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莫洛尼鼠白血病病毒逆转录酶手指结构域与核酸结合的结构和能量特征

Structural and energetic characterization of nucleic acid-binding to the fingers domain of Moloney murine leukemia virus reverse transcriptase.

作者信息

Crowther Robert L, Remeta David P, Minetti Conceição A S A, Das Debanu, Montano Sherwin P, Georgiadis Millie M

机构信息

Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, New Jersey, USA.

出版信息

Proteins. 2004 Oct 1;57(1):15-26. doi: 10.1002/prot.20224.

Abstract

Reverse transcriptase is an essential retroviral enzyme that replicates the single-stranded RNA genome of the retrovirus producing a double-stranded DNA copy, which is subsequently integrated into the host's genome. We have previously reported that processive DNA synthesis of Moloney murine leukemia virus reverse transcriptase (MMLV RT) is severely compromised by substitution of an Ala for the fingers domain residue Arg 116. In order to further investigate the role of Arg 116 in interactions of MMLV RT with nucleic acids, we have determined the crystal structure of the R116A N-terminal fragment and characterized the binding of two self-complementary DNA duplexes [d(CATGCATG)2 and d(CGCGCGCG)2] to both the wild-type and R116A fragments by isothermal titration calorimetry. The resultant thermodynamic profiles extrapolated to 25 degrees C reveal that binding of the wild-type N-terminal fragment to both DNA duplexes is enthalpy-driven and characterized by an unfavorable entropy. Although the temperature dependence of the respective protein-DNA binding enthalpies is markedly different reflecting distinct heat capacity changes, the binding free energies are nearly identical and relatively invariant to temperature (DeltaG approximately -6.0 kcal x mol(-1)). In contrast to the wild-type fragment, the R116A fragment exhibits no measurable affinity for either DNA duplex, yet its crystal structure reveals no significant changes when compared to the wild-type structures. We suggest that hydrogen-bonding interactions involving the fingers domain residue Arg 116 are critical for DNA binding as well as processive DNA synthesis by MMLV RT.

摘要

逆转录酶是一种必需的逆转录病毒酶,它复制逆转录病毒的单链RNA基因组,产生双链DNA拷贝,随后该拷贝整合到宿主基因组中。我们之前报道过,用丙氨酸取代莫洛尼鼠白血病病毒逆转录酶(MMLV RT)指状结构域残基精氨酸116会严重损害其持续DNA合成能力。为了进一步研究精氨酸116在MMLV RT与核酸相互作用中的作用,我们测定了R116A N端片段的晶体结构,并通过等温滴定量热法表征了两种自互补DNA双链体[d(CATGCATG)2和d(CGCGCGCG)2]与野生型和R116A片段的结合情况。外推至25℃得到的热力学曲线表明,野生型N端片段与两种DNA双链体的结合是由焓驱动的,其特征是熵不利。尽管各自蛋白质-DNA结合焓的温度依赖性明显不同,反映出不同的热容变化,但结合自由能几乎相同且相对不受温度影响(ΔG约为-6.0 kcal·mol-1)。与野生型片段不同,R116A片段对任何一种DNA双链体都没有可测量的亲和力,但其晶体结构与野生型结构相比没有明显变化。我们认为,涉及指状结构域残基精氨酸116的氢键相互作用对于MMLV RT的DNA结合以及持续DNA合成至关重要。

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