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J. Biol. Chem., Vol. 278, Issue 6, 4087-4095, February 7, 2003
From the Department of Molecular Genetics and Cell Biology, the
University of Chicago, Chicago, Illinois 60637
In the ciliate Tetrahymena
thermophila, the polypeptides stored in secretory dense core
granules (DCGs) are generated by proteolytic processing of precursors,
and the mature products assemble as a crystal. Previous observations
suggested that this maturation involves precise cleavage at distinct
motifs by a small number of enzymes. To test these inferences, we
analyzed the determinants for site-specific processing of pro-Grl1p
(Granule lattice protein 1) by complete gene
replacement with modified alleles. Contrary to the predictions of
previous models, none of the component amino acids in a putative
processing motif was necessary for targeted cleavage. Indeed, cleavage
at a range of alternative positions near the native site was
consistent with normal DCG assembly. Furthermore, substitution of other
classes of processing site motifs did not perturb DCG structure or
function. These results suggest that processing can be catalyzed by
multiple proteases, for which substrate accessibility may be the prime
determinant of site specificity. Consistent with this, inhibition of
either subtilisin or cathepsin family proteases resulted in delayed
processing of pro-Grl1p.
This paper is dedicated to the memory of Andre Adoutte, a pioneer in
the appreciation of ciliate biology whose work was a direct inspiration
for our fascination with DCG biogenesis.
To whom correspondence should be addressed: Dept. of Molecular
Genetics and Cell Biology, 920 E. 58th St., the University of Chicago,
Chicago, IL 60637. Tel.: 773-702-4374; Fax: 773-702-3172; E-mail:
apturkew@midway.uchicago.edu.
Copyright © 2003 by The American Society for Biochemistry and Molecular Biology, Inc. This article has been cited by other articles:
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