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D臂和反密码子臂在真细菌和真核生物核糖核酸酶P酶识别tRNA中的作用。

Role of the D arm and the anticodon arm in tRNA recognition by eubacterial and eukaryotic RNase P enzymes.

作者信息

Hardt W D, Schlegl J, Erdmann V A, Hartmann R K

机构信息

Institut für Biochemie, Freie Universität Berlin, FRG.

出版信息

Biochemistry. 1993 Dec 7;32(48):13046-53. doi: 10.1021/bi00211a014.

Abstract

Truncated precursor tRNAs lacking the D arm or anticodon arm were studied in vitro as substrates for RNase P enzymes from Escherichia coli, Thermus thermophilus (eubacteria), and HeLa. Deletion of the D arm still allowed 5'-processing by E. coli RNase P, but strongly impaired maturation by T. thermophilus and HeLa extracts. In contrast, deletion of the anticodon arm had no influence on processing by RNase P activities from all three organisms. Inhibition kinetics and gel retardation studies showed that deletion of the D arm leads to low-affinity binding to E. coli RNase P RNA (M1 RNA). However, the E. coli enzyme appears to form sufficiently strong contacts in the region of the T arm, acceptor stem, and CCA terminus to still allow productive enzyme-substrate interaction even in the absence of the structural contribution provided by the D arm. Pb(2+)-induced hydrolysis of a tRNAGly from T. thermophilus gave identical cleavage patterns in the D arm and anticodon loop in the absence and presence of E. coli M1 RNA, whereas lead hydrolysis was strongly reduced at the CUCCAA 3'-terminus due to the presence of the enzyme.

摘要

对缺乏D臂或反密码子臂的截短前体tRNA进行了体外研究,将其作为来自大肠杆菌、嗜热栖热菌(真细菌)和人宫颈癌HeLa细胞的RNase P酶的底物。删除D臂仍能使大肠杆菌RNase P进行5'-加工,但严重损害了嗜热栖热菌和HeLa提取物的成熟作用。相反,删除反密码子臂对来自所有三种生物体的RNase P活性的加工没有影响。抑制动力学和凝胶阻滞研究表明,删除D臂会导致与大肠杆菌RNase P RNA(M1 RNA)的低亲和力结合。然而,即使在没有D臂提供的结构贡献的情况下,大肠杆菌酶似乎在T臂、受体茎和CCA末端区域形成了足够强的接触,仍能实现有效的酶-底物相互作用。在不存在和存在大肠杆菌M1 RNA的情况下,Pb(2+)诱导的嗜热栖热菌tRNAGly水解在D臂和反密码子环中产生相同的切割模式,而由于酶的存在,在CUCCAA 3'-末端的铅水解作用大大降低。

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