4.3 Article

Microarray Analysis of Differentially Expressed Genes in the Kidneys and Testes of Mice after Long-term Irradiation with Low-dose-rate γ-rays

Journal

JOURNAL OF RADIATION RESEARCH
Volume 50, Issue 3, Pages 241-252

Publisher

OXFORD UNIV PRESS
DOI: 10.1269/jrr.09011

Keywords

Kidney; Testis; Low-dose-rate radiation; Microarray; Mitochondrial oxidative phosphorylation

Funding

  1. Aomori Prefectural Government, Japan.

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Measuring global gene expression using cDNA or oligonucleotide microarrays is an effective approach to understanding the complex mechanisms of the effects of radiation. However, few studies have been carried out that investigate gene expression in vivo after prolonged exposure to low-dose-rate radiation. In this study, C57BL/6J mice were continuously irradiated with gamma-rays for 485 days at dose-rates of 0.032-13 mu Gy/min. Gene expression profiles in the kidney and testis froth irradiated and unirradiated mice were analyzed, and differentially expressed genes were identified. A combination of pathway analysis and hierarchical clustering of differentially expressed genes revealed that expression of genes involved in mitochondrial oxidative phosphorylation was elevated in the kidney after irradiation at the dose-rates of 0.65 mu Gy/min and 13 mu Gy/min. Expression of cell cycle-associated genes was not profoundly modulated in the kidney, in contrast to the response to acute irradiation, suggesting a threshold in the dose-rate for modulation of the expression of cell cycle-related genes in vivo following exposure to radiation. We demonstrated that changes to the gene expression profile in the testis were largely different froth those in the kidney. The Gene Ontology categories DNA metabolism, response to DNA damage and DNA replication overlapped significantly with the clusters of genes whose expression decreased with an increase in the dose-rate to the testis. These observations provide a fundamental insight into the organ-specific responses to low-dose-rate radiation.

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