AI Article Synopsis

  • Organelle division involves a ring-shaped structure made from dynamin that is crucial for the division of mitochondria, plastids, and peroxisomes.
  • Researchers discovered a dynamin-based ring organizing center (DOC) in a unicellular red algae that initiates the formation of this ring during peroxisome division.
  • The study reveals how dynamin's activity and turnover are regulated by GTP concentration, leading to the formation of thicker rings during membrane fission, enhancing our understanding of cell division processes in eukaryotes.*

Article Abstract

Organelle division is executed through contraction of a ring-shaped supramolecular dividing machinery. A core component of the machinery is the dynamin-based ring conserved during the division of mitochondrion, plastid and peroxisome. Here, using isolated peroxisome-dividing (POD) machinery from a unicellular red algae, , we identified a dynamin-based ring organizing center (DOC) that acts as an initiation point for formation of the dynamin-based ring. contains a single peroxisome, the division of which can be highly synchronized by light-dark stimulation; thus, intact POD machinery can be isolated in bulk. Dynamin-based ring homeostasis is maintained by the turnover of the GTP-bound form of the dynamin-related protein Dnm1 between the cytosol and division machinery via the DOC. A single DOC is formed on the POD machinery with a diameter of 500-700 nm, and the dynamin-based ring is unidirectionally elongated from the DOC in a manner that is dependent on GTP concentration. During the later step of membrane fission, the second DOC is formed and constructs the double dynamin-based ring to make the machinery thicker. These findings provide new insights to define fundamental mechanisms underlying the dynamin-based membrane fission in eukaryotic cells.

Download full-text PDF

Source
http://dx.doi.org/10.1242/jcs.199182DOI Listing

Publication Analysis

Top Keywords

dynamin-based ring
28
pod machinery
12
ring organizing
8
organizing center
8
machinery
8
machinery isolated
8
doc formed
8
membrane fission
8
ring
7
dynamin-based
7

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!