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A thin-section and freeze-fracture study of microfilament-membrane attachments in choroid plexus and intestinal
Abstract:
Choroid plexus and intestinal microvilli in thin sections have microfilaments in the cytoplasm adjacent to the membranes, and in replicas have broken strands of filaments in both cytoplasm and on E faces of plasm membranes. The microfilaments contain actin as indicated by their binding of heavy meromyosin (HMM). In sections of choroid plexus, the microfilaments are 7-8 nm in diameter and form a loose meshwork which lies parallel to the membrane and which is connected to the membranes both by short, connecting filaments (8 times 30 nm) and dense globules (approximately 15-20 nm). The filamentous strands seen in replicas are approximately 8 nm in diameter. Because they are similar in diameter and are connected to the membrane, these filamentous strands seen in replicas apparently represent the connecting structures, portions of the microfilaments, or both. The filamentous strands attached to the membrane are usually associated with the E face and appear to be pulled through the P half-membrane. In replicas of intestinal brush border microvilli, the connecting strands attaching core microfilaments to the membrane are readily visualized. In contrast, regions of attachment of core microfilaments to dense material at the tips of microvilli are associated with few particles on P faces and with few filamentous strands on the E faces of the membranes. Freeze-fracture replicas suggest a morphologically similar type of connecting strand attachment for microfilament-membrane binding in both choroid plexus and intestinal microvilli, despite the lack of a prominent core bundle of microfilaments in choroid plexus microvilli.
Insights
Microfilaments containing actin connect membranes in both the choroid plexus and intestinal microvilli. These actin-rich structures, identified by heavy meromyosin binding, show similar attachment mechanisms across these tissues.
Area of Science:
- Cell Biology
- Biochemistry
Background:
- Microfilaments are crucial cytoskeletal components involved in cellular structure and function.
- Actin microfilaments play key roles in cell adhesion and membrane organization.
Purpose of the Study:
- To investigate the presence and nature of microfilaments associated with the membranes of choroid plexus and intestinal microvilli.
- To characterize the structural connections between actin microfilaments and cellular membranes in these tissues.
Main Methods:
- Thin section electron microscopy to visualize microfilaments.
- Heavy meromyosin (HMM) binding assay to identify actin.
- Freeze-fracture electron microscopy to analyze membrane structures and filament attachments.
Main Results:
- Actin-containing microfilaments (7-8 nm diameter) are present adjacent to membranes in choroid plexus and intestinal microvilli.
- These microfilaments form connections with membranes via filamentous strands and dense globules.
- Freeze-fracture replicas reveal similar microfilament-membrane attachment mechanisms in both tissues, despite differences in core filament organization.
Conclusions:
- Actin microfilaments are involved in membrane association in both choroid plexus and intestinal microvilli.
- A conserved mechanism of microfilament-membrane attachment exists in these distinct epithelial tissues.
- The findings provide insights into the structural basis of epithelial cell polarity and function.