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  1. Article ; Online: Mechanisms of bioleaching: iron and sulfur oxidation by acidophilic microorganisms.

    Jones, Sarah / Santini, Joanne M

    Essays in biochemistry

    2023  Volume 67, Issue 4, Page(s) 685–699

    Abstract: Bioleaching offers a low-input method of extracting valuable metals from sulfide minerals, which works by exploiting the sulfur and iron metabolisms of microorganisms to break down the ore. Bioleaching microbes generate energy by oxidising iron and/or ... ...

    Abstract Bioleaching offers a low-input method of extracting valuable metals from sulfide minerals, which works by exploiting the sulfur and iron metabolisms of microorganisms to break down the ore. Bioleaching microbes generate energy by oxidising iron and/or sulfur, consequently generating oxidants that attack sulfide mineral surfaces, releasing target metals. As sulfuric acid is generated during the process, bioleaching organisms are typically acidophiles, and indeed the technique is based on natural processes that occur at acid mine drainage sites. While the overall concept of bioleaching appears straightforward, a series of enzymes is required to mediate the complex sulfur oxidation process. This review explores the mechanisms underlying bioleaching, summarising current knowledge on the enzymes driving microbial sulfur and iron oxidation in acidophiles. Up-to-date models are provided of the two mineral-defined pathways of sulfide mineral bioleaching: the thiosulfate and the polysulfide pathway.
    MeSH term(s) Iron/metabolism ; Metals/metabolism ; Minerals ; Sulfur/metabolism ; Sulfides/metabolism
    Chemical Substances Iron (E1UOL152H7) ; Metals ; Minerals ; Sulfur (70FD1KFU70) ; Sulfides
    Language English
    Publishing date 2023-07-14
    Publishing country England
    Document type Review ; Journal Article ; Research Support, Non-U.S. Gov't
    ISSN 1744-1358 ; 0071-1365
    ISSN (online) 1744-1358
    ISSN 0071-1365
    DOI 10.1042/EBC20220257
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article ; Online: The structure of the complex between the arsenite oxidase from Pseudorhizobium banfieldiae sp. strain NT-26 and its native electron acceptor cytochrome c

    Poddar, Nilakhi / Santini, Joanne M / Maher, Megan J

    Acta crystallographica. Section D, Structural biology

    2023  Volume 79, Issue Pt 4, Page(s) 345–352

    Abstract: The arsenite oxidase (AioAB) from Pseudorhizobium banfieldiae sp. strain NT-26 catalyzes the oxidation of arsenite to arsenate and transfers electrons to its cognate electron acceptor cytochrome ... ...

    Abstract The arsenite oxidase (AioAB) from Pseudorhizobium banfieldiae sp. strain NT-26 catalyzes the oxidation of arsenite to arsenate and transfers electrons to its cognate electron acceptor cytochrome c
    MeSH term(s) Cytochromes c/metabolism ; Arsenites/metabolism ; Electrons ; Oxidation-Reduction
    Chemical Substances arsenite oxidase (EC 1.16.-) ; cytochrome C-552 (9048-78-6) ; Cytochromes c (9007-43-6) ; arsenite (N5509X556J) ; Arsenites
    Language English
    Publishing date 2023-03-30
    Publishing country United States
    Document type Journal Article
    ZDB-ID 2968623-4
    ISSN 2059-7983 ; 0907-4449
    ISSN (online) 2059-7983
    ISSN 0907-4449
    DOI 10.1107/S2059798323002103
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: Anthroponosis and risk management: a time for ethical vaccination of wildlife?

    Edwards, Sarah Jl / Chatterjee, Helen J / Santini, Joanne M

    The Lancet. Microbe

    2021  Volume 2, Issue 6, Page(s) e230–e231

    MeSH term(s) Animals ; Animals, Wild ; Vaccination/veterinary
    Language English
    Publishing date 2021-04-01
    Publishing country England
    Document type Journal Article
    ISSN 2666-5247
    ISSN (online) 2666-5247
    DOI 10.1016/S2666-5247(21)00081-1
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  4. Article ; Online: Host range of SARS-CoV-2 and implications for public health.

    Santini, Joanne M / Edwards, Sarah J L

    The Lancet. Microbe

    2020  Volume 1, Issue 4, Page(s) e141–e142

    MeSH term(s) COVID-19/epidemiology ; Host Specificity ; Humans ; Public Health ; SARS-CoV-2
    Keywords covid19
    Language English
    Publishing date 2020-06-18
    Publishing country England
    Document type Journal Article
    ISSN 2666-5247
    ISSN (online) 2666-5247
    DOI 10.1016/S2666-5247(20)30069-0
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  5. Article ; Online: Anthroponotic risk of SARS-CoV-2, precautionary mitigation, and outbreak management.

