TY - CHAP
T1 - Non-radioactive In Vivo Labeling of RNA with 4-Thiouracil
AU - Braun, Christina
AU - Knüppel, Robert
AU - Perez-Fernandez, Jorge
AU - Ferreira-Cerca, Sébastien
N1 - Publisher Copyright:
© 2022, The Author(s).
PY - 2022/1/1
Y1 - 2022/1/1
N2 - RNA molecules and their expression dynamics play essential roles in the establishment of complex cellular phenotypes and/or in the rapid cellular adaption to environmental changes. Accordingly, analyzing RNA expression remains an important step to understand the molecular basis controlling the formation of cellular phenotypes, cellular homeostasis or disease progression. Steady-state RNA levels in the cells are controlled by the sum of highly dynamic molecular processes contributing to RNA expression and can be classified in transcription, maturation and degradation. The main goal of analyzing RNA dynamics is to disentangle the individual contribution of these molecular processes to the life cycle of a given RNA under different physiological conditions. In the recent years, the use of nonradioactive nucleotide/nucleoside analogs and improved chemistry, in combination with time-dependent and high-throughput analysis, have greatly expanded our understanding of RNA metabolism across various cell types, organisms, and growth conditions. In this chapter, we describe a step-by-step protocol allowing pulse labeling of RNA with the nonradioactive nucleotide analog, 4-thiouracil, in the eukaryotic model organism Saccharomyces cerevisiae and the model archaeon Haloferax volcanii.
AB - RNA molecules and their expression dynamics play essential roles in the establishment of complex cellular phenotypes and/or in the rapid cellular adaption to environmental changes. Accordingly, analyzing RNA expression remains an important step to understand the molecular basis controlling the formation of cellular phenotypes, cellular homeostasis or disease progression. Steady-state RNA levels in the cells are controlled by the sum of highly dynamic molecular processes contributing to RNA expression and can be classified in transcription, maturation and degradation. The main goal of analyzing RNA dynamics is to disentangle the individual contribution of these molecular processes to the life cycle of a given RNA under different physiological conditions. In the recent years, the use of nonradioactive nucleotide/nucleoside analogs and improved chemistry, in combination with time-dependent and high-throughput analysis, have greatly expanded our understanding of RNA metabolism across various cell types, organisms, and growth conditions. In this chapter, we describe a step-by-step protocol allowing pulse labeling of RNA with the nonradioactive nucleotide analog, 4-thiouracil, in the eukaryotic model organism Saccharomyces cerevisiae and the model archaeon Haloferax volcanii.
KW - 4-thiouracil
KW - Haloferax volcanii
KW - Pulse labeling
KW - RNA
KW - RNA tagging
KW - Saccharomyces cerevisiae
U2 - 10.1007/978-1-0716-2501-9_12
DO - 10.1007/978-1-0716-2501-9_12
M3 - Chapter
C2 - 35796990
AN - SCOPUS:85134011626
T3 - Methods in Molecular Biology
SP - 199
EP - 213
BT - Methods in Molecular Biology
PB - Humana Press Inc.
ER -