Fig. 2.
Fig. 2. Rates of iron uptake and heme synthesis, SIH- and DP-interceptable Fe in reticulocytes obtained from. / mk/+ or mk/mk mice.Tf-associated Fe uptake and its subsequent utilization for heme synthesis as well as Fe release from Tf and its subsequent reduction in the endosomal lumen of mk/mk reticulocytes were investigated using Tf- labeled with 59Fe and 2 membrane permeable Fe chelators, SIH (binds Fe+++ and Fe++) and DP (binds Fe++ only). The results obtained withmk/mk reticulocytes (black bars) were compared with those obtained using reticulocytes from EPO-treated mk/+ mice (white bars). Compared to mk/+, in mk/mkreticulocytes, total cellular 59Fe uptake and the rate of heme synthesis are reduced whereas the rate of 59Fe transfer from 59Fe-Tf to DP or SIH are unchanged .

Rates of iron uptake and heme synthesis, SIH- and DP-interceptable Fe in reticulocytes obtained from

mk/+ or mk/mk mice.Tf-associated Fe uptake and its subsequent utilization for heme synthesis as well as Fe release from Tf and its subsequent reduction in the endosomal lumen of mk/mk reticulocytes were investigated using Tf- labeled with 59Fe and 2 membrane permeable Fe chelators, SIH (binds Fe+++ and Fe++) and DP (binds Fe++ only). The results obtained withmk/mk reticulocytes (black bars) were compared with those obtained using reticulocytes from EPO-treated mk/+ mice (white bars). Compared to mk/+, in mk/mkreticulocytes, total cellular 59Fe uptake and the rate of heme synthesis are reduced whereas the rate of 59Fe transfer from 59Fe-Tf to DP or SIH are unchanged .

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