4.6 Article

Membrane topologies of PEX13 and PEX14 provide new insights on the mechanism of protein import into peroxisomes

Journal

FEBS JOURNAL
Volume 286, Issue 1, Pages 205-222

Publisher

WILEY
DOI: 10.1111/febs.14697

Keywords

docking/translocation module; membrane proteins; Peroxisomes; protease-protection assays; proteoliposomes

Funding

  1. FEDER (Fundo Europeu de Desenvolvimento Regional), through COMPETE 2020 - Operacional Programme for Competitiveness and Internationalization (POCI), Portugal 2020
  2. Portuguese funds through Fundacao para a Ciencia e Tecnologia (FCT)/Ministerio da Ciencia, Tecnologia e Inovacao [POCI-01-0145-FEDER-007274, PTDC/BEX-BCM/2311/2014]
  3. Portuguese funds through Norte 2020 - Programa Operacional Regional do Norte, under the application of the 'Porto Neurosciences and Neurologic Disease Research Initiative at i3S' [NORTE-01-0145-FEDER-000008]
  4. Fundacao para a Ciencia e Tecnologia, Programa Operacional Potencial Humano do QREN
  5. Fundo Social Europeu
  6. Portuguese Mass Spectrometry Network [ROTEIRO/0028/2013, LISBOA-01-0145-FEDER-022125]
  7. Fundação para a Ciência e a Tecnologia [PTDC/BEX-BCM/2311/2014] Funding Source: FCT

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PEX13 and PEX14 are two core components of the so-called peroxisomal docking/translocation module, the transmembrane hydrophilic channel through which newly synthesized peroxisomal proteins are translocated into the organelle matrix. The two proteins interact with each other and with PEX5, the peroxisomal matrix protein shuttling receptor, through relatively well characterized domains. However, the topologies of these membrane proteins are still poorly defined. Here, we subjected proteoliposomes containing PEX13 or PEX14 and purified rat liver peroxisomes to protease-protection assays and analyzed the protected protein fragments by mass spectrometry, Edman degradation and western blotting using antibodies directed to specific domains of the proteins. Our results indicate that PEX14 is a bona fide intrinsic membrane protein with a N-in-C-out topology, and that PEX13 adopts a N-out-C-in topology, thus exposing its carboxy-terminal Src homology 3 [SH3] domain into the organelle matrix. These results reconcile several enigmatic findings previously reported on PEX13 and PEX14 and provide new insights into the organization of the peroxisomal protein import machinery.

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