A High-OrderTrans-Membrane Structural Linkage Is Responsible for Mitochondrial Genome Positioning and Segregation by Flagellar Basal Bodies in Trypanosomes
Open Access
- 1 May 2003
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 14 (5) , 1769-1779
- https://doi.org/10.1091/mbc.e02-08-0525
Abstract
In trypanosomes, the large mitochondrial genome within the kinetoplast is physically connected to the flagellar basal bodies and is segregated by them during cell growth. The structural linkage enabling these phenomena is unknown. We have developed novel extraction/fixation protocols to characterize the links involved in kinetoplast-flagellum attachment and segregation. We show that three specific components comprise a structure that we have termed the tripartite attachment complex (TAC). The TAC involves a set of filaments linking the basal bodies to a zone of differentiated outer and inner mitochondrial membranes and a further set of intramitochondrial filaments linking the inner face of the differentiated membrane zone to the kinetoplast. The TAC and flagellum-kinetoplast DNA connections are sustained throughout the cell cycle and are replicated and remodeled during the periodic kinetoplast DNA S phase. This understanding of the high-order trans-membrane linkage provides an explanation for the spatial position of the trypanosome mitochondrial genome and its mechanism of segregation. Moreover, the architecture of the TAC suggests that it may also function in providing a structural and vectorial role during replication of this catenated mass of mitochondrial DNA. We suggest that this complex may represent an extreme form of a more generally occurring mitochondrion/cytoskeleton interaction.Keywords
This publication has 73 references indexed in Scilit:
- A low-viscosity epoxy resin embedding medium for electron microscopyPublished by Elsevier ,2004
- The Yeast Gene, MDM20, Is Necessary for Mitochondrial Inheritance and Organization of the Actin CytoskeletonThe Journal of cell biology, 1997
- Temperature-sensitive yeast mutants defective in mitochondrial inheritance.The Journal of cell biology, 1990
- Biology of African trypanosomes in the tsetse flyBiology of the Cell, 1988
- The genetic system of kinetoplasts in trypanosomatidesMolecular and Cellular Biochemistry, 1977
- The Mode of Attachment of Trypanosoma vivax in the Proboscis of the Tsetse Fly Glossina fuscipes: an Ultrastructural Study of the Epimastigote Stage of the Trypanosome*The Journal of Protozoology, 1973
- The Cell Cycle in Crithidia fasciculata. Temporal Relationships between Synthesis of Deoxyribonucleic Acid in the Nucleus and in the Kinetoplast1, 2The Journal of Protozoology, 1970
- EFFECT OF ACRIFLAVIN ON THE KINETOPLAST OF LEISHMANIA TARENTOLAE The Journal of cell biology, 1968
- The Ultrastructure of Crithidia fasciculata and Morphological Changes Induced by Growth in Acriflavin*The Journal of Protozoology, 1967
- Acriflavin-Induced Loss of Kinetoplast Deoxyribonucleic Acid in Crithidia fasciculata (Culex pipiens Strain)Nature, 1965