Martins Alexandra, Shuman Stewart
Molecular Biology Program, Sloan-Kettering Institute, 1275 York Avenue, New York, New York 10021, USA.
Biochemistry. 2002 Nov 12;41(45):13403-9. doi: 10.1021/bi0265426.
Baculovirus phosphatase (BVP) and mammalian capping enzyme (Mce1) are members of the RNA triphosphatase branch of the cysteine phosphatase superfamily. Although RNA triphosphatases have a core alpha/beta fold similar to other cysteine phosphatases, there is little conservation of primary structure outside of the cysteine-containing P-loop motif, HCxxxxxR(S/T), that comprises the active site. However, there is extensive primary structure conservation between members of the RNA triphosphatase branch, whether from cellular or viral sources and whether they are bifunctional capping enzymes such as Mce1 or monofunctional RNA phosphatases such as BVP. To evaluate the functional significance of such sequence conservation, we performed a mutational analysis of 14 residues of BVP. We identified three side chains (Trp6, Lys25, and Arg153) as essential for triphosphatase activity in vitro, i.e., W6A, K25A, and R153A were <0.1% as active as wild-type BVP, and were unable to complement a yeast RNA triphosphatase null mutant in vivo. Six other BVP residues (Thr62, Tyr67, Tyr68, Lys82, Glu158, and Arg159) were deemed functionally important, i.e., Ala mutations reduced triphosphatase activity to <20% of wild-type. On the basis of the locations of the equivalent amino acids in the Mce1 crystal structure, we surmise that the essential/important BVP residues ensure proper conformation of the catalytic P-loop (e.g., Arg153 and Tyr68) or other elements of the tertiary structure. Our results highlight a conserved Trp6-Lys25 pi-cation pair essential for BVP function.
杆状病毒磷酸酶(BVP)和哺乳动物加帽酶(Mce1)是半胱氨酸磷酸酶超家族RNA三磷酸酶分支的成员。尽管RNA三磷酸酶具有与其他半胱氨酸磷酸酶相似的核心α/β折叠结构,但在包含活性位点的含半胱氨酸的P环基序HCxxxxxR(S/T)之外,一级结构的保守性很低。然而,RNA三磷酸酶分支的成员之间存在广泛的一级结构保守性,无论其来源是细胞还是病毒,也无论它们是像Mce1这样的双功能加帽酶还是像BVP这样的单功能RNA磷酸酶。为了评估这种序列保守性的功能意义,我们对BVP的14个残基进行了突变分析。我们确定了三个侧链(Trp6、Lys25和Arg153)对体外三磷酸酶活性至关重要,即W6A、K25A和R153A的活性仅为野生型BVP的<0.1%,并且在体内无法互补酵母RNA三磷酸酶缺失突变体。另外六个BVP残基(Thr62、Tyr67、Tyr68、Lys82、Glu158和Arg159)被认为在功能上很重要, 即丙氨酸突变使三磷酸酶活性降低至野生型的<20%。根据Mce1晶体结构中对应氨基酸的位置,我们推测BVP的必需/重要残基确保了催化P环(例如Arg153和Tyr68)或三级结构的其他元件的正确构象。我们的结果突出了一个对BVP功能至关重要的保守Trp6-Lys25 π-阳离子对。