Henrik Land
Biträdande universitetslektor vid Institutionen för kemi - Ångström; Molekylär biomimetik; Biofysikalisk och bio-oorganisk kemi
- E-post:
- henrik.land@kemi.uu.se
- Besöksadress:
- Ångströmlaboratoriet, Lägerhyddsvägen 1
75120 Uppsala - Postadress:
- Box 523
75120 Uppsala

Publikationer
Senaste publikationer
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Ingår i ChemBioChem, 2026
- DOI för Maturation and Catalysis of a Clade E Carbon Monoxide Dehydrogenase Encoded in a CooCTJ-Operon From Clostridium pasteurianum BC1
- Ladda ner fulltext (pdf) av Maturation and Catalysis of a Clade E Carbon Monoxide Dehydrogenase Encoded in a CooCTJ-Operon From Clostridium pasteurianum BC1
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Ingår i Biochemistry, s. 1280-1292, 2026
- DOI för Probing the Role of Accessory FeS Clusters in Putative Sensory Group D [FeFe] Hydrogenase: Influence of the C-Terminal [4Fe-4S] Cluster on the Reactivity of TamHydS
- Ladda ner fulltext (pdf) av Probing the Role of Accessory FeS Clusters in Putative Sensory Group D [FeFe] Hydrogenase: Influence of the C-Terminal [4Fe-4S] Cluster on the Reactivity of TamHydS
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Investigating the native functions of [NiFe]-CODH through genomic context analysis
Ingår i eLIFE, 2026
- DOI för Investigating the native functions of [NiFe]-CODH through genomic context analysis
- Ladda ner fulltext (pdf) av Investigating the native functions of [NiFe]-CODH through genomic context analysis
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2026
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2026
Alla publikationer
Artiklar i tidskrift
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Ingår i ChemBioChem, 2026
- DOI för Maturation and Catalysis of a Clade E Carbon Monoxide Dehydrogenase Encoded in a CooCTJ-Operon From Clostridium pasteurianum BC1
- Ladda ner fulltext (pdf) av Maturation and Catalysis of a Clade E Carbon Monoxide Dehydrogenase Encoded in a CooCTJ-Operon From Clostridium pasteurianum BC1
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Ingår i Biochemistry, s. 1280-1292, 2026
- DOI för Probing the Role of Accessory FeS Clusters in Putative Sensory Group D [FeFe] Hydrogenase: Influence of the C-Terminal [4Fe-4S] Cluster on the Reactivity of TamHydS
- Ladda ner fulltext (pdf) av Probing the Role of Accessory FeS Clusters in Putative Sensory Group D [FeFe] Hydrogenase: Influence of the C-Terminal [4Fe-4S] Cluster on the Reactivity of TamHydS
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Investigating the native functions of [NiFe]-CODH through genomic context analysis
Ingår i eLIFE, 2026
- DOI för Investigating the native functions of [NiFe]-CODH through genomic context analysis
- Ladda ner fulltext (pdf) av Investigating the native functions of [NiFe]-CODH through genomic context analysis
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Ingår i eLIFE, 2026
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Ingår i Microbial Cell Factories, 2025
- DOI för Structure-guided engineering of α-ketoisocaproate dioxygenase increases isobutene production in Synechocystis sp. PCC 6803
- Ladda ner fulltext (pdf) av Structure-guided engineering of α-ketoisocaproate dioxygenase increases isobutene production in Synechocystis sp. PCC 6803
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A widespread hydrogenase supports fermentative growth of gut bacteria in healthy people
Ingår i Nature Microbiology, s. 2686-2701, 2025
- DOI för A widespread hydrogenase supports fermentative growth of gut bacteria in healthy people
- Ladda ner fulltext (pdf) av A widespread hydrogenase supports fermentative growth of gut bacteria in healthy people
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Ingår i Microbial Cell Factories, 2025
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Ingår i Physical Chemistry, Chemical Physics - PCCP, s. 9864-9875, 2025
- DOI för Indications for a universal hydrogen catalysis mechanism in [FeFe]-hydrogenases of different phylogenetic groups
- Ladda ner fulltext (pdf) av Indications for a universal hydrogen catalysis mechanism in [FeFe]-hydrogenases of different phylogenetic groups
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Ingår i Journal of the American Chemical Society, s. 4654-4666, 2025
- DOI för Probing the Influence of the Protein Scaffold on H-Cluster Reactivity via Gain-of-Function Studies─Improved H2 Evolution and O2 Tolerance through Rational Design of [FeFe] Hydrogenase
- Ladda ner fulltext (pdf) av Probing the Influence of the Protein Scaffold on H-Cluster Reactivity via Gain-of-Function Studies─Improved H2 Evolution and O2 Tolerance through Rational Design of [FeFe] Hydrogenase
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Ingår i Chemical Science, s. 16789-16795, 2024
- DOI för Photobiocatalytic CO2 reduction into CO by organic nanorod-carbon monoxide dehydrogenase assemblies: surfactant matters
- Ladda ner fulltext (pdf) av Photobiocatalytic CO2 reduction into CO by organic nanorod-carbon monoxide dehydrogenase assemblies: surfactant matters
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Secondary structure changes as the potential H2 sensing mechanism of group D [FeFe]-hydrogenases