    Edwards, Sarah J L / Santini, Joanne M

    The Lancet. Microbe

    2020  Volume 1, Issue 5, Page(s) e187–e188

    MeSH term(s) COVID-19/epidemiology ; Disease Outbreaks/prevention & control ; Humans ; Infectious Disease Transmission, Patient-to-Professional ; SARS-CoV-2
    Keywords covid19
    Language English
    Publishing date 2020-07-02
    Publishing country England
    Document type Journal Article
    ISSN 2666-5247
    ISSN (online) 2666-5247
    DOI 10.1016/S2666-5247(20)30086-0
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  6. Article ; Online: Host range of SARS-CoV-2 and implications for public health

    Joanne M Santini / Sarah J L Edwards

    The Lancet Microbe, Vol 1, Iss 4, Pp e141-e

    2020  Volume 142

    Keywords Medicine (General) ; R5-920 ; Microbiology ; QR1-502
    Language English
    Publishing date 2020-08-01T00:00:00Z
    Publisher Elsevier
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  7. Article ; Online: Anthroponotic risk of SARS-CoV-2, precautionary mitigation, and outbreak management

    Sarah J L Edwards / Joanne M Santini

    The Lancet Microbe, Vol 1, Iss 5, Pp e187-e

    2020  Volume 188

    Keywords Medicine (General) ; R5-920 ; Microbiology ; QR1-502
    Language English
    Publishing date 2020-09-01T00:00:00Z
    Publisher Elsevier
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  8. Article ; Online: Arsenite oxidase in complex with antimonite and arsenite oxyanions: Insights into the catalytic mechanism.

    Engrola, Filipa / Correia, Márcia A S / Watson, Cameron / Romão, Carlos C / Veiros, Luis F / Romão, Maria João / Santos-Silva, Teresa / Santini, Joanne M

    The Journal of biological chemistry

    2023  Volume 299, Issue 8, Page(s) 105036

    Abstract: Arsenic contamination of groundwater is among one of the biggest health threats affecting millions of people in the world. There is an urgent need for efficient arsenic biosensors where the use of arsenic metabolizing enzymes can be explored. In this ... ...

    Abstract Arsenic contamination of groundwater is among one of the biggest health threats affecting millions of people in the world. There is an urgent need for efficient arsenic biosensors where the use of arsenic metabolizing enzymes can be explored. In this work, we have solved four crystal structures of arsenite oxidase (Aio) in complex with arsenic and antimony oxyanions and the structures determined correspond to intermediate states of the enzymatic mechanism. These structural data were complemented with density-functional theory calculations providing a unique view of the molybdenum active site at different time points that, together with mutagenesis data, enabled to clarify the enzymatic mechanism and the molecular determinants for the oxidation of As(III) to the less toxic As(V) species.
    MeSH term(s) Humans ; Antimony ; Arsenic ; Arsenites ; Oxidation-Reduction
    Chemical Substances arsenite oxidase (EC 1.16.-) ; antimonite (39349-74-1) ; Antimony (9IT35J3UV3) ; Arsenic (N712M78A8G) ; arsenite (N5509X556J) ; Arsenites
    Language English
    Publishing date 2023-07-11
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 2997-x
    ISSN 1083-351X ; 0021-9258
    ISSN (online) 1083-351X
    ISSN 0021-9258
    DOI 10.1016/j.jbc.2023.105036
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  9. Article ; Online: Detection and enumeration of Lak megaphages in microbiome samples by endpoint and quantitative PCR.

    Crisci, Marco A / Corsini, Paula M / Bordin, Nicola / Chen, Lin-Xing / Banfield, Jillain F / Santini, Joanne M

    STAR protocols

    2022  Volume 3, Issue 1, Page(s) 101029

    Abstract: Lak megaphages are prevalent across diverse gut microbiomes and may potentially impact animal and human health through lysis ... ...

    Abstract Lak megaphages are prevalent across diverse gut microbiomes and may potentially impact animal and human health through lysis of
    MeSH term(s) Animals ; Bacteriophages/genetics ; Gastrointestinal Microbiome ; Microbiota/genetics ; Prevotella/genetics ; Real-Time Polymerase Chain Reaction/methods
    Language English
    Publishing date 2022-01-07
    Publishing country United States
    Document type Journal Article ; Research Support, N.I.H., Extramural ; Research Support, Non-U.S. Gov't
    ISSN 2666-1667
    ISSN (online) 2666-1667
    DOI 10.1016/j.xpro.2021.101029
    Database MEDical Literature Analysis and Retrieval System OnLINE

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