The nonchromatin proteinous residue of the cell nucleus was revealed in our laboratory as early aJs in 1948and then identified by light and electron microscoPy as residual nucleoli. intranuclear network and nuclear en...The nonchromatin proteinous residue of the cell nucleus was revealed in our laboratory as early aJs in 1948and then identified by light and electron microscoPy as residual nucleoli. intranuclear network and nuclear envelope before 1960. This structure termed afterwards as "nuclear residue", "nuclear skeleton", "nuclear cage" 3 "nuclearcarcass" etc., was much later (in 1974) isolated, studied,and entitled as "nuclear matrix" by Berezney and Coffey,to whom the discovery of this residual structure is of ten wronly ascribed. The real history of nuclear matrix manifestation is reported in this paper.展开更多
The WA ε property and g NUC ε, g NUC Banach spaces are introduced. We prove that the WA ε property is equivalent to the WBS property and the g NUC ε (resp., g NUC) spaces are equivalent to the NUC ε ...The WA ε property and g NUC ε, g NUC Banach spaces are introduced. We prove that the WA ε property is equivalent to the WBS property and the g NUC ε (resp., g NUC) spaces are equivalent to the NUC ε (resp., NUC) spaces possessing the BS property. So we obtain a characterization of the NUC ε (resp., NUC) spaces possessing the BS property.展开更多
文摘The nonchromatin proteinous residue of the cell nucleus was revealed in our laboratory as early aJs in 1948and then identified by light and electron microscoPy as residual nucleoli. intranuclear network and nuclear envelope before 1960. This structure termed afterwards as "nuclear residue", "nuclear skeleton", "nuclear cage" 3 "nuclearcarcass" etc., was much later (in 1974) isolated, studied,and entitled as "nuclear matrix" by Berezney and Coffey,to whom the discovery of this residual structure is of ten wronly ascribed. The real history of nuclear matrix manifestation is reported in this paper.
文摘The WA ε property and g NUC ε, g NUC Banach spaces are introduced. We prove that the WA ε property is equivalent to the WBS property and the g NUC ε (resp., g NUC) spaces are equivalent to the NUC ε (resp., NUC) spaces possessing the BS property. So we obtain a characterization of the NUC ε (resp., NUC) spaces possessing the BS property.