Ingår i Chemical Communications, s. 10914-10917, 2024
- DOI för Secondary structure changes as the potential H2 sensing mechanism of group D [FeFe]-hydrogenases
- Ladda ner fulltext (pdf) av Secondary structure changes as the potential H2 sensing mechanism of group D [FeFe]-hydrogenases
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Minimal and hybrid hydrogenases are active from archaea
Ingår i Cell, 2024
- DOI för Minimal and hybrid hydrogenases are active from archaea
- Ladda ner fulltext (pdf) av Minimal and hybrid hydrogenases are active from archaea
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Ingår i ACS Catalysis, s. 10435-10446, 2023
- DOI för Probing Substrate Transport Effects on Enzymatic Hydrogen Catalysis: An Alternative Proton Transfer Pathway in Putatively Sensory [FeFe] Hydrogenase
- Ladda ner fulltext (pdf) av Probing Substrate Transport Effects on Enzymatic Hydrogen Catalysis: An Alternative Proton Transfer Pathway in Putatively Sensory [FeFe] Hydrogenase
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Ingår i ACS Sustainable Chemistry and Engineering, s. 10760-10767, 2022
- DOI för Light-Driven [FeFe] Hydrogenase Based H-2 Production in E. coli: A Model Reaction for Exploring E. coli Based Semiartificial Photosynthetic Systems
- Ladda ner fulltext (pdf) av Light-Driven [FeFe] Hydrogenase Based H-2 Production in E. coli: A Model Reaction for Exploring E. coli Based Semiartificial Photosynthetic Systems
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Ingår i Advanced Synthesis and Catalysis, s. 2972-2981, 2022
- DOI för Enantioselective Synthesis of Pharmaceutically Relevant Bulky Arylbutylamines Using Engineered Transaminases
- Ladda ner fulltext (pdf) av Enantioselective Synthesis of Pharmaceutically Relevant Bulky Arylbutylamines Using Engineered Transaminases
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Ingår i Cell Reports Physical Science, 2021
- DOI för Semisynthetic [FeFe]-hydrogenase with stable expression and H2 production capacity in a photosynthetic microbe
- Ladda ner fulltext (pdf) av Semisynthetic [FeFe]-hydrogenase with stable expression and H2 production capacity in a photosynthetic microbe
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Reversible or Irreversible Catalysis of H+/H2 Conversion by FeFe Hydrogenases
Ingår i Journal of the American Chemical Society, s. 20320-20325, 2021
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Semi-synthetic hydrogenases—in vitro and in vivo applications
Ingår i Current Opinion in Green and Sustainable Chemistry, 2021
- DOI för Semi-synthetic hydrogenases—in vitro and in vivo applications
- Ladda ner fulltext (pdf) av Semi-synthetic hydrogenases—in vitro and in vivo applications
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Ingår i Advanced Synthesis and Catalysis, s. 812-821, 2020
- DOI för Engineering the Active Site of an (S)-Selective Amine Transaminase for Acceptance of Doubly Bulky Primary Amines
- Ladda ner fulltext (pdf) av Engineering the Active Site of an (S)-Selective Amine Transaminase for Acceptance of Doubly Bulky Primary Amines
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The maturase HydF enables [FeFe] hydrogenase assembly via transient, cofactor-dependent interactions
Ingår i Journal of Biological Chemistry, s. 11891-11901, 2020
- DOI för The maturase HydF enables [FeFe] hydrogenase assembly via transient, cofactor-dependent interactions
- Ladda ner fulltext (pdf) av The maturase HydF enables [FeFe] hydrogenase assembly via transient, cofactor-dependent interactions
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Ingår i Chemical Science, s. 12789-12801, 2020
- DOI för Characterization of a putative sensory [FeFe]-hydrogenase provides new insight into the role of the active site architecture
- Ladda ner fulltext (pdf) av Characterization of a putative sensory [FeFe]-hydrogenase provides new insight into the role of the active site architecture
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Ingår i ACS Catalysis, s. 9943-9952, 2020
- DOI för Carbon Dots and [FeFe] Hydrogenase Biohybrid Assemblies for Efficient Light-Driven Hydrogen Evolution
- Ladda ner fulltext (pdf) av Carbon Dots and [FeFe] Hydrogenase Biohybrid Assemblies for Efficient Light-Driven Hydrogen Evolution
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Current State of [FeFe]-Hydrogenase Research: Biodiversity and Spectroscopic Investigations
Ingår i ACS Catalysis, s. 7069-7086, 2020
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Discovery of novel [FeFe]-hydrogenases for biocatalytic H-2-production
Ingår i Chemical Science, s. 9941-9948, 2019
- DOI för Discovery of novel [FeFe]-hydrogenases for biocatalytic H-2-production
- Ladda ner fulltext (pdf) av Discovery of novel [FeFe]-hydrogenases for biocatalytic H-2-production
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Ingår i ChemBioChem, s. 1297-1304, 2019
- DOI för B-factor Guided Proline Substitutions in Chromobacterium violaceum Amine Transaminase: Evaluation of the Proline Rule as a Method for Enzyme Stabilization
- Ladda ner fulltext (pdf) av B-factor Guided Proline Substitutions in Chromobacterium violaceum Amine Transaminase: Evaluation of the Proline Rule as a Method for Enzyme Stabilization