Department of Chemical Engineering and Applied Chemistry, Banting and Best Department of Medical Research, University of Toronto, Toronto, Ontario M5S 3E5, Canada.
Bioscience Division, Argonne National Laboratory, Argonne, Illinois 60439.
J Biol Chem. 2013 Mar 22;288(12):8101-8110. doi: 10.1074/jbc.M112.431148. Epub 2013 Jan 30.
The human HD domain protein SAMHD1 is implicated in the Aicardi-Goutières autoimmune syndrome and in the restriction of HIV-1 replication in myeloid cells. Recently, this protein has been shown to possess dNTP triphosphatase activity, which is proposed to inhibit HIV-1 replication and the autoimmune response by hydrolyzing cellular dNTPs. Here, we show that the purified full-length human SAMHD1 protein also possesses metal-dependent 3'→5' exonuclease activity against single-stranded DNAs and RNAs in vitro. In double-stranded substrates, this protein preferentially cleaved 3'-overhangs and RNA in blunt-ended DNA/RNA duplexes. Full-length SAMHD1 also exhibited strong DNA and RNA binding to substrates with complex secondary structures. Both nuclease and dNTP triphosphatase activities of SAMHD1 are associated with its HD domain, but the SAM domain is required for maximal activity and nucleic acid binding. The nuclease activity of SAMHD1 could represent an additional mechanism contributing to HIV-1 restriction and suppression of the autoimmune response through direct cleavage of viral and endogenous nucleic acids. In addition, we demonstrated the presence of dGTP triphosphohydrolase and nuclease activities in several microbial HD domain proteins, suggesting that these proteins might contribute to antiviral defense in prokaryotes.
人类 HD 结构域蛋白 SAMHD1 与 Aicardi-Goutières 自身免疫综合征和髓系细胞中 HIV-1 复制的限制有关。最近,该蛋白被证明具有 dNTP 三磷酸酶活性,据推测该活性通过水解细胞内的 dNTP 来抑制 HIV-1 复制和自身免疫反应。在这里,我们表明纯化的全长人 SAMHD1 蛋白在体外还具有针对单链 DNA 和 RNA 的金属依赖性 3'→5'外切核酸酶活性。在双链底物中,该蛋白优先切割 3'-突出端,并在平端 DNA/RNA 双链体中切割 RNA。全长 SAMHD1 还表现出对具有复杂二级结构的底物的强烈 DNA 和 RNA 结合。SAMHD1 的核酸酶和 dNTP 三磷酸酶活性都与它的 HD 结构域有关,但 SAM 结构域是最大活性和核酸结合所必需的。SAMHD1 的核酸酶活性可能代表通过直接切割病毒和内源性核酸来限制 HIV-1 和抑制自身免疫反应的另一种机制。此外,我们证明了几种微生物 HD 结构域蛋白存在 dGTP 三磷酸水解酶和核酸酶活性,这表明这些蛋白可能有助于原核生物的抗病毒防御。