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Differential expression of growth factors in irradiated mouse testes
1Laboratoire de Recherche sur les Communications Cellulaires en Biologie de la Reproduction, Institut National de la Santé et de la Recherche Médicale, Faculté de Médecine Lyon-Sud, BP 12, 69 921 Oullins cedex, France. mauduit@lsgrisn1.univ-lyon1.fr
Purpose:
By using as an experimental model the male mouse gonad, which contains both radiosensitive (germ) and radioresistant (somatic) cells, we have studied the growth factor (and/or receptor) expression of transforming growth factor-beta receptor (TGFbeta RI), stem cell factor (SCF), c-kit, Fas-L, Fas, tumor necrosis factor receptor (TNF R55), and leukemia inhibiting factor receptor (LIF-R) after local irradiation.
Methods And Materials:
Adult male mice were locally irradiated on the testes. Induction of apoptosis in the different testicular cell types following X-ray radiation was identified by the TdT-mediated dUTP Nick End Labeling (TUNEL) approach. Growth factor expression was evidenced by semiquantitative RT-PCR and Western blot analyses.
Results:
Apoptosis, identified through the TUNEL approach, occurred in radiosensitive testicular (premeotic) germ cells with the following kinetics: the number of apoptotic cells increased after 24 h (p < 0.001) and was maximal 48 h after a 2-Gy ionizing radiation (p < 0.001). Apoptotic cells were no longer observed 72 h after a 2-Gy irradiation. The number of apoptotic cells increased with the dose of irradiation (1-4 Gy). In the seminiferous tubules, the growth factor expression in premeiotic radiosensitive germ cells was modulated by irradiation. Indeed Fas, c-kit, and LIF-R expression, which occurs in (radiosensitive) germ cells, decreased 24 h after a 2-Gy irradiation, and the maximal decrease was observed with a 4-Gy irradiation. The decrease in Stra8 expression occurred earlier, at 4 h after a 2-Gy irradiation. In addition, a significant (p < 0.03) decrease in Stra8 mRNA levels was observed at the lowest dose used (0.5 Gy, 48 h). Moreover, concerning a growth factor receptor, such as TGFbeta RI, which is expressed both in radiosensitive and radioresistant cells, we observed a differential expression depending on the cell radiosensitivity after irradiation. Indeed, TGFbeta RI expression was increased after irradiation in interstitial radioresistant testicular cells in a dose- and time-dependent manner, while it decreased in seminiferous radiosensitive (germ cells) testicular cells. Such a differential expression between radioresistant and radiosensitive cells in TGFbeta RI levels was observed in terms of both mRNA and protein. In contrast, the growth factors specifically expressed in the somatic radioresistant (Sertoli) cells in the seminiferous tubules (SCF, Fas-L, TNF R55) were not affected by ionizing radiation (up to 4 Gy, 72 h).
Conclusion:
Growth factor expression decreased in the radiosensitive testicular cells after irradiation. Such a decrease occurred before the detection of apoptosis using the TUNEL approach. TGFbeta RI mRNA levels decreased in the radiosensitive cells, whereas it increased in the radioresistant cells, suggesting that TGFbeta RI may represent a biomarker of the intrinsic radiosensitivity of cells.
Insights
Irradiation decreases growth factor expression in radiosensitive testicular cells before apoptosis occurs. Transforming growth factor-beta receptor (TGFbeta RI) levels decrease in sensitive cells but increase in resistant cells, indicating its potential as a radiosensitivity biomarker.
Area of Science:
- Reproductive biology
- Radiation biology
- Molecular biology
Background:
- The male mouse gonad contains both radiosensitive germ cells and radioresistant somatic cells.
- Understanding cellular responses to irradiation is crucial for radiation protection and therapy.
- Growth factor and receptor expression can influence cellular radiosensitivity.
Purpose of the Study:
- To investigate the expression of specific growth factors and receptors (TGFbeta RI, SCF, c-kit, Fas-L, Fas, TNF R55, LIF-R) in testicular cells after local irradiation.
- To differentiate the cellular response based on radiosensitivity (germ vs. somatic cells).
Main Methods:
- Adult male mice testes were locally irradiated with X-rays.
- Apoptosis was detected using the TUNEL assay.
- Growth factor and receptor expression (mRNA and protein) were analyzed by semiquantitative RT-PCR and Western blot.
Main Results:
- Apoptosis was observed in radiosensitive germ cells 24-48 hours after 2-Gy irradiation, increasing with dose.
- Expression of Fas, c-kit, and LIF-R decreased in germ cells post-irradiation.
- Transforming growth factor-beta receptor (TGFbeta RI) expression decreased in radiosensitive germ cells but increased in radioresistant somatic cells, in a dose- and time-dependent manner.
- Growth factors SCF, Fas-L, and TNF R55 in somatic cells remained unaffected by irradiation.
Conclusions:
- Irradiation modulates growth factor expression in testicular cells, with decreases observed in radiosensitive germ cells prior to detectable apoptosis.
- Differential expression of TGFbeta RI in radiosensitive versus radioresistant cells suggests its potential as a biomarker for intrinsic cellular radiosensitivity.