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DIFFERENCES IN REUTILIZATION OF THYMIDINE IN HEMOPOIETIC AND LYMPHOPOIETIC TISSUES OF THE NORMAL MOUSE
Author(s) -
Feinendegen L. E.,
Heiniger H. J.,
Friedrich G.,
Cronkite E. P.
Publication year - 1973
Publication title -
cell proliferation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.647
H-Index - 74
eISSN - 1365-2184
pISSN - 0960-7722
DOI - 10.1111/j.1365-2184.1973.tb01648.x
Subject(s) - spleen , thymidine , haematopoiesis , bone marrow , lymph node , dna synthesis , dna , deoxyuridine , lymph , in vivo , biology , chemistry , microbiology and biotechnology , pathology , biochemistry , immunology , medicine , genetics , stem cell
Swiss Albino mice received a single i.v. injection of 3 H‐thymidine (TdR) or of 125 I‐deoxyuridine (IUdR). Bone marrow, thymus, spleen and mesenteric lymph node were examined for the efficiency of precursor incorporation into DNA, and for DNA renewal from day 1 to day 8. TdR is 5–8 times more efficiently incorporated by the different organs in vivo and in vitro than is IUdR. This indicates that the discrimination against IUdR occurs at the level of DNA synthesizing cells. A diminished DNA turnover rate measured with 3 H‐TdR in comparison with 125 I‐UdR is interpreted to indicate reutilization of TdR. TdR reutilization was observed in bone marrow and spleen from at least day 1 on, and in the thymus from day 3 on, following pulse labeling of DNA synthesizing cells. The degree of TdR reutilization appears higher in the thymus (67%) than the bone marrow (43%) and spleen (38%). The mesenteric lymph node indicates either no, or a very low efficiency of TdR reutilization. The data are also consistent with a reutilization equally efficient for TdR and IUdR. It is suggested that the TdR salvage pathway in hemopoietic tissues is largely localized to single organs which have immediate access to TdR made available by catabolism of DNA. The contribution of TdR from systemic reutilization to the organs studied falls within the limits of error of measurements. Moreover, the TdR salvage pathway especially in the lymph node may involve other DNA breakdown products than nucleosides.

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