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P Odgren

Publications and source records attributed to P Odgren.

3 recordsLinked to original sources

Cell cycle-dependent modifications in activities of pRb-related tumor suppressors and proliferation-specific CDP/cut homeodomain factors in murine hematopoietic progenitor cells.

The histone H4 gene promoter provides a paradigm for defining transcriptional control operative at the G1/S phase transition point in the cell cycle. Transcription of the cell cycle-dependent histone H4 gene is upregulated at the onset of S phase, and the cell cycle control element that mediates this activation has been functionally mapped to a proximal promoter domain designated Site II. Activity of Site II is regulated by an E2F-independent mechanism involving binding of the oncoprotein IRF2 and the multisubunit protein HiNF-D, which contains the homeodomain CDP/cut, CDC2, cyclin A, and the tumor suppressor pRb. To address mechanisms that define interactions of Site II regulatory factors with this cell cycle control element, we have investigated these determinants of transcriptional regulation at the G1/S phase transition in FDC-P1 hematopoietic progenitor cells. The representation and activities of histone gene regulatory factors were examined as a function of FDC-P1 growth stimulation. We find striking differences in expression of the pRb-related growth regulatory proteins (pRb/p105, pRb2/p130, and p107) following the onset of proliferation. pRb2/p130 is present at elevated levels in quiescent cells and declines following growth stimulation. By contrast, pRb and p107 are minimally represented in quiescent FDC-P1 cells but are upregulated at the G1/S phase transition point. We also observe a dramatic upregulation of the cellular levels of pRb2/p130-associated protein kinase activity when S phase is initiated. Selective interactions of pRb and p107 with CDP/cut are observed during the FDC-P1 cell cycle and suggest functional linkage to competency for DNA binding and/or transcriptional activity. These results are particularly significant in the context of hematopoietic differentiation where stringent control of the cell cycle program is requisite for expanding the stem cell population during development and tissue renewal.

Animals↗

Decreased amount of the Rh antigen D in hereditary spherocytosis (HS).

This study was done to determine whether hereditary spherocytosis (HS) red blood cells (RBC) have decreased amounts of Rh antigens. Initially we studied the RBC of five members of one family, two of whom had HS. Using automated quantitative haemagglutination tests, we demonstrated that HS RBC agglutinated less with Rh antisera of four specificities than did normal RBC, indicating that Rh antigens are decreased on HS RBC. In this family, the strength of other blood group antigens on HS RBC was estimated by manual titres and agglutination scores. No appreciable differences in the agglutination of HS and normal RBC were observed with non-Rh antisera. To assess the strength of the D antigen more accurately, the number of D sites was quantitated on the RBC of 19 individuals with HS and 11 of their healthy relatives. HS RBC had 9209 +/- 4084 (mean +/- SD) D sites, whereas the normal RBC had 15 394 +/- 5763 D sites. These two means were significantly different (P less than 0.01). HS RBC were also compared to normal RBC of unrelated individuals who had the same Rh phenotype. These analyses showed that HS RBC had about half of the normal number of D sites. Our data indicate that HS red cells have decreased amount of the Rh antigen D and probably also of other Rh antigens.

Female↗