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Silencing of Aberrant Secretory Protein Expression by Disease-Associated Mutations

机译:疾病相关突变的异常分泌蛋白表达的沉默

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摘要

Signal recognition particle (SRP) recognizes signal sequences of secretory proteins and targets them to the endoplasmic reticulum membrane for translocation. Many human diseases are connected with defects in signal sequences. The current dogma states that the molecular basis of the disease-associated mutations in the secretory proteins is connected with defects in their transport. Here, we demonstrate for several secretory proteins with disease-associated mutations that the molecular mechanism is different from the dogma. Positively charged or helix-breaking mutations in the signal sequence hydrophobic core prevent synthesis of the aberrant proteins and lead to degradation of their mRNAs. The degree of mRNA depletion depends on the location and severity of the mutation in the signal sequence and correlates with inhibition of SRP interaction. Thus, SRP protects secretory protein mRNAs from degradation. The data demonstrate that if disease-associated mutations obstruct SRP interaction, they lead to silencing of the mutated protein expression. (C) 2019 Elsevier Ltd. All rights reserved.
机译:信号识别粒子(SRP)识别分泌蛋白的信号序列,并将它们靶向内质网膜以易位。许多人类疾病与信号序列中的缺陷连接。目前的教条指出分泌蛋白质中疾病相关突变的分子基于其运输中的缺陷。在这里,我们证明了几种分泌蛋白质,其中分子机制与教条不同。信号序列疏水核中带正电或螺旋断裂突变,防止了异常蛋白的合成并导致其MRNA的降解。 mRNA耗尽程度取决于信号序列中突变的位置和严重程度,并与SRP相互作用的抑制相关。因此,SRP保护分泌蛋白MRNA免于降解。数据表明,如果疾病相关的突变会阻碍SRP相互作用,则导致突变蛋白表达的沉默。 (c)2019 Elsevier Ltd.保留所有权利。

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