Literature DB >> 15885112

Evaluation of geranylazide and farnesylazide diphosphate for incorporation of prenylazides into a CAAX box-containing peptide using protein farnesyltransferase.

M W Rose1, N D Rose, J Boggs, S Lenevich, J Xu, G Barany, M D Distefano.   

Abstract

Protein farnesyltransferase (PFTase) catalyzes the attachment of a geranylazide (C10) or farnesylazide (C15) moiety from the corresponding prenyldiphosphates to a model peptide substrate, N-dansyl-Gly-Cys-Val-Ile-Ala-OH. The rates of incorporation for these two substrate analogs are comparable and approximately twofold lower than that using the natural substrate farnesyl diphosphate (FPP). Reaction of N-dansyl-Gly-Cys(S-farnesylazide)-Val-Ile-Ala-OH with 2-diphenylphosphanylbenzoic acid methyl ester then gives a stable alkoxy-imidate linked product. This result suggests future generations whereby azide groups introduced using this enzymatic approach are functionalized using a broad range of azide-reactive reagents. Thus, chemistry has been developed that could be used to achieve highly specific peptide and protein modification. The farnesylazide analog may be useful in certain biological studies, whereas the geranylazide group may be more useful for general protein modification and immobilization.

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Year:  2005        PMID: 15885112     DOI: 10.1111/j.1399-3011.2005.00261.x

Source DB:  PubMed          Journal:  J Pept Res        ISSN: 1397-002X


  22 in total

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7.  Analogs of farnesyl diphosphate alter CaaX substrate specificity and reactions rates of protein farnesyltransferase.

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8.  Farnesyl diphosphate analogues with omega-bioorthogonal azide and alkyne functional groups for protein farnesyl transferase-catalyzed ligation reactions.

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9.  Purification of prenylated proteins by affinity chromatography on cyclodextrin-modified agarose.

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10.  Simultaneous Site-Specific Dual Protein Labeling Using Protein Prenyltransferases.

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Journal:  Bioconjug Chem       Date:  2015-12-04       Impact factor: 4.774

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