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B
From the Department of Pathology and Laboratory Medicine, Brown University, Providence, Rhode Island.
| Correspondence to: Dr Kim Boekelheide, Department of Pathology and Laboratory Medicine, 70 Ship Street, Box G-E504, Brown University, Providence, RI 02903 (e-mail: kim_boekelheide{at}brown.edu). |
B knockdown mice through floxed I
B kinaseß. We observed a
LoxP gene recombination rate of approximately 43% using Sycp1-Cre, as
determined by offspring genotype. In addition, we confirm that, with multiple
generations, the LoxP sites fail to recombine due to epigenetic modification.
This detailed examination of the meiotic Sycp1-Cre recombinase activity
highlights the obstacles to germ cellspecific gene inhibition through
Cre/LoxP technology in the testis. Taken together, these data demonstrate a
need for early spermatogonial expression of Cre recombinase, as an alternative
to meiotic Cre expression, for the creation of germ cellspecific
knockout mice.
Key words: Testis, Cre/LoxP, spermatogenesis
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