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Keywords: Organelle division
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Journal Articles
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Mitochondria
J Cell Sci (2022) 135 (13): jcs259924.
Published: 8 July 2022
... of MFF in a DRP1- and FIS1-dependent manner, suggesting that an alternative, MFF-independent pathway in peroxisome division exists. Peroxisomes Mitochondria Organelle division PEX11 FIS1 MFF Biotechnology and Biological Sciences Research Council http://dx.doi.org/10.13039...
Includes: Supplementary data
Journal Articles
J Cell Sci (2021) 134 (21): jcs258948.
Published: 10 November 2021
...: An engineered CRISPR-Cas9 system for simultaneous genome editing and organellar visualization in Cyanidioschyzon merolae can be used to investigate the function of any gene at organellar resolution. CRISPR-Cas9 gene editing Multiplexed organelle imaging Rhodophyta Cyanidioschyzon merolae Organelle...
Includes: Supplementary data
Journal Articles
J Cell Sci (2015) 128 (4): 621–630.
Published: 15 February 2015
.... * Author for correspondence ( rick.rachubinski@ualberta.ca ) Competing interests The authors declare no competing or financial interests. © 2015. Published by The Company of Biologists Ltd 2015 Saccharomyces cerevisiae Organelle division Organelle inheritance Organelle population...
Journal Articles
J Cell Sci (2010) 123 (16): 2750–2762.
Published: 15 August 2010
... simple division of a pre-existing organelle. The implications of these findings on the mechanisms of peroxisome formation and membrane deformation are discussed. * Author for correspondence ( mschrader@ua.pt ) 4 5 2010 © 2010. 2010 Peroxisomes Organelle division Peroxisome...
Includes: Multimedia, Supplementary data
Journal Articles
J Cell Sci (2006) 119 (4): 636–645.
Published: 15 February 2006
... Limited 2006 2006 Peroxisome biogenesis Peroxisomal disorders Organelle division Microtubule trafficking PEX11β The peroxisome is an organelle that makes an essential contribution to cellular metabolism ( van den Bosch et al., 1992 ). In humans, the essential nature of the peroxisome...
Journal Articles
J Cell Sci (2004) 117 (17): 3995–4006.
Published: 1 August 2004
... demonstrate that DLP1 acts on multiple membranous organelles. They further indicate that peroxisomal elongation, constriction and fission require distinct sets of proteins, and that the dynamin-like protein DLP1 functions primarily in the latter process. Peroxisome biogenesis Dynamin Organelle division...