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科斯特洛/心脏面部皮肤综合征中的一种新型SOS1突变影响RAS和PI3K途径中的信号传导。

A novel SOS1 mutation in Costello/CFC syndrome affects signaling in both RAS and PI3K pathways.

作者信息

Tumurkhuu Munkhtuya, Saitoh Makiko, Takita Junko, Mizuno Yoko, Mizuguchi Masashi

机构信息

Department of Developmental Medical Sciences, Institute of International Health, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

出版信息

J Recept Signal Transduct Res. 2013 Apr;33(2):124-8. doi: 10.3109/10799893.2013.779279.

Abstract

CONTEXT

Pathological upregulation of the RAS/MAPK pathway causes Costello, Noonan and cardio-facio-cutaneous (CFC) syndrome; however, little is known about PI3K/AKT signal transduction in these syndromes. Previously, we found a novel mutation of the SOS1 gene (T158A) in a patient with Costello/CFC overlapping phenotype.

OBJECTIVE

The aim of this study was to investigate how this mutation affects RAS/MAPK as well as PI3K/AKT pathway signal transduction.

MATERIALS AND METHODS

Wild-type and mutant (T158A) Son of Sevenless 1 (SOS1) were transfected into 293T cells. The levels of phospho- and total ERK1/2, AKT, p70S6K and pS6 were examined under epidermal growth factor (EGF) stimulation.

RESULTS

After EGF stimulation, the ratio of phospho-ERK1/2 to total ERK1/2 was highest at 5 min in mutant (T158A) SOS1 cells, and at 15 min in wild-type SOS1 cells. Phospho-AKT was less abundant at 60 min in mutant than in wild-type SOS1 cells. Phosphorylation at various sites in p70S6K differed between wild-type and mutant cells. Eighteen hours after activation by EGF, the ratio of phospho-ERK1/2 to total ERK1/2 remained significantly higher in mutant than in wild-type SOS1 cells, but that of phospho-AKT to total AKT was unchanged.

DISCUSSION

T158A is located in the histone-like domain, which may have a role in auto-inhibition of RAS exchanger activity of SOS1. T158A may disrupt auto-inhibition and enhance RAS signaling. T158A also affects PI3K/AKT signaling, probably via negative feedback via phospho-p70S6K.

CONCLUSION

The SOS1 T158A mutation altered the phosphorylation of gene products involved in both RAS/MAPK and PI3K/AKT pathways.

摘要

背景

RAS/MAPK通路的病理性上调会导致科斯特洛综合征、努南综合征和心脏-颜面-皮肤综合征(CFC综合征);然而,关于这些综合征中的PI3K/AKT信号转导却知之甚少。此前,我们在一名具有科斯特洛/CFC重叠表型的患者中发现了SOS1基因的一种新突变(T158A)。

目的

本研究旨在探究该突变如何影响RAS/MAPK以及PI3K/AKT通路的信号转导。

材料与方法

将野生型和突变型(T158A)七号less之子1(SOS1)转染至293T细胞中。在表皮生长因子(EGF)刺激下,检测磷酸化和总ERK1/2、AKT、p70S6K和pS6的水平。

结果

EGF刺激后,突变型(T158A)SOS1细胞中磷酸化ERK1/2与总ERK1/2的比值在5分钟时最高,而野生型SOS1细胞在15分钟时最高。突变型SOS1细胞在60分钟时磷酸化AKT的丰度低于野生型。野生型和突变型细胞中p70S6K不同位点的磷酸化情况有所差异。在EGF激活18小时后,突变型SOS1细胞中磷酸化ERK1/2与总ERK1/2的比值仍显著高于野生型,但磷酸化AKT与总AKT的比值未发生变化。

讨论

T158A位于组蛋白样结构域,该结构域可能在SOS1的RAS交换活性的自抑制中发挥作用。T158A可能会破坏自抑制并增强RAS信号传导。T158A还可能通过磷酸化p70S6K的负反馈影响PI3K/AKT信号传导。

结论

SOS1 T158A突变改变了RAS/MAPK和PI3K/AKT通路中相关基因产物的磷酸化。

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