Kremneva Elena, Boussouf Sabrina, Nikolaeva Olga, Maytum Robin, Geeves Michael A, Levitsky Dmitrii I
A. N. Bach Institute of Biochemistry, Russian Academy of Sciences, Moscow 119071, Russia.
Biophys J. 2004 Dec;87(6):3922-33. doi: 10.1529/biophysj.104.048793. Epub 2004 Sep 28.
Differential scanning calorimetry was used to investigate the thermal unfolding of native alpha-tropomyosin (Tm), wild-type alpha-Tm expressed in Escherichia coli and the wild-type alpha-Tm carrying either of two missense mutations associated with familial hypertrophic cardiomyopathy, D175N or E180G. Recombinant alpha-Tm was expressed with an N-terminal Ala-Ser extension to substitute for the essential N-terminal acetylation of the native Tm. Native and Ala-Ser-Tm were indistinguishable in our assays. In the absence of F-actin, the thermal unfolding of Tm was reversible and the heat sorption curve of Tm with Cys-190 reduced was decomposed into two separate calorimetric domains with maxima at approximately 42 and 51 degrees C. In the presence of phalloidin-stabilized F-actin, a new cooperative transition appears at 46-47 degrees C and completely disappears after the irreversible denaturation of F-actin. A good correlation was found to exist between the maximum of this peak and the temperature of half-maximal dissociation of the F-actin/Tm complex as determined by light scattering experiments. We conclude that Tm thermal denaturation only occurs upon its dissociation from F-actin. In the presence of F-actin, D175N alpha-Tm shows a melting profile and temperature dependence of dissociation from F-actin similar to those for wild-type alpha-Tm. The actin-induced stabilization of E180G alpha-Tm is significantly less than for wild-type alpha-Tm and D175N alpha-Tm, and this property could contribute to the more severe myopathy phenotype reported for this mutation.
采用差示扫描量热法研究天然α-原肌球蛋白(Tm)、在大肠杆菌中表达的野生型α-Tm以及携带与家族性肥厚型心肌病相关的两个错义突变(D175N或E180G)之一的野生型α-Tm的热解折叠过程。重组α-Tm通过N端丙氨酸-丝氨酸延伸表达,以替代天然Tm必需的N端乙酰化。在我们的实验中,天然Tm和丙氨酸-丝氨酸-Tm没有区别。在没有F-肌动蛋白的情况下,Tm的热解折叠是可逆的,并且Cys-190还原的Tm的热吸附曲线分解为两个单独的量热域,最大值分别约为42和51℃。在鬼笔环肽稳定的F-肌动蛋白存在下,在46-47℃出现一个新的协同转变,并且在F-肌动蛋白不可逆变性后完全消失。通过光散射实验确定,该峰的最大值与F-肌动蛋白/Tm复合物半最大解离温度之间存在良好的相关性。我们得出结论,Tm的热变性仅在其与F-肌动蛋白解离时发生。在F-肌动蛋白存在下,D175Nα-Tm显示出与野生型α-Tm相似的解链曲线和从F-肌动蛋白解离的温度依赖性。E180Gα-Tm的肌动蛋白诱导稳定性明显低于野生型α-Tm和D175Nα-Tm,并且这种特性可能导致该突变报道的更严重的肌病表型。