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A Zaraisky

Publications and source records attributed to A Zaraisky.

3 recordsLinked to original sources

"Fluorescent timer": protein that changes color with time.

We generated a mutant of the red fluorescent protein drFP583. The mutant (E5) changes its fluorescence from green to red over time. The rate of color conversion is independent of protein concentration and therefore can be used to trace time-dependent expression. We used in vivo labeling with E5 to measure expression from the heat shock-dependent promoter in Caenorhabditis elegans and from the Otx-2 promoter in developing Xenopus embryos. Thus, E5 is a "fluorescent timer" that can be used to monitor both activation and down-regulation of target promoters on the whole-organism scale.

Animals↗

Inductive interactions regulating body patterning in planarian, revealed by analysis of expression of novel gene scarf.

Subtractive hybridization was used to search for the early difference in gene expression between anteriorly and posteriorly regenerating tissues of the same region of the planarian body. A sequence (named scarf) specific for posteriorly regenerating tissue was isolated, encoding a soluble C-type lectin consisting of two slightly different carbohydrate-recognition domains. Such an unusual bivalent structure allows attribution of the protein to a novel subfamily of C-type lectins. scarf expression in intact planarian is rather abundant and follows a characteristic pattern not linked to any known morphological structure. We performed a series of experiments using scarf as a molecular marker. Its expression was monitored during different types of regeneration by whole-mount in situ hybridization and reverse-transcription polymerase chain reaction. The obtained data suggest that scarf expression is positively regulated by anterior tissues closely adjacent to the scarf-expressing region, so that their surgical removal results in rapid scarf switch-off. In turn, tissues expressing scarf seem to inhibit its activation anteriorly. This indicates that at least some of the body patterning events in planarians are based on a system of reciprocal inductive interactions rather than on a global morphogen gradient.

Amino Acid Sequence↗

A novel TGF-beta-like gene, fugacin, specifically expressed in the Spemann organizer of Xenopus.

Using a differential screening strategy, we have cloned a novel Xenopus gene, fugacin, related to the transforming growth factor beta superfamily. Transcripts were detected primarily in the dorsal marginal zone of late blastula. Thereafter, they became highly localized to the blastopore lip of early gastrula and were not observed at later stages. This gene, which is most homologous to the mouse gene nodal, displays a new pattern of cysteine residues. These findings highlight the potential role of these growth factors during early vertebrate development.

Amino Acid Sequence↗