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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Modulation of Transmembrane Domain Interactions in Neu Receptor Tyrosine Kinase by Membrane Fluidity and Cholesterol
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Modulation of Transmembrane Domain Interactions in Neu Receptor Tyrosine Kinase by Membrane Fluidity and Cholesterol

机译:膜流动性和胆固醇的Neu受体酪氨酸激酶跨膜结构域相互作用的调节

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摘要

The activation mechanism of the ErbB family of receptors is of considerable medical interest as they are linked to a number of human cancers, including an aggressive form of breast cancer. In the rat analogue of the human ErbB2 receptor, referred to as Neu, a point mutation in the transmembrane domain (V664E) has been shown to trigger oncogenic transformation. While the structural impact of this mutation has been widely studied in the past to yield models for the active state of the Neu receptor, little is known about the impact of cholesterol on its structure. Given previous reports of the influence of cholesterol on other receptor tyrosine kinases (RTKs), as well as the modulation of lipid composition in cancer cells, we wished to investigate how cholesterol content impacts the structure of the Neu transmembrane domain. We utilized high-resolution magic angle spinning solid-state NMR to measure C-13-C-13 coupling of selectively labelled probe residues in the Neu transmembrane domain in lipid bilayers containing cholesterol. We observe inter-helical coupling between residues that support helix-helix interactions on both dimerization motifs reported in the literature (A(661)-XXX-G(665) and I-659-XXX-V-663). We further explore how changes in cholesterol concentration alter transmembrane domain interactions and the properties and mechanics of the bilayer. We interpret our results in light of previous studies relating RTK activity to cholesterol enrichment and/or depletion, and propose a novel model to explain our data that includes the recognition and binding of cholesterol by the Neu transmembrane domain through a putative cholesterol-recognition/interaction amino acid consensus sequence.
机译:ERBB系列受体的激活机制具有相当大的医学利益,因为它们与许多人类癌症相关,包括侵略性的乳腺癌。在人ERBB2受体的大鼠类似物中,称为NEU,已经显示出跨膜结构域(V664e)中的点突变来引发致癌转化。虽然过去已经广泛研究了这种突变的结构影响,以产生Neu受体的活性状态的模型,关于胆固醇对其结构的影响很少。鉴于先前关于胆固醇对其他受体酪氨酸激酶(RTK)的影响的报道,以及癌细胞中脂质组合物的调节,我们希望研究胆固醇含量如何影响Neu跨膜结构域的结构。我们利用高分辨率的魔法角旋转固态NMR来测量含有胆固醇的脂质双层中Neu跨膜结构域中的选择性标记的探针残基的C-13-C-13偶联。我们观察到在文献中报道的两种二聚化基序的残基之间的间螺旋耦合(A(661)-XXX-G(665)和I-659-XXX-V-663)上的两倍化螺旋相互作用。我们进一步探讨了胆固醇浓度变化改变跨膜结构域相互作用以及双层的性质和力学。我们根据先前的研究将结果解释了与胆固醇富集和/或耗尽相关的先前研究,并提出了一种新颖的模型来解释我们通过推定的胆固醇识别/相互作用来解释包括Neu跨膜结构域的胆固醇的识别和结合的数据氨基酸共有序列。

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