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J Biol Chem, Vol. 274, Issue 9, 5557-5563, February 26, 1999
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From the The low density lipoprotein receptor-related
protein-2/megalin (LRP-2) is an endocytic receptor that is expressed on
the apical surfaces of epithelial cells lining specific regions of the
male and female reproductive tracts. In the present study,
immunohistochemical staining revealed that LRP-2 is also expressed by
epithelial cells lining the ductal region and the ampulla of the rat
seminal vesicle. To identify LRP-2 ligands in the seminal vesicle, we
probed seminal vesicle fluid with 125I-labeled LRP-2
in a gel-blot overlay assay. A 100-kDa protein (under non-reducing
conditions) was found to bind the radiolabeled receptor. The protein
was isolated and subjected to protease digestion, and the proteolytic
fragments were subjected to mass spectroscopic sequence analysis. As a
result, the 100-kDa protein was identified as the seminal vesicle
secretory protein II (SVS-II), a major constituent of the seminal
coagulum. Using purified preparations of SVS-II and LRP-2, solid-phase
binding assays were used to show that the SVS-II bound to the receptor
with high affinity (Kd = 5.6 nM). The
binding of SVS-II to LRP-2 was inhibited using a known antagonist of
LRP-2 function, the 39-kDa receptor-associated protein RAP. Using a
series of recombinant subfragments of SVS-II, the LRP-2 binding site
was mapped to a stretch of repeated 13-residue modules located in the
central portion of the SVS-II polypeptide. To evaluate the ability of
LRP-2 to mediate 125I-SVS-II endocytosis and lysosomal
degradation, ligand clearance assays were performed using
differentiated mouse F9 cells, which express high levels of LRP-2.
Radiolabeled SVS-II was internalized and degraded by the cells, and
both processes were inhibited by antibodies to LRP-2 or by RAP. The
results indicate that LRP-2 binds SVS-II and can mediate its
endocytosis leading to lysosomal degradation.
Cell Biology and Anatomy Department, Medical
University of South Carolina, Charleston, South Carolina 29425-2204 and the § Department of Anatomy and Cell Biology, McGill
University, Montreal, Quebec H3A 2B2, Canada
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