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Expression and membrane assembly of a transmembrane region from Neu.

机译:来自Neu的跨膜区的表达和膜组装。

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Transmembrane domains of receptor tyrosine kinases are increasingly seen as key modulatory elements in signaling pathways. The present work addresses problems surrounding expression, isolation, secondary structure recovery, and assembly into membranes, of the relatively large quantities of transmembrane peptides needed to investigate these pathways by NMR spectroscopy. We demonstrate significant correspondence between SDS-PAGE behavior of such peptides and their (2)H NMR spectra in lipid bilayer membranes. A 50-residue peptide, Neu(exp), containing the transmembrane portion of the receptor tyrosine kinase, Neu, was designed for expression in Escherichia coli. The sequence also contained 11-12 amino acids from each side of the transmembrane domain. The common problem of low expressivity of transmembrane peptides was encountered-likely associated with membrane toxicity of the desired gene product. This difficulty was overcome by expressing the peptide as a TrpE fusion protein in a pATH vector to target expression products to inclusion bodies, and subsequently removing the TrpE portion by cyanogen bromide cleavage. Inclusion bodies offered the additional benefits of reduced proteolytic degradation and simplified purification. The presence of a hexa-His tag allowed excellent recovery of the final peptide, while permitting use of denaturing solvents and avoiding the need for HPLC with its attendant adsorption losses. Isolated expressed peptides were found to be pure, but existed as high oligomers rich in beta-structure as evidenced by CD spectroscopy and SDS-PAGE behavior. Dissolution in certain acidic organic solvents led to material with increased alpha-helix content, which behaved in detergent as mixtures of predominantly monomers and dimers-a situation often considered to exist in cell membranes. For purposes of NMR spectroscopy, peptide alanine residues were deuterated in high yield during expression. The same acidic organic solvents used to dissolve and dissociate expressed transmembrane peptides proved invaluable for their assembly into lipid bilayers. Analogous transmembrane peptides from the human receptor tyrosine kinase, ErbB-2, demonstrated related phenomena.
机译:受体酪氨酸激酶的跨膜结构域越来越被视为信号通路中的关键调节元件。本工作解决了通过NMR光谱法研究这些途径所需的相对大量跨膜肽的表达,分离,二级结构恢复和膜组装等问题。我们证明这种肽的SDS-PAGE行为与其在脂质双层膜中的(2)H NMR光谱之间存在显着对应关系。包含受体酪氨酸激酶Neu的跨膜部分的50个残基的肽Neu(exp)被设计用于在大肠杆菌中表达。该序列在跨膜结构域的每一侧还包含11-12个氨基酸。遇到跨膜肽低表达的常见问题,可能与所需基因产物的膜毒性有关。通过在pATH载体中将肽作为TrpE融合蛋白表达以将表达产物靶向包涵体,然后通过溴化氰裂解除去TrpE部分,克服了这一困难。包涵体提供了减少蛋白水解降解和简化纯化的其他好处。 hexa-His标签的存在可以使最终肽得到极好的回收,同时允许使用变性溶剂,并避免了伴随着吸附损失的HPLC需求。发现分离的表达肽是纯净的,但以CD结构和SDS-PAGE行为证明的富含β结构的高寡聚体形式存在。溶解在某些酸性有机溶剂中会导致材料的α-螺旋含量增加,在洗涤剂中的行为主要是单体和二聚体的混合物-这种情况通常被认为存在于细胞膜中。为了NMR光谱学的目的,在表达过程中以高产率使肽丙氨酸残基氘化。事实证明,用于溶解和解离表达的跨膜肽的相同酸性有机溶剂对于组装成脂质双层非常有用。来自人类受体酪氨酸激酶ErbB-2的类似跨膜肽表现出相关现象。

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