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GGTase3 is a newly identified geranylgeranyltransferase targeting a ubiquitin ligase.


ABSTRACT: Protein prenylation is believed to be catalyzed by three heterodimeric enzymes: FTase, GGTase1 and GGTase2. Here we report the identification of a previously unknown human prenyltransferase complex consisting of an orphan prenyltransferase ?-subunit, PTAR1, and the catalytic ?-subunit of GGTase2, RabGGTB. This enzyme, which we named GGTase3, geranylgeranylates FBXL2 to allow its localization at cell membranes, where this ubiquitin ligase mediates the polyubiquitylation of membrane-anchored proteins. In cells, FBXL2 is specifically recognized by GGTase3 despite having a typical carboxy-terminal CaaX prenylation motif that is predicted to be recognized by GGTase1. Our crystal structure analysis of the full-length GGTase3-FBXL2-SKP1 complex reveals an extensive multivalent interface specifically formed between the leucine-rich repeat domain of FBXL2 and PTAR1, which unmasks the structural basis of the substrate-enzyme specificity. By uncovering a missing prenyltransferase and its unique mode of substrate recognition, our findings call for a revision of the 'prenylation code'.

SUBMITTER: Kuchay S 

PROVIDER: S-EPMC6609460 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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GGTase3 is a newly identified geranylgeranyltransferase targeting a ubiquitin ligase.

Kuchay Shafi S   Wang Hui H   Marzio Antonio A   Jain Kunj K   Homer Harrison H   Fehrenbacher Nicole N   Philips Mark R MR   Zheng Ning N   Pagano Michele M  

Nature structural & molecular biology 20190617 7


Protein prenylation is believed to be catalyzed by three heterodimeric enzymes: FTase, GGTase1 and GGTase2. Here we report the identification of a previously unknown human prenyltransferase complex consisting of an orphan prenyltransferase α-subunit, PTAR1, and the catalytic β-subunit of GGTase2, RabGGTB. This enzyme, which we named GGTase3, geranylgeranylates FBXL2 to allow its localization at cell membranes, where this ubiquitin ligase mediates the polyubiquitylation of membrane-anchored prote  ...[more]

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