首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Revealing the Effects of Missense Mutations Causing Snyder-Robinson Syndrome on the Stability and Dimerization of Spermine Synthase
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Revealing the Effects of Missense Mutations Causing Snyder-Robinson Syndrome on the Stability and Dimerization of Spermine Synthase

机译:揭示造成Snyder-Robinson综合征的错义突变对精胺合酶稳定性和二聚化的影响

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摘要

Missense mutations in spermine synthase (SpmSyn) protein have been shown to cause the Snyder-Robinson syndrome (SRS). Depending on the location within the structure of SpmSyn and type of amino acid substitution, different mechanisms resulting in SRS were proposed. Here we focus on naturally occurring amino acid substitutions causing SRS, which are situated away from the active center of SpmSyn and thus are not directly involved in the catalysis. Two of the mutations, M35R and P112L, are reported for the first time in this study. It is demonstrated, both experimentally and computationally, that for such mutations the major effect resulting in dysfunctional SpmSyn is the destabilization of the protein. In vitro experiments indicated either no presence or very little amount of the mutant SpmSyn in patient cells. In silico modeling predicted that all studied mutations in this work destabilize SpmSyn and some of them abolish homo-dimer formation. Since dimerization and structural stability are equally important for the wild type function of SpmSyn, it is proposed that the SRS caused by mutations occurring in the N-domain of SpmSyn is a result of dysfunctional mutant proteins being partially unfolded and degraded by the proteomic machinery of the cell or being unable to form a homo-dimer.
机译:精胺合成酶(SpmSyn)蛋白的错义突变已显示出可导致Snyder-Robinson综合征(SRS)。根据SpmSyn结构内的位置和氨基酸取代的类型,提出了导致SRS的不同机制。在这里,我们集中于引起SRS的天然氨基酸取代,它们位于SpmSyn的活性中心之外,因此不直接参与催化。这项研究中首次报道了两个突变,M35R和P112L。从实验和计算上都证明,对于此类突变,导致SpmSyn功能失调的主要作用是蛋白质的不稳定。体外实验表明患者细胞中不存在突变SpmSyn或突变细胞数量很少。在计算机模拟中预测,这项工作中所有研究的突变都会破坏SpmSyn的稳定性,并且其中一些废除同源二聚体的形成。由于二聚化和结构稳定性对于SpmSyn的野生型功能同等重要,因此建议由SpmSyn的N结构域中发生的突变引起的SRS是功能障碍的突变蛋白部分被蛋白组蛋白的折叠和降解的结果。细胞或无法形成同源二聚体。

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