TopBP1 deficiency causes an early embryonic lethality and induces cellular senescence in primary cells
Yoon Jeon1, Eun Ko, Kyung Yong Lee
1Cancer Experimental Resources Branch, National Cancer Center, Ilsandong-gu, Goyang-si, Gyeonggi-do 410-769, Korea.
Abstract:
TopBP1 plays important roles in chromosome replication, DNA damage response, and other cellular regulatory functions in vertebrates. Although the roles of TopBP1 have been studied mostly in cancer cell lines, its physiological function remains unclear in mice and untransformed cells. We generated conditional knock-out mice in which exons 5 and 6 of the TopBP1 gene are flanked by loxP sequences. Although TopBP1-deficient embryos developed to the blastocyst stage, no homozygous mutant embryos were recovered at E8.5 or beyond, and completely resorbed embryos were frequent at E7.5, indicating that mutant embryos tend to die at the peri-implantation stage. This finding indicated that TopBP1 is essential for cell proliferation during early embryogenesis. Ablation of TopBP1 in TopBP1(flox/flox) mouse embryonic fibroblasts and 3T3 cells using Cre recombinase-expressing retrovirus arrests cell cycle progression at the G(1), S, and G(2)/M phases. The TopBP1-ablated mouse cells exhibit phosphorylation of H2AX and Chk2, indicating that the cells contain DNA breaks. The TopBP1-ablated mouse cells enter cellular senescence. Although RNA interference-mediated knockdown of TopBP1 induced cellular senescence in human primary cells, it induced apoptosis in cancer cells. Therefore, TopBP1 deficiency in untransformed mouse and human primary cells induces cellular senescence rather than apoptosis. These results indicate that TopBP1 is essential for cell proliferation and maintenance of chromosomal integrity.
Insights
TopBP1 is crucial for early embryonic development and cell proliferation. Its absence in untransformed cells leads to senescence, not apoptosis, highlighting its role in maintaining chromosomal integrity.
Area of Science:
- Cell Biology
- Developmental Biology
- Genetics
Background:
- TopBP1 is known for roles in DNA replication and damage response, primarily studied in cancer cells.
- Its physiological function in untransformed cells and during early embryogenesis is not well understood.
Purpose of the Study:
- To investigate the physiological role of TopBP1 in early mouse embryogenesis and untransformed cells.
- To determine the cellular response to TopBP1 deficiency in different cell types.
Main Methods:
- Generation of conditional TopBP1 knock-out mice using loxP-flanked exons.
- Analysis of embryonic development and cell cycle progression in TopBP1-deficient cells.
- Assessment of DNA damage markers (H2AX, Chk2) and cellular fate (senescence, apoptosis).
Main Results:
- TopBP1-deficient embryos exhibit peri-implantation lethality, indicating essentiality for early development.
- Ablation of TopBP1 in mouse fibroblasts and 3T3 cells causes cell cycle arrest and DNA damage.
- TopBP1 deficiency induces cellular senescence in untransformed mouse and human cells, but apoptosis in cancer cells.
Conclusions:
- TopBP1 is essential for cell proliferation and maintaining chromosomal integrity during early embryogenesis.
- The cellular response to TopBP1 loss differs between untransformed cells (senescence) and cancer cells (apoptosis).
- This study clarifies the physiological function of TopBP1 in normal cellular processes.
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Abnormal Proliferation
The Intrinsic Apoptotic Pathway
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