Unusual Role of Tryptophan residues in Structural and Functional properties of Mimi Virus TyrRS (TyrRSapm)

A. Choudhury, R. Banerjee
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Abstract

In crystal structure, the homodimeric (α2) mimi-virus Tyrosyl-tRNA Synthetases (TyrRSapm) showed significant variation in dimer orientation as compared to other solved structures of TyrRSs. Previous report showed that Bacillus stearothermophilus N-terminal TyrRS exists as dimer under native condition and unfolds through a monomeric intermediate. In our previous studies, we have reported that the C-terminal anticodon binding domain of TyrRSapm might have an indirect role in noncanonical dimer formation. To study the implication of the non-canonical dimer interface on the structural and functional organization of TyrRSapm, we replaced all three W residues (both of dimer interface and C-terminal domain) systematically with F residues (using site directed mutagenesis) with four different combinations (W80F/W120F, W278, W80F/W278F, W120F/W278F). We took advantage of Trp (W) fluorescence as the biophysical reporter for probing dimer interface study. The circular dichroism (CD) spectra of Trp mutants are dramatically different from wild-type indicating a huge conformation reorientation due to mutations. Another unusual feature of this enzyme is that it contains 10 cysteine residues per monomer and none of them involved in disulphide bridge formation. Using DTNB reaction as a probe again it was observed that mutants behave differently indicating a major perturbation. Fluorescence anisotropy supported by analytical ultracentrifugation data showed that TyrRSapm and its mutants exist as dimer. The unfolding pattern of N-terminal and C-terminal domain shows significant difference from each other indicating differential melting of domains. Aminoacylation reaction showed that two of the four Trp. mutants retain enzyme activities though different as compared to WT, while the other two mutants lost their activities. Hence it can be concluded that, the Trp residues play a crucial role in the structural as well as functional organization of TyrRSapm that may be reflected as the non canonical orientation of dimer conformation in crystal structure.
色氨酸残基在Mimi病毒TyrRS (TyrRSapm)结构和功能特性中的特殊作用
在晶体结构上,同型二聚体(α2)迷你病毒酪氨酸- trna合成酶(TyrRSapm)的二聚体取向与其他已分解结构的TyrRSs相比有显著差异。既往报道显示嗜热脂肪芽孢杆菌n端TyrRS在天然条件下以二聚体形式存在,并通过单体中间体展开。在我们之前的研究中,我们已经报道了TyrRSapm的c端反密码子结合域可能在非规范二聚体的形成中起间接作用。为了研究非规范二聚体界面对TyrRSapm结构和功能组织的影响,我们系统地用四种不同组合(W80F/W120F、W278、W80F/W278F、W120F/W278F)的F残基(使用定点诱变)取代了所有三个W残基(二聚体界面和c端结构域)。我们利用色氨酸(W)荧光作为探测二聚体界面的生物物理报告。色氨酸突变体的圆二色性(CD)光谱与野生型明显不同,表明突变导致了巨大的构象重定向。这种酶的另一个不寻常的特点是,它每个单体含有10个半胱氨酸残基,没有一个参与二硫桥的形成。再次使用DTNB反应作为探针,观察到突变体表现不同,表明主要扰动。分析性超离心数据支持的荧光各向异性表明,TyrRSapm及其突变体以二聚体形式存在。n端和c端结构域的展开模式存在显著差异,表明结构域的熔融存在差异。氨基酰化反应表明4个Trp中的2个。与WT相比,突变体保留了不同的酶活性,而其他两个突变体则失去了酶活性。由此可以得出结论,Trp残基在TyrRSapm的结构和功能组织中起着至关重要的作用,这可能反映在晶体结构中二聚体构象的非规范取向上。
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