Fritz: a secreted frizzled-related protein that inhibits Wnt activity
Signaling molecules of the Wnt gene family are involved in the regulation of dorso-ventral, segmental and tissue polarity in Xenopus and Drosophila embryos. Members of the frizzled gene family, such as Drosophila frizzled-2 and rat frizzled-l, have been shown to encode Wnt binding activity and to en...
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Veröffentlicht in: | Mechanisms of development 1997-04, Vol.63 (1), p.109-125 |
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Sprache: | eng |
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Zusammenfassung: | Signaling molecules of the Wnt gene family are involved in the regulation of dorso-ventral, segmental and tissue polarity in
Xenopus and
Drosophila embryos. Members of the
frizzled gene family, such as
Drosophila frizzled-2 and rat
frizzled-l, have been shown to encode Wnt binding activity and to engage intracellular signal transduction molecules known to be part of the Wnt signaling pathway. Here we describe the cloning and characterization of
Fritz, a mouse (
mfiz) and human
(hfiz) gene which codes for a secreted protein that is structurally related to the extracellular portion of the
frizzled genes from
Drosophila and vertebrates. The Fritz protein antagonizes Wnt function when both proteins are ectopically expressed in
Xenopus embryos. In early gastrulation, mouse
fiz mRNA is expressed in all three germ layers. Later in embryogenesis
fiz mRNA is found in the central and peripheral nervous systems, nephrogenic mesenchyme and several other tissues, all of which are sites where Wnt proteins have been implicated in tissue patterning. We propose a model in which Fritz can interfere with the activity of Wnt proteins via their cognate frizzled receptors and thereby modulate the biological responses to Wnt activity in a multitude of tissue sites. |
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ISSN: | 0925-4773 1872-6356 |
DOI: | 10.1016/S0925-4773(97)00035-X |