The spin exchange interactions of the magnetic oxides Ba3Cr2O8, Ba3Mn2O8, Na4FeO4, and Ba2CoO4 with a three-dimensional network of isolated MO4 (M = Cr, Mn, Fe, Co) tetrahedra were examined by performing spin dimer analysis on the basis of tight-binding electronic structure calculations. Although the shortest O...O distances between adjacent MO4 tetrahedra are longer than the van der Waals distance, our analysis shows that the super-superexchange interactions between adjacent MO4 tetrahedra are substantial and determine the magnetic structures of these oxides. In agreement with experiment, our analysis predicts a weakly interacting isolated AFM dimer model for both Ba3Cr2O8 and Ba3Mn2O8, the (0.0, 0.5, 0.0) magnetic superstructure for Na4FeO4, the (0.5, 0.0, 0.5) magnetic superstructure for Ba2CoO4, and the presence of magnetic frustration in Ba2CoO4. The comparison of the intra- and interdimer spin exchange interactions of Ba3Cr2O8 and Ba3Mn2O8 indicates that orbital ordering should be present in Ba3Cr2O8.
The tumor suppressor
p53
is involved in the DNA damage response and induces cell cycle arrest or apoptosis upon DNA damage.
Drosophila p53
encodes two isoforms,
p53A
and
p53B
, that induce apoptosis in somatic cells. To investigate the roles of
Drosophila p53
isoforms in female germline cells, the DNA damage response was analyzed in the adult ovary. Early oogenesis was sensitive to irradiation and
lok
-,
p53
-, and
hid
-dependent cell death occurred rapidly after both low- and high-dose irradiation. Both
p53
isoforms were responsible for this cell death. On the other hand, delayed cell death in mid-oogenesis was induced at a low level only after high-dose irradiation in a
p53
-independent manner. The daily egg production, which did not change after low-dose irradiation, was severely reduced after high-dose irradiation in
p53
mutant females due to the loss of germline stem cells. When the
p53A
or
p53B
isoform was expressed in the germline cells in the
p53
mutant females at levels that do not affect normal oogenesis,
p53A
, but not
p53B
, restored the fertility of the irradiated female. In summary, moderate expression of
p53A
is critical to maintain the function of germline stem cells during normal oogenesis as well as after high-dose irradiation.
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