首页> 外文期刊>Molecular Microbiology >FFH AND FTSY IN A MYCOPLASMA MYCOIDES SIGNAL-RECOGNITION PARTICLE PATHWAY - SRP RNA AND M DOMAIN OF FFH ARE NOT REQUIRED FOR STIMULATION OF GTPASE ACTIVITY IN VITRO
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FFH AND FTSY IN A MYCOPLASMA MYCOIDES SIGNAL-RECOGNITION PARTICLE PATHWAY - SRP RNA AND M DOMAIN OF FFH ARE NOT REQUIRED FOR STIMULATION OF GTPASE ACTIVITY IN VITRO

机译:肌胞浆菌信号识别颗粒通路中的FFH和FTSY-体外刺激GTPase活性不需要SRP RNA和FFH的M结构域

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摘要

Mycoplasma mycoides contains a signal-recognition particle (SRP) composed of an RNA molecule and an SRP54 homologue (Ffh). We have now identified a mycoplasma homologue to the a subunit of the mammalian SRP receptor and Escherichia coli FtsY. The protein (MmFtsY) was expressed in E. coli and purified to homogeneity. MmFtsY has a weak intrinsic GTPase activity but GTP hydrolysis was markedly stimulated when it was combined with mycoplasma Ffh (MmFfh) and SRP RNA. Also, in the absence of SRP RNA GTPase activity was significantly enhanced. Furthermore, GTP hydrolysis was stimulated when MmFtsY was combined with the N-terminal GTPase domain (N+G) of MmFfh. These findings indicate that basic features of the GTPase activation mechanism are independent of the C-terminal M domain of the MmFfh protein. We propose that the activation is mediated to a large extent by contacts between the GTPase domains of the mycoplasma Ffh and FtsY proteins and that the contribution of the M domain and SRP RNA in the activation mechanism is mainly for modifying the conformation of the MmFfh GTPase domain. [References: 35]
机译:支原体支原体包含由RNA分子和SRP54同系物(Ffh)组成的信号识别颗粒(SRP)。现在我们已经确定了与哺乳动物SRP受体和大肠杆菌FtsY的亚基的支原体同源物。蛋白质(MmFtsY)在大肠杆菌中表达并纯化至均一。 MmFtsY具有较弱的固有GTP酶活性,但与支原体Ffh(MmFfh)和SRP RNA结合时,GTP水解受到明显刺激。同样,在不存在SRP的情况下,RNA GTPase活性也显着增强。此外,当MmFtsY与MmFfh的N端GTPase域(N + G)结合时,会刺激GTP水解。这些发现表明,GTPase激活机制的基本特征独立于MmFfh蛋白的C端M结构域。我们建议激活很大程度上是由支原体Ffh和FtsY蛋白的GTPase域之间的接触介导的,并且M结构域和SRP RNA在激活机制中的贡献主要是用于修饰MmFfh GTPase结构域的构象。 。 [参考:35]

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