Altmann, Michael

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Number of items: 14.

Journal Article

Ross-Kaschitza, Daniela; Altmann, Michael (2020). eIF4E and Interactors from Unicellular Eukaryotes. International journal of molecular sciences, 21(6) MDPI 10.3390/ijms21062170

Lu, Huixin; Mazumder, Mostafizur; Jaikaran, Anna S I; Kumar, Anil; Leis, Eric K; Xu, Xiuling; Altmann, Michael; Cochrane, Alan; Woolley, G Andrew (2019). A Yeast System for Discovering Optogenetic Inhibitors of Eukaryotic Translation Initiation. ACS synthetic biology, 8(4), pp. 744-757. American Chemical Society 10.1021/acssynbio.8b00386

Arndt, Nick; Ross-Kaschitza, Daniela; Kojukhov, Artyom; Komar, Anton A.; Altmann, Michael (2018). Properties of the ternary complex formed by yeast eIF4E, p20 and mRNA. Scientific Reports, 8(1), p. 6707. Nature Publishing Group 10.1038/s41598-018-25273-3

Ross, Daniela; Altmann, Michael (2016). A fast protocol for purification of translating mRNAs. Methods, 107, pp. 57-62. Elsevier 10.1016/j.ymeth.2016.03.021

Eltschinger, Sandra; Greganova, Eva; Heller, Manfred; Bütikofer, Peter; Altmann, Michael (2012). Eukaryotic translation elongation factor 1A (eEF1A) domain I from S. cerevisiae is required but not sufficient for inter-species complementation. PLoS ONE, 7(7), e42338. Lawrence, Kans.: Public Library of Science 10.1371/journal.pone.0042338

Ross, Daniela; Saxena, Manisha; Altmann, Michael (2012). eIF4E is an important determinant of adhesion and pseudohyphal growth of the yeast S. cerevisiae. PLoS ONE, 7(11), e50773. Lawrence, Kans.: Public Library of Science 10.1371/journal.pone.0050773

Greganova, Eva; Altmann, Michael; Bütikofer, Peter (2011). Unique modifications of translation elongation factors. FEBS journal, 278(15), pp. 2613-24. Oxford: Wiley-Blackwell 10.1111/j.1742-4658.2011.08199.x

Altmann, Michael; Linder, Patrick (2010). Power of yeast for analysis of eukaryotic translation initiation. Journal of biological chemistry, 285(42), pp. 31907-12. Bethesda, Md.: American Society for Biochemistry and Molecular Biology 10.1074/jbc.R110.144196

Schütz, Patrick; Bumann, Mario; Oberholzer, Anselm Erich; Bieniossek, Christoph; Trachsel, Hans; Altmann, Michael; Baumann, Ulrich (2008). Crystal structure of the yeast eIF4A-eIF4G complex: an RNA-helicase controlled by protein-protein interactions. Proceedings of the National Academy of Sciences of the United States of America - PNAS, 105(28), pp. 9564-9569. Washington, D.C.: National Academy of Sciences NAS 10.1073/pnas.0800418105

Lindqvist, Lisa; Oberer, Monika; Reibarkh, Mikhail; Cencic, Regina; Bordeleau, Marie-Eve; Vogt, Emily; Marintchev, Assen; Tanaka, Junichi; Fagotto, Francois; Altmann, Michael; Wagner, Gerhard; Pelletier, Jerry (2008). Selective pharmacological targeting of a DEAD box RNA helicase. PLoS ONE, 3(2), e1583. Lawrence, Kans.: Public Library of Science 10.1371/journal.pone.0001583

Yoffe, Yael; Zuberek, Joanna; Lerer, Asaf; Lewdorowicz, Magdalena; Stepinski, Janusz; Altmann, Michael; Darzynkiewicz, Edward; Shapira, Michal (2006). Binding specificities and potential roles of isoforms of eukaryotic initiation factor 4E in Leishmania. Eukaryotic cell, 5(12), pp. 1969-79. Washington, D.C.: American Society for Microbiology ASM 10.1128/EC.00230-06

Altmann, Michael; Ammann, Klaus (1992). Gentechnologie im gesellschaftlichen Spannungsfeld: Züchtung transgener Kulturpflanzen. GAIA - Ökologische Perspektiven für Wissenschaft und Gesellschaft / ecological perspectives for science and society, 1(4), pp. 204-213. Oekom Verlag 10.14512/gaia.1.4.5

Book Section

Eltschinger, Sandra; Bütikofer, Peter; Altmann, Michael (2016). Translation Elongation and Termination: 2 Are They Conserved Processes? In: Hernández, Greco; Jagus, Rosemary (eds.) Evolution of The Protein Synthesis Machinery and Its Regulation (pp. 277-311). Springer International 10.1007/978-3-319-39468-8_13

Ross, Daniela; Altmann, Michael (2016). eIF4Es and Their Interactors from Yeast Species. In: Hernández, Greco; Jagus, Rosemary (eds.) Evolution of The Protein Synthesis Machinery and Its Regulation (pp. 143-164). Sprinter International 10.1007/978-3-319-39468-8_7

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