Oliver Rackham
Affiliations: | 2003-2005 | MRC Laboratory of Molecular Biology, Cambridge, England, United Kingdom |
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Publications
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Lee RG, Rudler DL, Raven SA, et al. (2023) Quantitative subcellular reconstruction reveals a lipid mediated inter-organelle biogenesis network. Nature Cell Biology |
Dai CY, Ng CC, Hung GCC, et al. (2023) ATFS-1 counteracts mitochondrial DNA damage by promoting repair over transcription. Nature Cell Biology |
Rudler DL, Siira SJ, Rackham O, et al. (2023) Digital RNase Footprinting of RNA-Protein Complexes and Ribosomes in Mitochondria. Methods in Molecular Biology (Clifton, N.J.). 2661: 317-328 |
Saurer M, Leibundgut M, Nadimpalli HP, et al. (2023) Molecular basis of translation termination at noncanonical stop codons in human mitochondria. Science (New York, N.Y.). 380: 531-536 |
Hughes LA, Rudler DL, Siira SJ, et al. (2023) Copy number variation in tRNA isodecoder genes impairs mammalian development and balanced translation. Nature Communications. 14: 2210 |
Clemente P, Calvo-Garrido J, Pearce SF, et al. (2022) ANGEL2 phosphatase activity is required for non-canonical mitochondrial RNA processing. Nature Communications. 13: 5750 |
Filipovska A, Rackham O. (2022) Shackled ribosomes unleashed. Nature Chemical Biology |
Rackham O, Filipovska A. (2022) Organization and expression of the mammalian mitochondrial genome. Nature Reviews. Genetics |
Lee RG, Balasubramaniam S, Stentenbach M, et al. (2022) Deleterious variants in CRLS1 lead to cardiolipin deficiency and cause an autosomal recessive multi-system mitochondrial disease. Human Molecular Genetics |
Ohkubo A, Van Haute L, Rudler DL, et al. (2021) The FASTK family proteins fine-tune mitochondrial RNA processing. Plos Genetics. 17: e1009873 |