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通过压力和尿素变性测定,促凋亡蛋白Smac/DIABLO二聚体具有最高的稳定性。

The proapoptotic protein Smac/DIABLO dimer has the highest stability as measured by pressure and urea denaturation.

作者信息

Gonçalves Rafael B, Sanches Daniel, Souza Theo L F, Silva Jerson L, Oliveira Andréa C

机构信息

Programa de Biologia Estrutural, Instituto de Bioquímica Médica, Universidade Federal do Rio de Janeiro, 21941-590 Rio de Janeiro, RJ, Brazil.

出版信息

Biochemistry. 2008 Mar 25;47(12):3832-41. doi: 10.1021/bi702248n. Epub 2008 Feb 29.

Abstract

Apoptosis is an essential mechanism of cell death required for normal development and homeostasis of all multicellular organisms. Smac/DIABLO is a dimeric protein important in the control of apoptosis by removing the inhibitory activity of IAPs (inhibitor of apoptosis proteins). In vitro studies reveal that dimerization is required for its function. Here we investigate the structural and thermodynamic features of folding and dimerization of Smac/DIABLO. To disturb the folded, dimeric structure, we used high hydrostatic pressure, low and high temperatures, and chemical denaturing agents. Conformational changes were monitored using spectroscopic techniques such as fluorescence and circular dichroism (CD) as well as gel filtration chromatography. Our data show that Smac/DIABLO is very stable under pressures up to 3.1 kbar, even at subzero temperatures. A complete denaturation/dissociation process is obtained when we use high concentrations of urea, which affect its secondary structure as assessed by CD. The association of pressure and subdenaturing urea concentrations also results in complete denaturation/dissociation of the protein. Under these conditions, unfolding of the protein shows concentration dependence that is in accordance with the dimer-monomer dissociation equilibrium, confirming Smac/DIABLO dissociation. These results suggest that most of the treatments lead to a reversible disruption of the dimeric structure with a dissociation constant ( K d) of 34 x 10 (-21) M (34 zM). This tight dimer is biologically relevant, considering that monomeric mutants bind IAP with low affinity. The extremely high stability of the dimeric form of Smac/DIABLO also implies that once expressed in the cell the protein has a low probability of dissociation and, consequently, loss of function. In addition, the stability in the zeptomolar range is the highest so far measured for a dimeric protein. It also indicates that under most circumstances Smac/DIABLO does not exist as a monomer in the cell and suggests that the dimer-to-monomer equilibrium does not play a regulatory role in the Smac/DIABLO-IAP interaction.

摘要

细胞凋亡是所有多细胞生物体正常发育和体内平衡所必需的细胞死亡基本机制。Smac/DIABLO是一种二聚体蛋白,通过消除凋亡抑制蛋白(IAPs)的抑制活性,在细胞凋亡控制中起重要作用。体外研究表明,其二聚化是其功能所必需的。在此,我们研究了Smac/DIABLO折叠和二聚化的结构及热力学特征。为破坏其折叠的二聚体结构,我们使用了高静水压力、低温和高温以及化学变性剂。使用荧光和圆二色性(CD)等光谱技术以及凝胶过滤色谱法监测构象变化。我们的数据表明,即使在零下温度下,Smac/DIABLO在高达3.1千巴的压力下也非常稳定。当我们使用高浓度尿素时,会导致其完全变性/解离,通过CD评估可知这会影响其二级结构。压力与亚变性尿素浓度的联合作用也会导致该蛋白完全变性/解离。在这些条件下,蛋白的去折叠显示出浓度依赖性,这与二聚体 - 单体解离平衡一致,证实了Smac/DIABLO的解离。这些结果表明,大多数处理导致二聚体结构的可逆破坏,解离常数(Kd)为34×10(-21)M(34 zM)。考虑到单体突变体与IAP的结合亲和力较低,这种紧密的二聚体具有生物学相关性。Smac/DIABLO二聚体形式的极高稳定性还意味着,一旦在细胞中表达,该蛋白解离的可能性较低,因此功能丧失的可能性也较低。此外,zeptomolar范围内的稳定性是迄今为止测量的二聚体蛋白中最高的。这也表明在大多数情况下,Smac/DIABLO在细胞中不以单体形式存在,并且表明二聚体 - 单体平衡在Smac/DIABLO - IAP相互作用中不发挥调节作用。

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