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Biology subjects

Saint-Andre, C.

Publications and source records attributed to Saint-Andre, C..

2 recordsLinked to original sources

DNA topoisomerase I acts as supercoiling sensor for transcription elongation in E. coli

When DNA is transcribed to RNA, the DNA double helix is constantly unwound and rewound to provide access for RNA polymerase (RNAP). This induces DNA supercoiling as a function of transcript length due to over- and under-twisting of the DNA downstream and upstream of RNAP, respectively. Using single-particle cryo-EM and in vivo assays we investigated the relationship between bacterial RNAP and DNA Topoisomerase I (TopoI), which removes negative supercoils accumulating upstream of RNAP. TopoI binds to relaxed DNA upstream of RNAP in a manner suggesting a sensory role awaiting the formation of negative supercoils and involving a conformational switch in the functional domains of TopoI. On DNA substrates mimicking negatively supercoiled DNA, TopoI threads one strand into the active site for cleavage while binding the complementary strand with an auxiliary domain. We propose a comprehensive model for DNA relaxation in the context of a transcribing RNAP.

molecular biology↗

Molecular basis of mRNA delivery to the bacterial ribosome

Protein synthesis begins with the formation of a ribosome-mRNA complex. In bacteria, the 30S ribosomal subunit is recruited to many mRNAs through base pairing with the Shine Dalgarno (SD) sequence and RNA binding by ribosomal protein bS1. Translation can initiate on nascent mRNAs and RNA polymerase (RNAP) can promote recruitment of the pioneering 30S subunit. Here we examined ribosome recruitment to nascent mRNAs using cryo-EM, single-molecule fluorescence co-localization, and in-cell crosslinking mass spectrometry. We show that bS1 delivers the mRNA to the ribosome for SD duplex formation and 30S subunit activation. Additionally, bS1 mediates the stimulation of translation initiation by RNAP. Together, our work provides a mechanistic framework for how the SD duplex, ribosomal proteins and RNAP cooperate in 30S recruitment to mRNAs and establish transcription-translation coupling.

biochemistry↗