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Tiina S Rasila

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Analytical Biochemistry|May 21, 2009
Critical evaluation of random mutagenesis by error-prone polymerase chain reaction protocols, Escherichia coli mutator strain, and hydroxylamine treatmentTiina S Rasila, Maria I Pajunen, Harri Savilahti
Plos One|June 6, 2012
Flexibility in MuA transposase family protein structures: functional mapping with scanning mutagenesis and sequence alignment of protein homologuesTiina S Rasila, Mauno Vihinen, Lars Paulin, et al.
Mobile DNA|November 30, 2010
Universal platform for quantitative analysis of DNA transpositionMaria I Pajunen, Tiina S Rasila, Lotta J Happonen, et al.
Nucleic Acids Research|January 3, 2018
Mu transpososome activity-profiling yields hyperactive MuA variants for highly efficient genetic and genome engineeringTiina S Rasila, Elsi Pulkkinen, Saija Kiljunen, et al.
Neurobiology of Disease|May 22, 2020
ALS and Parkinson's disease genes CHCHD10 and CHCHD2 modify synaptic transcriptomes in human iPSC-derived motor neuronsSandra Harjuhaahto, Tiina S Rasila, Svetlana M Molchanova, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Analytical Biochemistry|May 21, 2009
Critical evaluation of random mutagenesis by error-prone polymerase chain reaction protocols, Escherichia coli mutator strain, and hydroxylamine treatmentTiina S Rasila, Maria I Pajunen, Harri Savilahti
Plos One|June 6, 2012
Flexibility in MuA transposase family protein structures: functional mapping with scanning mutagenesis and sequence alignment of protein homologuesTiina S Rasila, Mauno Vihinen, Lars Paulin, et al.
Mobile DNA|November 30, 2010
Universal platform for quantitative analysis of DNA transpositionMaria I Pajunen, Tiina S Rasila, Lotta J Happonen, et al.
Nucleic Acids Research|January 3, 2018
Mu transpososome activity-profiling yields hyperactive MuA variants for highly efficient genetic and genome engineeringTiina S Rasila, Elsi Pulkkinen, Saija Kiljunen, et al.
Neurobiology of Disease|May 22, 2020
ALS and Parkinson's disease genes CHCHD10 and CHCHD2 modify synaptic transcriptomes in human iPSC-derived motor neuronsSandra Harjuhaahto, Tiina S Rasila, Svetlana M Molchanova, et al.
Pageof 1