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Reconstitution of Basic Mitotic Spindles in Spherical Emulsion Droplets
Published on: August 13, 2016
PBC68: a nuclear pore complex protein that associates reversibly with the mitotic spindle
P A Theodoropoulos1, H Polioudaki, M Koulentaki
1Department of Basic Sciences and Department of Internal Medicine, The University of Crete, School of Medicine, Crete, Greece. georgato@med.uoc.gr
Insights
Researchers identified a novel nuclear envelope protein, PBC68, crucial for cell division. This protein dynamically interacts with the mitotic spindle, aiding nuclear envelope reassembly after mitosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The nuclear envelope plays a critical role in cellular organization and function.
- Understanding the dynamic behavior of nuclear envelope proteins during cell division is essential.
Purpose of the Study:
- To identify and characterize novel nuclear envelope proteins involved in mitosis.
- To elucidate the dynamic localization and function of the identified protein during cell division.
Main Methods:
- Utilized autoimmune antibodies from primary biliary cirrhosis patients.
- Performed co-immunoprecipitation, immunostaining, indirect immunofluorescence, and immunoelectron microscopy.
- Tracked protein localization during various stages of mitosis.
Main Results:
- Identified a 68 kDa nuclear envelope protein (PBC68) distinct from nuclear lamins.
- PBC68 localizes to the inner nuclear envelope and fibrillar structures of the nuclear pore complex.
- PBC68 disassembles during prometaphase, binds to the mitotic spindle, and reassembles onto the reforming nuclear envelope in telophase.
Conclusions:
- Nuclear envelope proteins are actively sorted during mitosis via transient anchoring to spindle microtubules.
- Specific nuclear pore complex constituents are released stepwise for nuclear reassembly.
Abstract:
Using autoimmune antibodies from a patient with primary biliary cirrhosis we have identified a 68 kDa nuclear envelope protein, termed PBC68. This protein is co-precipitated with a 98 kDa and a 250 kDa polypeptide and is distinct from the nuclear lamins. Immunostaining of digitonin-permeabilized cells indicates that PBC68 is restricted to the inner (nucleoplasmic) face of the nuclear envelope, while indirect immunofluorescence and immunoelectron microscopy show that PBC68 is located on fibrillar structures emanating from the nuclear pore complex. The autoantigen is modified at early prophase and disassembles at prometaphase concurrently with the breakdown of the nuclear envelope. The disassembled material, instead of diffusing throughout the cytoplasm as other nucleoporins, is targeted to the mitotic spindle and remains stably bound to it until anaphase. At telophase PBC68 is released from the mitotic apparatus and reassembles late, after incorporation of LAP2B and B-type lamins, onto the reforming nuclear envelope. The partitioning of PBC68 in dividing cells supports the notion that subsets of nuclear envelope proteins are actively sorted during mitosis by transiently anchoring to spindle microtubules. Furthermore, the data suggest that specific constituents of pore complex are released in a stepwise fashion from their anchorage sites before becoming available for nuclear reassembly.
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