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从牛脑中纯化的β-微管蛋白同型异构体具有不同的相对稳定性。

Beta-tubulin isotypes purified from bovine brain have different relative stabilities.

作者信息

Schwarz P M, Liggins J R, Ludueña R F

机构信息

Department of Biochemistry, The University of Texas Health Science Center at San Antonio, 7703 Floyd Curl Drive, San Antonio, Texas 78284-7760, USA.

出版信息

Biochemistry. 1998 Mar 31;37(13):4687-92. doi: 10.1021/bi972763d.

DOI:10.1021/bi972763d
PMID:9521790
Abstract

The highly conserved nature and tissue specificity of the seven vertebrate beta-tubulin isotypes provide circumstantial evidence that functional differences among isotypes may exist in vivo. Compelling evidence from studies of bovine brain beta-isotypes indicated significant conformational and functional differences in vitro and implied that these differences could be related to in vivo function. A previously uninvestigated parameter of potential importance in assessing functional significance is molecular stability. We examined the relative stability of alphabetaII and alphabetaIII tubulin dimers purified from bovine brain. The use of probes to monitor the exposure of hydrophobic areas and sulfhydryls and the loss of colchicine binding, all of which are known to accompany tubulin's time-dependent loss of function, showed an acceleration of these criteria in alphabetaII relative to alphabetaIII when the isotypes were incubated at 37 degrees C. Studies using differential scanning calorimetry suggested that unfolding of the isotypes at approximately 60 degrees C and decay at 0 degrees C were both highly cooperative. It was also observed that alphabetaIII had a higher melting temperature and a larger population of molecules retaining tertiary structure after incubation at 0 degrees C for 20 h. These studies support the conclusion that alphabetaIII is significantly more stable than alphabetaII and raise the possibility that differences in relative stabilities of tubulin isotypes may be important in regulating the functional properties of microtubules in vivo.

摘要

七种脊椎动物β-微管蛋白同种型的高度保守性和组织特异性提供了间接证据,表明同种型之间在体内可能存在功能差异。来自牛脑β-同种型研究的有力证据表明,在体外存在显著的构象和功能差异,并暗示这些差异可能与体内功能有关。在评估功能重要性时,一个先前未被研究但可能重要的参数是分子稳定性。我们检测了从牛脑纯化的αβII和αβIII微管蛋白二聚体的相对稳定性。使用探针监测疏水区域和巯基的暴露以及秋水仙碱结合的丧失,所有这些都已知与微管蛋白随时间的功能丧失有关,结果显示,当在37℃孵育这些同种型时,相对于αβIII,αβII中这些指标的变化加速。使用差示扫描量热法的研究表明,同种型在约60℃展开以及在0℃衰变都是高度协同的。还观察到,αβIII具有更高的解链温度,并且在0℃孵育20小时后保留三级结构的分子群体更大。这些研究支持了αβIII比αβII显著更稳定的结论,并提出微管蛋白同种型相对稳定性的差异可能在体内调节微管功能特性方面很重要的可能性。

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