Zhang Zhemin, Hao Zhitai, Wang Zhong, Li Qing, Xie Wei
Key Laboratory of Gene Engineering of the Ministry of Education, State Key Laboratory for Biocontrol, School of Life Sciences, The Sun Yat-Sen University, Guangzhou 510275, People's Republic of China.
Centre for Cellular and Structural Biology, The Sun Yat-Sen University, 132 East Circle Road, University City, Guangzhou 510006, People's Republic of China.
Acta Crystallogr D Biol Crystallogr. 2014 Sep;70(Pt 9):2286-94. doi: 10.1107/S139900471401356X. Epub 2014 Aug 29.
The 6-aminopurine ring of adenosine (A) can be deaminated to form the 6-oxopurine of inosine (I). Endonuclease Vs (EndoVs) are inosine-specific nucleases that cleave at the second phosphodiester bond 3' to inosine. EndoV proteins are highly conserved in all domains of life, but the bacterial and human enzymes seem to display distinct substrate preferences. While the bacterial enzymes exhibit high cleavage efficiency on various nucleic acid substrates, human EndoV (hEndoV) is most active towards ssRNA but is much less active towards other substrates. However, the structural basis of substrate recognition by hEndoV is not well understood. In this study, the 2.3 Å resolution crystal structure of hEndoV was determined and its unusual RNA-cleaving properties were investigated. The enzyme preserves the general `RNase H-like' structure, especially in the wedge motif, the metal-binding site and the hypoxanthine-binding pocket. hEndoV also features several extra insertions and a characteristic four-cysteine motif, in which Cys227 and Cys228, two cysteines that are highly conserved in higher eukaryotes, play important roles in catalysis. The structure presented here helps in understanding the substrate preference of hEndoV catalysis.
腺苷(A)的6-氨基嘌呤环可被脱氨形成肌苷(I)的6-氧代嘌呤。核酸内切酶V(EndoV)是肌苷特异性核酸酶,可在肌苷3'端的第二个磷酸二酯键处切割。EndoV蛋白在生命的所有领域中都高度保守,但细菌和人类的酶似乎表现出不同的底物偏好。虽然细菌酶对各种核酸底物具有较高的切割效率,但人类EndoV(hEndoV)对单链RNA最具活性,而对其他底物的活性则要低得多。然而,hEndoV识别底物的结构基础尚不清楚。在本研究中,确定了hEndoV的2.3 Å分辨率晶体结构,并研究了其异常的RNA切割特性。该酶保留了一般的“类核糖核酸酶H”结构,特别是在楔形基序、金属结合位点和次黄嘌呤结合口袋中。hEndoV还具有几个额外的插入片段和一个特征性的四半胱氨酸基序,其中在高等真核生物中高度保守的两个半胱氨酸Cys227和Cys228在催化中起重要作用。本文给出的结构有助于理解hEndoV催化的底物偏好。