Julia Moorefield, Yagmur Konuk, Jordan O. Norman, Jan Abendroth, Thomas E. Edwards, Donald D. Lorimer, Stephen J. Mayclin, Bart L. Staker, Justin K. Craig, Kayleigh F. Barett, Lynn K. Barrett, Wesley C. Van Voorhis, Peter J. Myler, Krystle J. McLaughlin
{"title":"费城嗜肺军团菌一个Ⅰ族无机焦磷酸酶的鉴定1。","authors":"Julia Moorefield, Yagmur Konuk, Jordan O. Norman, Jan Abendroth, Thomas E. Edwards, Donald D. Lorimer, Stephen J. Mayclin, Bart L. Staker, Justin K. Craig, Kayleigh F. Barett, Lynn K. Barrett, Wesley C. Van Voorhis, Peter J. Myler, Krystle J. McLaughlin","doi":"10.1107/S2053230X23008002","DOIUrl":null,"url":null,"abstract":"<p>Inorganic pyrophosphate (PP<sub>i</sub>) is generated as an intermediate or byproduct of many fundamental metabolic pathways, including DNA/RNA synthesis. The intracellular concentration of PP<sub>i</sub> must be regulated as buildup can inhibit many critical cellular processes. Inorganic pyrophosphatases (PPases) hydrolyze PP<sub>i</sub> into two orthophosphates (P<sub>i</sub>), preventing the toxic accumulation of the PP<sub>i</sub> byproduct in cells and making P<sub>i</sub> available for use in biosynthetic pathways. Here, the crystal structure of a family I inorganic pyrophosphatase from <i>Legionella pneumophila</i> is reported at 2.0 Å resolution. <i>L. pneumophila</i> PPase (LpPPase) adopts a homohexameric assembly and shares the oligonucleotide/oligosaccharide-binding (OB) β-barrel core fold common to many other bacterial family I PPases. LpPPase demonstrated hydrolytic activity against a general substrate, with Mg<sup>2+</sup> being the preferred metal cofactor for catalysis. Legionnaires' disease is a severe respiratory infection caused primarily by <i>L. pneumophila</i>, and thus increased characterization of the <i>L. pneumophila</i> proteome is of interest.</p>","PeriodicalId":7029,"journal":{"name":"Acta crystallographica. Section F, Structural biology communications","volume":"79 10","pages":"257-266"},"PeriodicalIF":1.1000,"publicationDate":"2023-09-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1107/S2053230X23008002","citationCount":"0","resultStr":"{\"title\":\"Characterization of a family I inorganic pyrophosphatase from Legionella pneumophila Philadelphia 1\",\"authors\":\"Julia Moorefield, Yagmur Konuk, Jordan O. Norman, Jan Abendroth, Thomas E. Edwards, Donald D. Lorimer, Stephen J. Mayclin, Bart L. Staker, Justin K. Craig, Kayleigh F. Barett, Lynn K. Barrett, Wesley C. Van Voorhis, Peter J. Myler, Krystle J. McLaughlin\",\"doi\":\"10.1107/S2053230X23008002\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Inorganic pyrophosphate (PP<sub>i</sub>) is generated as an intermediate or byproduct of many fundamental metabolic pathways, including DNA/RNA synthesis. The intracellular concentration of PP<sub>i</sub> must be regulated as buildup can inhibit many critical cellular processes. Inorganic pyrophosphatases (PPases) hydrolyze PP<sub>i</sub> into two orthophosphates (P<sub>i</sub>), preventing the toxic accumulation of the PP<sub>i</sub> byproduct in cells and making P<sub>i</sub> available for use in biosynthetic pathways. Here, the crystal structure of a family I inorganic pyrophosphatase from <i>Legionella pneumophila</i> is reported at 2.0 Å resolution. <i>L. pneumophila</i> PPase (LpPPase) adopts a homohexameric assembly and shares the oligonucleotide/oligosaccharide-binding (OB) β-barrel core fold common to many other bacterial family I PPases. LpPPase demonstrated hydrolytic activity against a general substrate, with Mg<sup>2+</sup> being the preferred metal cofactor for catalysis. 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Characterization of a family I inorganic pyrophosphatase from Legionella pneumophila Philadelphia 1
Inorganic pyrophosphate (PPi) is generated as an intermediate or byproduct of many fundamental metabolic pathways, including DNA/RNA synthesis. The intracellular concentration of PPi must be regulated as buildup can inhibit many critical cellular processes. Inorganic pyrophosphatases (PPases) hydrolyze PPi into two orthophosphates (Pi), preventing the toxic accumulation of the PPi byproduct in cells and making Pi available for use in biosynthetic pathways. Here, the crystal structure of a family I inorganic pyrophosphatase from Legionella pneumophila is reported at 2.0 Å resolution. L. pneumophila PPase (LpPPase) adopts a homohexameric assembly and shares the oligonucleotide/oligosaccharide-binding (OB) β-barrel core fold common to many other bacterial family I PPases. LpPPase demonstrated hydrolytic activity against a general substrate, with Mg2+ being the preferred metal cofactor for catalysis. Legionnaires' disease is a severe respiratory infection caused primarily by L. pneumophila, and thus increased characterization of the L. pneumophila proteome is of interest.
期刊介绍:
Acta Crystallographica Section F is a rapid structural biology communications journal.
Articles on any aspect of structural biology, including structures determined using high-throughput methods or from iterative studies such as those used in the pharmaceutical industry, are welcomed by the journal.
The journal offers the option of open access, and all communications benefit from unlimited free use of colour illustrations and no page charges. Authors are encouraged to submit multimedia content for publication with their articles.
Acta Cryst. F has a dedicated online tool called publBio that is designed to make the preparation and submission of articles easier for authors.