2.1 A的分辨率精制。发现脂肪酶分子处于非活性构象,其活性位点被多肽链的一部分(皮瓣)与溶剂隔离。将该结构与该脂肪酶的先前确定的“开放”形式进行比较,其中活性位点可被溶剂以及可能是底物接近,表明这两种状态之间的转变仅需要瓣的移动。形成假定的氧阴离子孔的主链NH基团在此重排过程中不会改变位置,这表明此功能是在非活性状态下执行的。 2种脂肪酶构象可能对应于界面活化途径相对两端的状态。定量分析表明,活性位点附近的疏水表面大量增加。襟翼进行了灵活的重新排列,在此过程中,它的一些二级结构重新折叠。皮瓣与其余蛋白质的相互作用从非活性形式的大部分疏水性变为“开放”构型的大部分亲水性。尽管襟翼运动不能被描述为刚体运动,但它在Glu 66和Pro 92上具有非常明确的铰链点。重排伴随着该脯氨酸的顺反异构化,这可能会增加过渡所需的能量处于两个状态之间,并且可能在水/脂质界面的活性构象的稳定化中起作用。在Asn 351处附着的碳水化合物还可以为襟翼的开放构造提供稳定性。

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