4.5 Article

Deletional analysis of the rod photoreceptor cell peripherin/RDS carboxy-terminal region

Journal

EXPERIMENTAL EYE RESEARCH
Volume 75, Issue 2, Pages 143-154

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1006/exer.2002.2013

Keywords

rods; outer segments; membrane fusion; peripherin/rds; rom-1

Categories

Funding

  1. NCRR NIH HHS [S10 RR026365, S10 RR026365-01] Funding Source: Medline
  2. NEI NIH HHS [R01 EY010420, R01 EY010420-08, R01 EY010420-13A2, R01 EY010420-10A2, R01 EY010420-16, R01 EY010420-09, R21 EY018705-02, R01 EY010420-07, R29 EY010420-03, R01 EY010420-06, R01 EY010420-14, R01 EY010420-12, R01 EY010420-15, R21 EY018705-01A1, EY10420, R21 EY018705, EY12266, R29 EY010420, R01 EY010420-11] Funding Source: Medline
  3. PHS HHS [GA97099] Funding Source: Medline

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The C-terminal region of peripherin/rds contains three predicted alpha-helical domains. One of these domains, corresponding to amino acids 311-322, form an amphiphilic alpha-helix previously shown to promote membrane fusion. The present studies were conducted to determine how the additional alpha-helical regions of the peripherin/rds C-terminus affect complex formation with rom-1, glycosylation, intracellular localization and membrane fusion properties. Bovine peripherin/rds and rom-1 were epitope tagged with an amino-terminal FLAG-tag or amino-terminal hemagglutinin (HA)-tag, respectively, and cloned into the pCI-neo expression vector for transient transfection into COS cells. Similarly, four C-terminal peripherin/rds truncation mutants (Delta1, Delta2, Delta3 and Delta4), corresponding to deletions of -19, -29, -39 and -59 amino acids were designed to disrupt the alpha-helical domains. Immunofluorescence microscopy and enzymatic digestions demonstrated that full-length peripherin/rds and the four C-terminal deletion mutants were localized to intracellular membranes and were all Endo-H sensitive. Western blotting and immunoprecipitation studies showed that the FLAG-tagged bovine peripherin/rds (full-length) was expressed as a 76 kDa dimer, which associates with HA-tagged rom-1 to form a higher order complex. The deletion mutants were also able to associate with rom-1. However, when analyzed using non-denaturing tricine electrophoresis, full-length peripherin/rds and the Delta1, Delta2 and Delta3 mutants formed homo-oligomeric complexes, while the Delta4 mutant appeared to form only homodimers suggesting a region upstream of amino acid 300 may be involved in C-terminal interactions. Membrane fusion was then evaluated using fluorescence resonance energy transfer (RET) techniques. Intracellular COS cell membranes containing full-length peripherin/rds fused with rod outer segment plasma membrane vesicles. This fusion was inhibited with the addition of a synthetic peptide (PP-5) corresponding. to the fusion domain of peripherin/rds. In contrast, fusion was negligible with any of the C-terminal truncation mutants. Collectively, these results suggest that in addition to the fusion domain, other regions of the peripherin/rds C-terminus are required for fusion. Most interesting is the observation that the last 19 amino acids, a region downstream of the fusion peptide that is deleted in the Delta1 mutant, appear to be necessary for fusion. This region corresponds to the epitope for anti-peripherin/rds monoclonal antibody 2B6, which is shown to partially inhibit peripherin/rds mediated membrane fusion. (C) 2002 Elsevier Science Ltd.

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