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XB-ART-8656
Genes Cells 2001 Jul 01;67:599-606. doi: 10.1046/j.1365-2443.2001.00444.x.
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BIP, a BRAM-interacting protein involved in TGF-beta signalling, regulates body length in Caenorhabditis elegans.

Sugawara K , Morita K , Ueno N , Shibuya H .


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BACKGROUND: The TGF-beta superfamily has diverse biological activities and is involved in the early development of animals. We previously identified a novel family member, BMP receptor associated molecule (BRAM), which binds to the intracellular domain of BMP type IA receptor and is involved in the BMP signalling pathway. RESULTS: To identify novel molecules involved in TGF-beta signalling pathways, we performed yeast two-hybrid screening using BRAM as bait. From a Xenopus cDNA library, we cloned a cDNA encoding 693 amino acids and containing the motif for an oxysterol binding protein (OSBP), which we designated BRAM interacting protein (BIP). We then isolated a BIP homologue from the Caenorhabditis elegans that encodes 733 amino acids and also contains the OSBP-like motif. Immunoprecipitation and Western blotting studies revealed that C. elegans BIP could interact with the C. elegans BRAM homologues BRA-1 and BRA-2. C. elegans BIP was expressed in pharyngeal muscle, hypodermis and several neuronal cells, an expression pattern overlaps with those of BRA-1 and BRA-2. Finally, we found that inhibition of BIP expression in C. elegans by double stranded RNA interference produces a Sma phenotype. CONCLUSIONS: BIP was isolated using the yeast two-hybrid systems. BIP may function in the TGF-beta pathway and regulate body length in C. elegans.

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Species referenced: Xenopus
Genes referenced: acta2 hspa5 osbp osbpl8 tbxt tgfb1


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