Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:1.1.1.1 (alcohol dehydrogenase)
9,284 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

VAT-1 is a major protein from Torpedo synaptic vesicles. A protein data-base search revealed a striking homology to zeta crystallin from guinea pig lens. The overall amino-acid identity is 27%, and 58% similarity is reached by including conserved substitutions. The highest similarity (60% to 85%) between the two proteins is observed in five discrete domains, which are also conserved in zinc-dependent dehydrogenases, particularly in the alcohol dehydrogenase family. The cofactor-binding domain of oxidoreductases is conserved in VAT-1 and in zeta crystallin. VAT-1 preferably binds NADPH in the presence of zinc. In contrast with its homologous proteins, VAT-1 is an integral membrane protein of synaptic vesicles.
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PMID:VAT-1 from Torpedo is a membranous homologue of zeta crystallin. 841 19

We have previously reported a genetic assay that is suitable for the study of substrate specificity of a protease in vivo, and herein present a simplified version of the method. In this procedure, expressed in Saccharomyces cerevisiae by using the constitutive alcohol dehydrogenase promoter is a fusion protein in which a transcription factor is linked to the intracellular domain of an integral membrane protein by a protease substrate sequence. Following this, a protease is expressed by using the inducible GAL promoter in the same yeast cells. The cleavage of the substrate sequence by the specific protease results in the release of the transcription factor and subsequent activation of reporter genes in nucleus. Since the expression of a protease is strictly under the control of the inducible GAL promoter, false substrate sequences that are cleaved by endogenous yeast proteases can be easily recognized and eliminated from further characterization. This suggests that the modified strategy provides an efficient tool for the analysis of substrate sequences of a protease in vivo.
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PMID:An improved strategy for a genetic assay for site-specific proteolysis. 1135 10