Sequence
RNA sequences encode information and provide the molecular foundation for transcription, processing and downstream biological activity.
Next-Generation RNA Technologies explores RNA as a dynamic information system connecting molecular structure, regulation, expression and biological function.
OUR PERSPECTIVE
RNA is more than an intermediate carrier of genetic information. Its sequence, structure, processing, localization and interactions contribute to how biological information is interpreted within cells and across biological systems.
Next-Generation RNA Technologies brings these interconnected dimensions together to provide a focused scientific perspective on RNA biology, from molecular mechanisms to emerging analytical approaches.
RNA research spans multiple molecular layers. We organize these dimensions around the relationships between sequence, structure, regulation and biological information.
RNA sequences encode information and provide the molecular foundation for transcription, processing and downstream biological activity.
RNA molecules fold into diverse structures that influence stability, molecular recognition, interaction and function.
RNA participates in complex regulatory processes involving transcription, processing, translation and gene expression.
RNA-based measurements provide molecular information that can be studied across cells, tissues, organisms and biological systems.
Understanding RNA requires looking beyond individual molecules. Sequence, structure, localization and interactions continuously influence one another within biological environments.
Our approach therefore focuses on the connections between these molecular layers, helping organize complex RNA concepts into a clearer scientific framework.
Molecular mechanisms governing RNA synthesis, processing, structure and function.
Regulatory processes connecting RNA molecules with cellular and genetic information.
Modern approaches for studying, measuring and interpreting RNA-related molecular information.
Molecular information generated from RNA populations across biological contexts.
It is a dynamic connection between molecular information, biological regulation and cellular function.