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亮氨酸拉链结构域的折叠动力学

Kinetics of folding of leucine zipper domains.

作者信息

Wendt H, Berger C, Baici A, Thomas R M, Bosshard H R

机构信息

Biochemisches Institut, Universität Zürich, Switzerland.

出版信息

Biochemistry. 1995 Mar 28;34(12):4097-107. doi: 10.1021/bi00012a028.

Abstract

Leucine zippers are short coiled coils frequently found in transcription factors where they serve as dimerization domains. The basic features contributing to the thermodynamic stability of leucine zippers are well understood, but very little is known about their folding kinetics. Leucine zippers have a simple and well defined structure and are, therefore, excellent models for the study of the concerted folding and assembly of polypeptide chains. Here we report on a fluorescence stopped flow investigation of the kinetics of association and dissociation of a series of model leucine zippers based on the common sequence Xzero-EYEALEKKLAAX1EAKX2QALEKKLEALEHG-amide (Xzero = N alpha-acetyl, N alpha-fluorescein-GGG, or N alpha-dimethylaminocoumarin-GGG; Xl = Leu or Ala; X2 = Leu, Ala, or Asn). When Xzero is fluorescein, self-quenching between adjacent fluorophores leads to a decrease in fluorescence emission intensity whereas unfolding of the coiled coil leads to an increase. In a heteromeric coiled coil containing both fluorophores, resonance energy transfer between the donor coumarin and the acceptor fluorescein is observed, and the mixing of labeled and nonlabeled peptides allows the measurement of the rates of strand exchange between leucine zippers. Exchange rates do not depend on peptide concentration, indicating that strand exchange is governed by the rate of dissociation of the coiled coil. Strand exchange between leucine zippers with X1 and X2 = Leu occurs with a half-time of approximately 30 min. A single Leu/Ala substitution at X1 or X2 decreases the half-time to approximately 1 s. Folding was also studied in a relaxation experiment in which a preexisting equilibrium between monomeric chains and coiled coils was rapidly disturbed by dilution with buffer, and the relaxation to the new equilibrium was followed by the increase in fluorescence. In peptides with X1, X2 = Ala or X1 = Ala, X2 = Asn the folding process can be described by a simple two-state monomer<-->dimer equilibrium with k(on) approximately 4 x 10(6) M-1 s-1 and k(off) approximately 10 s-1. Kd = k(off)/k(on) approximately 2.5 microM is in good agreement with the value of Kd obtained from equilibrium measurements. The peptides with a single Ala at X1 or X2 exhibit biphasic folding kinetics. One phase is concentration dependent and the other apparently concentration independent. This behavior can be interpreted as a monomer<-->dimer equilibrium coupled to an equilibrium between different conformational isomers. Leu to Ala and Leu to Asn substitutions in the hydrophobic core alter the folding kinetics in a position-dependent manner.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

亮氨酸拉链是短的卷曲螺旋,常见于转录因子中,作为二聚化结构域发挥作用。有助于亮氨酸拉链热力学稳定性的基本特征已得到充分理解,但对其折叠动力学却知之甚少。亮氨酸拉链具有简单且明确的结构,因此是研究多肽链协同折叠和组装的优秀模型。在此,我们报告了一系列基于常见序列Xzero - EYEALEKKLAAX1EAKX2QALEKKLEALEHG - 酰胺(Xzero = Nα - 乙酰基、Nα - 荧光素 - GGG或Nα - 二甲基氨基香豆素 - GGG;X1 = 亮氨酸或丙氨酸;X2 = 亮氨酸、丙氨酸或天冬酰胺)的模型亮氨酸拉链缔合和解离动力学的荧光停流研究。当Xzero为荧光素时,相邻荧光团之间的自猝灭导致荧光发射强度降低,而卷曲螺旋的解折叠则导致强度增加。在同时含有两种荧光团的异源卷曲螺旋中,观察到供体香豆素和受体荧光素之间的共振能量转移,标记肽和未标记肽的混合使得能够测量亮氨酸拉链之间链交换的速率。交换速率不依赖于肽浓度,表明链交换受卷曲螺旋解离速率的控制。X1和X2 = 亮氨酸的亮氨酸拉链之间的链交换半衰期约为30分钟。在X1或X2处单个亮氨酸/丙氨酸取代将半衰期缩短至约1秒。还在弛豫实验中研究了折叠过程,其中通过用缓冲液稀释快速扰乱单体链和卷曲螺旋之间预先存在的平衡,随后通过荧光增加跟踪向新平衡的弛豫。在X1、X2 = 丙氨酸或X1 = 丙氨酸、X2 = 天冬酰胺的肽中,折叠过程可以用简单的两态单体⇌二聚体平衡来描述,k(on)约为4×10⁶ M⁻¹ s⁻¹,k(off)约为10 s⁻¹。Kd = k(off)/k(on)约为2.5 μM,与通过平衡测量获得的Kd值良好吻合。在X1或X2处有单个丙氨酸的肽表现出双相折叠动力学。一个相依赖于浓度,另一个明显与浓度无关。这种行为可以解释为单体⇌二聚体平衡与不同构象异构体之间的平衡相耦合。疏水核心中亮氨酸到丙氨酸和亮氨酸到天冬酰胺的取代以位置依赖的方式改变折叠动力学。(摘要截短于400字)

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