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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >ALS-causing profilin-1-mutant forms a non-native helical structure in membrane environments
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ALS-causing profilin-1-mutant forms a non-native helical structure in membrane environments

机译:ALS引起的睫状体1-突变体在膜环境中形成非天然螺旋结构

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摘要

Despite having physiological functions completely different from superoxide dismutase 1 (SOD1), profilin 1 (PFN1) also carries mutations causing amyotrophic lateral sclerosis (ALS) with a striking similarity to that triggered by SOD1 mutants. Very recently, the C71G-PFN1 has been demonstrated to cause ALS by a gain of toxicity and the acceleration of motor neuron degeneration preceded the accumulation of its aggregates. Here by atomic-resolution NMR determination of conformations and dynamics of WT-PFN1 and C71G-PFN1 in aqueous buffers and in membrane mimetics DMPC/DHPC bicelle and DPC micelle, we deciphered that: 1) the thermodynamic destabilization by C71G transforms PFN1 into coexistence with the unfolded state, which is lacking of any stable tertiary/secondary structures as well as restricted ps-ns backbone motions, thus fundamentally indistinguishable from ALS-causing SOD1 mutants. 2) Most strikingly, while WT-PFN1 only weakly interacts with DMPC/DHPC bicelle without altering the native structure, C71G-PFN1 acquires abnormal capacity in strongly interacting with DMPC/DHPC bicelle and DPC micelle, energetically driven by transforming the highly disordered unfolded state into a non-native helical structure, similar to what has been previously observed on ALS-causing SOD1 mutants. Our results imply that one potential mechanism for C71G-PFN1 to initiate ALS might be the abnormal interaction with membranes as recently established for SOD1 mutants.
机译:尽管具有与超氧化物歧化酶1完全不同的生理功能(SOD1),但Profilin 1(PFN1)还携带导致肌营养的侧面硬化(ALS)的突变与SOD1突变体触发的尖刺相似。最近,已经证明C71G-PFN1通过毒性的增益来证明ALS,并且运动神经元变性的加速度在其聚集体的积累之前。这里通过原子分辨率NMR测定WT-PFN1和C71G-PFN1在水性缓冲液中的构象和动力学,并且在膜模拟物DMPC / DHPC双索和DPC胶束中,我们破译:1)C71G的热力稳定化将PFN1转换为共存展开的状态,缺乏任何稳定的第三级/二次结构以及限制的PS-NS骨架运动,因此从ALS导致SOD1突变体难以区分。 2)最引人注目,而WT-PFN1在不改变天然结构的情况下仅用DMPC / DHPC双索尔弱相互作用,C71G-PFN1通过转变高度无序的展开状态而产生强大地交互的异常容量。进入非本机螺旋结构,类似于先前在ALS导致SOD1突变体上观察到的内容。我们的结果意味着C71G-PFN1引发ALS的一种潜在机制可能是与最近为SOD1突变体建立的膜的异常相互作用。

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