首页> 美国卫生研究院文献>The EMBO Journal >The methionine-rich domain of the 54 kd protein subunit of the signal recognition particle contains an RNA binding site and can be crosslinked to a signal sequence.
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The methionine-rich domain of the 54 kd protein subunit of the signal recognition particle contains an RNA binding site and can be crosslinked to a signal sequence.

机译:信号识别颗粒的54 kd蛋白亚基的富含甲硫氨酸的结构域包含一个RNA结合位点可以与信号序列交联。

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摘要

The 54 kd protein subunit of the signal recognition particle (SRP54) has been shown to bind signal sequences by UV crosslinking. Primary structure analysis and phylogenetic comparisons have suggested that SRP54 is composed of two domains: an amino-terminal domain that contains a putative GTP-binding site (G-domain) and a carboxy-terminal domain that contains a high abundance of methionine residues (M-domain). Partial proteolysis of SRP revealed that the two proposed domains of SRP54 indeed represent structurally discrete entities. Upon proteolysis the intact G-domain was released from SRP, whereas the M-domain remained attached to the core of the particle. Reconstitution experiments demonstrated that the isolated M-domain associates with 7SL RNA in the presence of SRP19. In addition, we observed a specific binding of the M-domain directly to 4.5S RNA of Escherichia coli, which contains a structural motif also present in 7SL RNA. This shows that the M-domain contains an RNA binding site, and suggests that SRP54 may be linked to the rest of SRP through this domain by a direct interaction with 7SL RNA. Using UV crosslinking, we found that in an in vitro translation system the preprolactin signal sequence contacts SRP through the M-domain of SRP54. These results imply that the M-domain contains the signal sequence binding site of SRP54, although we cannot exclude that the G-domain may also be in proximity to bound signal sequences.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:信号识别颗粒(SRP54)的54 kd蛋白亚基已显示通过UV交联结合信号序列。一级结构分析和系统发育比较表明,SRP54由两个域组成:一个氨基端域(包含一个假定的GTP结合位点(G域))和一个羧基端域(包含一个高丰度的蛋氨酸残基(M -域)。 SRP的部分蛋白水解表明,SRP54的两个提议的域确实代表结构上离散的实体。进行蛋白水解后,完整的G结构域从SRP中释放出来,而M结构域仍附着在颗粒的核心上。重建实验表明,在SRP19存在下,分离的M结构域与7SL RNA缔合。此外,我们观察到M结构域直接结合到大肠杆菌4.5S RNA的特异性结合,该大肠杆菌包含在7SL RNA中也存在的结构基序。这表明M结构域包含一个RNA结合位点,并暗示SRP54可以通过与7SL RNA的直接相互作用通过该结构域与SRP的其余部分连接。使用UV交联,我们发现在体外翻译系统中,催乳素原信号序列通过SRP54的M结构域与SRP接触。这些结果表明,M结构域包含SRP54的信号序列结合位点,尽管我们不能排除G结构域也可能位于结合信号序列附近。(摘要截断为250个字)

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