During cell division, mitotic chromosomes assemble and are equally distributed into two new daughter cells. The chromosome organisation of the two chromatids is essential for even distribution of genetic materials. Although the 11-nm fibre or nucleosome structure is well-understood as a fundamental fibrous structure of chromosomes, the reports on organisation of 30-nm basic chromatin fibres have been controversial, with debates on the contribution of 30-nm or thicker fibres to the higher order inner structure of chromosomes. Here, we used focused ion beam/scanning electron microscopy (FIB/SEM) to show that both 11-nm and 30-nm fibres are present in the human metaphase chromosome, although the higher-order periodical structure could not be d...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
The human body is made up of 60 trillion cells that originate from a single fertilized egg. This mea...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...
The higher-order assembly of the approximately 30 nm chromatin fibers into the characteristic morpho...
Scanning electron microscopy (SEM), as well as transmission electron microscopy (TEM), has been util...
Previous studies of the structure of metaphase chromosomes have relied heavily on electron micrograp...
Cryo-electron tomography and small-angle X-ray scattering were used to investigate the chromatin fol...
The high-order structure of metaphase chromosomes remains still under investigation, especially the ...
AbstractThe three-dimensional organization of the enormously long DNA molecules packaged within meta...
The fine structure of metaphase chromosomes and nuclei were studied by scanning electron microscopy....
The human mitotic metaphase chromosome is a product of complex chromatin restructuring during interp...
Previous studies of the structure of metaphase chromosomes have relied heavily on electron micrograp...
Mitotic chromosomes are essential structures for the faithful transmission of duplicated genomic DNA...
The structure of interphase chromosomes remains elusive after decades of research by using chemical,...
International audienceAlthough the formation of 30-nm chromatin fibers is thought to be the most bas...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
The human body is made up of 60 trillion cells that originate from a single fertilized egg. This mea...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...
The higher-order assembly of the approximately 30 nm chromatin fibers into the characteristic morpho...
Scanning electron microscopy (SEM), as well as transmission electron microscopy (TEM), has been util...
Previous studies of the structure of metaphase chromosomes have relied heavily on electron micrograp...
Cryo-electron tomography and small-angle X-ray scattering were used to investigate the chromatin fol...
The high-order structure of metaphase chromosomes remains still under investigation, especially the ...
AbstractThe three-dimensional organization of the enormously long DNA molecules packaged within meta...
The fine structure of metaphase chromosomes and nuclei were studied by scanning electron microscopy....
The human mitotic metaphase chromosome is a product of complex chromatin restructuring during interp...
Previous studies of the structure of metaphase chromosomes have relied heavily on electron micrograp...
Mitotic chromosomes are essential structures for the faithful transmission of duplicated genomic DNA...
The structure of interphase chromosomes remains elusive after decades of research by using chemical,...
International audienceAlthough the formation of 30-nm chromatin fibers is thought to be the most bas...
The detailed understanding of the nuclear cell functions requires an accurate knowledge of the spati...
The human body is made up of 60 trillion cells that originate from a single fertilized egg. This mea...
Scanning electron microscopy (SEM) proves to be an appropriate technique for imaging chromatin organ...