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Rudolf Konrad Allemann

Rudolf Konrad Allemann

D-Index & Metrics

Chemistry

D-Index
45
Citations
6452
World Ranking
16565
National Ranking
917

Overview

Rudolf Konrad Allemann is affiliated with Cardiff University in the United Kingdom. Their research primarily spans the field of Biochemistry, Genetics, and Molecular Biology, with a particular focus on Molecular Biology. Other notable subfields in their work include Pharmacology, Materials Chemistry, Biomedical Engineering, and Analytical Chemistry.

The main topics addressed in their research cover several areas, including:

  • Plant biochemistry and biosynthesis
  • Microbial Natural Products and Biosynthesis
  • Photosynthetic Processes and Mechanisms
  • Natural product bioactivities and synthesis
  • Advanced biosensing and bioanalysis techniques
  • Nanoplatforms for cancer theranostics
  • Chromatography in Natural Products

Frequent publication venues where Rudolf Konrad Allemann has contributed include:

  • ChemBioChem
  • ACS Catalysis
  • Angewandte Chemie International Edition
  • Angewandte Chemie
  • Chemical Science

Notable recent papers showcase a range of topics and venues, such as:

  • "Targeted cell imaging properties of a deep red luminescent iridium(iii) complex conjugated with a c-Myc signal peptide," 2020, Chemical Science
  • "Modular Chemoenzymatic Synthesis of Terpenes and their Analogues," 2020, Angewandte Chemie International Edition
  • "Redesigning the Molecular Choreography to Prevent Hydroxylation in Germacradien-11-ol Synthase Catalysis," 2021, ACS Catalysis
  • "Accelerating Biphasic Biocatalysis through New Process Windows," 2020, Angewandte Chemie International Edition
  • "Active Site Loop Engineering Abolishes Water Capture in Hydroxylating Sesquiterpene Synthases," 2023, ACS Catalysis

Throughout their career, Rudolf Konrad Allemann has collaborated frequently with other researchers. Significant coauthors include:

  • David J. Miller
  • Prabhakar Lal Srivastava
  • Robert J. Mart
  • Luke A. Johnson
  • Florence Huynh

Best Publications

  • Synthesis, structure and activity of artificial, rationally designed catalytic polypeptides

    Kai Johnsson;Rudolf Konrad Allemann;Hans Widmer;Steven A. Benner

  • Cell-penetrating peptide sequence and modification dependent uptake and subcellular distribution of green florescent protein in different cell lines

    Sanjay G. Patel;Edward J. Sayers;Lin He;Rohan Narayan

  • Azobenzene photocontrol of peptides and proteins

    Robert J. Mart;Rudolf K. Allemann

  • Sesquiterpene synthases: Passive catalysts or active players?

    David James Miller;Rudolf Konrad Allemann

  • Unraveling the role of protein dynamics in dihydrofolate reductase catalysis.

    Louis Y. P. Luk;J. Javier Ruiz-Pernía;William M. Dawson;Maite Roca

  • Crystal Structure of (+)-δ-Cadinene Synthase from Gossypium arboreum and Evolutionary Divergence of Metal Binding Motifs for Catalysis ,†,‡

    Heather A. Gennadios;Veronica Gonzalez;Luigi Di Costanzo;Luigi Di Costanzo;Amang Li

  • Evidence for Environmentally Coupled Hydrogen Tunneling during Dihydrofolate Reductase Catalysis

    Giovanni Maglia;Rudolf K. Allemann

  • Quantum Tunnelling in Enzyme-Catalysed Reactions

    Rudolf Konrad Allemann;N. S. Scrutton

  • Photocontrollable peptide-based switches target the anti-apoptotic protein Bcl-xL.

    Sabine Kneissl;E. Joel Loveridge;Christopher Williams;Matthew P. Crump

  • Evidence that a ‘dynamic knockout’ in Escherichia coli dihydrofolate reductase does not affect the chemical step of catalysis

    Edric Joel Loveridge;Enas Mamdouh Behiry;Jian Nan Guo;Rudolf Konrad Allemann

  • Photocontrol of DNA binding specificity of a miniature engrailed homeodomain.

    Lucia Guerrero;Oliver S. Smart;G. Andrew Woolley;Rudolf Konrad Allemann

  • Linking the functions of unrelated proteins using a novel directed evolution domain insertion method

    W. R. Edwards;K. Busse;Rudolf Konrad Allemann;Darran Dafydd Jones

  • Rational engineering of plasticity residues of sesquiterpene synthases from 'Artemisia annua': Product specificity and catalytic efficiency

    Jian‑Xu Li;Xin Fang;Qin Zhao;Ju-Xin Ruan

  • Hydride Transfer Reaction Catalyzed by Hyperthermophilic Dihydrofolate Reductase Is Dominated by Quantum Mechanical Tunneling and Is Promoted by Both Inter- and Intramonomeric Correlated Motions

    Jiayun Pang;Jingzhi Pu;Jiali Gao;Donald G. Truhlar

  • Germacrene A is a product of the aristolochene synthase-mediated conversion of farnesylpyrophosphate to aristolochene.

    Melanie J. Calvert;Peter R. Ashton;Rudolf Konrad Allemann

  • Photochemical Regulation of DNA-Binding Specificity of MyoD†

    Lucia Guerrero;Oliver S. Smart;Chris J. Weston;Darcy C. Burns

  • Evidence for differential folding of farnesyl pyrophosphate in the active site of aristolochene synthase: a single-point mutation converts aristolochene synthase into an (E)-beta-farnesene synthase.

    Athina Deligeorgopoulou;Rudolf K Allemann

  • Natural Selection, Protein Engineering, and the last Riboorganism: Rational Model Building in Biochemistry

    S. A. Benner;R. K. Allemann;Andrew Ellington;L. Ge

  • Aristolochene synthase-catalyzed cyclization of 2-fluorofarnesyl-diphosphate to 2-fluorogermacrene A.

    David James Miller;Fanglei Yu;Rudolf Konrad Allemann

  • DNA recognition and bending

    Rudolf K. Allemann;Martin Egli

  • X-ray Crystallographic Studies of Substrate Binding to Aristolochene Synthase Suggest a Metal Ion Binding Sequence for Catalysis

    Ekaterina Y. Shishova;Fanglei Yu;David James Miller;Juan A. Faraldos

Frequent Co-Authors

Thomas Wirth
Thomas Wirth Cardiff University
Iñaki Tuñón
Iñaki Tuñón University of Valencia
Vicent Moliner
Vicent Moliner Jaume I University
David W. Christianson
David W. Christianson University of Pennsylvania
Matthew P. Crump
Matthew P. Crump University of Bristol
Steven A. Benner
Steven A. Benner University of Florida
Nigel S. Scrutton
Nigel S. Scrutton University of Manchester
Maurice Bartlett Hallett
Maurice Bartlett Hallett Cardiff University
Jiali Gao
Jiali Gao University of Minnesota
Donald G. Truhlar
Donald G. Truhlar University of Minnesota

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