New Insights into Phase Separation Processes and Membraneless Condensates of EIN2

Recent technological advances allow us to resolve molecular processes in living cells with high spatial and temporal resolution. Based on these technological advances, membraneless intracellular condensates formed by reversible functional aggregation and phase separation have been identified as impo...

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Bibliographic Details
Main Authors: Jian Lu, Chi-Kuang Wen, Georg Groth
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Plants
Subjects:
Online Access:https://www.mdpi.com/2223-7747/11/16/2149
Description
Summary:Recent technological advances allow us to resolve molecular processes in living cells with high spatial and temporal resolution. Based on these technological advances, membraneless intracellular condensates formed by reversible functional aggregation and phase separation have been identified as important regulatory modules in diverse biological processes. Here, we present bioinformatic and cellular studies highlighting the possibility of the involvement of the central activator of ethylene responses EIN2 in such cellular condensates and phase separation processes. Our work provides insight into the molecular type (identity) of the observed EIN2 condensates and on potential intrinsic elements and sequence motifs in EIN2-C that may regulate condensate formation and dynamics.
ISSN:2223-7747