Cooperative interactions of LPPR family members in membrane localization and alteration of cellular morphology.

Abstract:

:The lipid phosphate phosphatase-related proteins (LPPRs), also known as plasticity-related genes (PRGs), are classified as a new brain-enriched subclass of the lipid phosphate phosphatase (LPP) superfamily. They induce membrane protrusions, neurite outgrowth or dendritic spine formation in cell lines and primary neurons. However, the exact roles of LPPRs and the mechanisms underlying their effects are not certain. Here, we present the results of a large-scale proteome analysis to determine LPPR1-interacting proteins using co-immunoprecipitation coupled to mass spectrometry. We identified putative LPPR1-binding proteins involved in various biological processes. Most interestingly, we identified the interaction of LPPR1 with its family member LPPR3, LPPR4 and LPPR5. Their interactions were characterized by co-immunoprecipitation and colocalization analysis using confocal and super-resolution microscopy. Moreover, co-expressing two LPPR members mutually elevated their protein levels, facilitated their plasma membrane localization and resulted in an increased induction of membrane protrusions as well as the phosphorylation of S6 ribosomal protein. Taken together, we revealed a new functional cooperation between LPPR family members and discovered for the first time that LPPRs likely exert their function through forming complex with its family members.

journal_name

J Cell Sci

journal_title

Journal of cell science

authors

Yu P,Agbaegbu C,Malide DA,Wu X,Katagiri Y,Hammer JA,Geller HM

doi

10.1242/jcs.169789

subject

Has Abstract

pub_date

2015-09-01 00:00:00

pages

3210-22

issue

17

eissn

0021-9533

issn

1477-9137

pii

jcs.169789

journal_volume

128

pub_type

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