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Genes to Cells (2005) 10, 345-356. doi:10.1111/j.1365-2443.2005.00838.x
© 2005 Blackwell Publishing or its licensors

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Generation of an antibody specific to Xenopus fertilized eggs by subtractive immunization

Keiichi Sakakibara1, Ken-ichi Sato2,*, Tetsushi Iwasaki2, Kazuyuki Kitamura3 and Yasuo Fukami1,2

1 Graduate School of Science and Technology, and 2 Research Center for Environmental Genomics, Kobe University, Kobe 657-8501, Japan
3 Yanaihara Institute, Fujinomiya 418-0011, Japan

Here we report the generation and characterization of a monoclonal antibody, mAb 5H7-G1, which recognizes egg antigens in the animal cortex of fertilized, but not unfertilized, Xenopus eggs. The mAb 5H7-G1 was generated by subtractive immunization of mice: primary immunization with unfertilized egg extract followed by immunosuppression treatment with cyclophosphamide and repeated immunization with fertilized egg extract. In immunoblotting analysis, mAb 5H7-G1 recognizes multiple protein bands of fertilized (but not unfertilized or the ionophore-activated) Xenopus eggs. N-linked polysaccharide is most likely the target of mAb 5H7-G1 because immunoreactivity of mAb 5H7-G1 is effectively diminished when protein samples are treated with N-glycosidase F. Moreover, mAb 5H7-G1 recognizes some, but not all, tyrosine-phosphorylated proteins in eggs treated with H2O2, an artificial activator of the egg tyrosine kinase Src, suggesting that these proteins also contain N-linked sugars. When microinjected into fertilized Xenopus embryos, mAb 5H7-G1 causes a retardation or complete inhibition of first cell cleavage, suggesting that the mAb 5H7-G1-reactive antigens play an important role in this event. These results demonstrate that mAb 5H7-G1 is useful to analyze differential proteome display during fertilization and early development. More generally, subtractive immunization may work as a strategy to uncover cellular events that operate during different cellular conditions of interest.


Communicated by: Yoshimi Takai

* Correspondence: E-mail: kksato{at}kobe-u.ac.jp




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[Abstract] [Full Text] [PDF]




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