Abstract

The mammalian enzyme protein farnesyltransferase is a heterodimeric protein that catalyzes the addition of a farnesyl isoprenoid to a cysteine in ras proteins. Since oncogenic forms of ras proteins require the farnesyl group for transforming activity, the structure and mechanism of this enzyme are important to define. However, such studies have been difficult to approach because of the low abundance of the enzyme in mammalian tissues and hence the problems of obtaining large quantities of the protein. We report here the co-expression of the two subunits of protein farnesyltransferase by Sf9 cells infected with a recombinant baculovirus containing the coding sequences of both polypeptides. This results in the production of milligram quantities of enzyme which can be readily purified by conventional chromatographic methods. The individual subunits of the enzyme can also be expressed in the Sf9 cells, but the ability to reconstitute active enzyme from extracts containing individual subunits is quite low. In contrast, the enzyme produced by co-expression of the two subunits is fully active and retains the properties of the mammalian form, including the specificity for the COOH-terminal amino acid of substrate proteins and the ability to bind short peptides encompassing the prenylation site of a ras protein. Furthermore, through atomic absorption analysis of the purified protein, we have confirmed the previous tentative assignment of protein farnesyltransferase as a zinc metalloenzyme by demonstrating that it contains an essentially stoichiometric amount of zinc. The ability to produce and purify milligram quantities of protein farnesyltransferase readily will allow detailed mechanistic and structural studies on this enzyme.

Highlights

  • The mammalian enzyme protein farnesyltransferastehe COOH terminus of protein substrates

  • Cys-AAX, where A can be any of several X is generally either methionine or serine large quantitiesof the protein.We report here thecoexpression of the two subunits of protein farnesyl

  • Motemr’arnesyltLroantsafelnras se anc Infection of Sf9 cells withtherecombinantbaculovirus containing DNA sequences encoding both protein farnesyltransferase (PFT) subunits resulted in a dramatic enhancement of the PFT activity measured in soluble extracts prepared from transfected cells

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Summary

THEPURIFIEDPROTEINCONTAINS ZINC*

(Received for publication, November 4, 1992, and in revised form, January 4, 1993). Wen-Ji Chen$, John F. Background zinc presentin the buffer used for the gel containing the entire coding region for thePFT This background level was 4 0 % of Insertion of this 2.4-kilobase EcoRI fragment from pUC-FTB into the sample value. Immunoblot analysis was performed using antiserum Y-536, a polyclonal rabbit antibody directed against a fusion protein containing the COOH-terminal 326 expression of the PFTdimer) using a cationic liposome transfection amino acids of the rat brain PFT a subunit[16], and antiserum kit according tothe manufacturer's instructions Production and Purification of PFT-The purified recombinant matography prior to use

RESULTS
DISCUSSION
Fold purification
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