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Laura F Landweber

Publications and source records attributed to Laura F Landweber.

3 recordsLinked to original sources

Molecular computing revisited: a Moore's Law?

Moore's Law states that the processing power of microchips doubles every one to two years. This observation might apply to the nascent field of molecular computing, in which biomolecules carry out logical operations. Incorporation of new technologies that improve sensitivity and throughput has increased the complexity of problems that can be addressed. It is an ultimate goal for molecular computers to use the full potential of massive parallelism.

Algorithms↗

Custom codons come in threes, fours, and fives.

In a laboratory coselection of reporter messages containing a single randomized essential two-, four-, five-, or six-base "codon" with suppressor tRNA(Ser) libraries whose members possessed randomized anticodon loops of varying sizes, only four- and five-base "codon-anticodon" interactions survived. These suppressor tRNAs accomplish +1 and -1 frameshift suppression, suggesting biological significance. They also display some properties common to serine tRNAs; such properties include a modest excess of Ser anticodons that might assist tRNA charging.

Codon↗

Rewriting the information in DNA: RNA editing in kinetoplastids and myxomycetes.

RNA editing has a major impact on the genes and genomes that it modifies. Editing by insertion, deletion and base conversion exists in nuclear, mitochondrial and viral genomes throughout the eukaryotic lineage. Editing was first discovered in kinetoplastids, and recent work has resulted in the characterization of some components of the editing machinery. Two proteins with ligase activity have been identified in Trypanosoma brucei, and other proteins in the editosome complex are yielding to the probe of research. A second group of protists, myxomycetes, are unique in their use of four different types of editing within a single transcript. Phylogenetic analysis of editing in representative myxomycetes revealed a different history of the four types of editing in this lineage. Development of a soluble in vitro editing system has provided further support for the co-transcriptional nature of editing in Physarum polycephalum, and will certainly provide future opportunities for understanding this mysterious process.

Cytidine↗