Paralemmin, a Prenyl-Palmitoyl–anchored Phosphoprotein Abundant in Neurons and Implicated in Plasma Membrane Dynamics and Cell Process Formation
Open Access
- 2 November 1998
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 143 (3) , 795-813
- https://doi.org/10.1083/jcb.143.3.795
Abstract
We report the identification and initial characterization of paralemmin, a putative new morphoregulatory protein associated with the plasma membrane. Paralemmin is highly expressed in the brain but also less abundantly in many other tissues and cell types. cDNAs from chicken, human, and mouse predict acidic proteins of 42 kD that display a pattern of sequence cassettes with high inter-species conservation separated by poorly conserved linker sequences. Prenylation and palmitoylation of a COOH-terminal cluster of three cysteine residues confers hydrophobicity and membrane association to paralemmin. Paralemmin is also phosphorylated, and its mRNA is differentially spliced in a tissue-specific and developmentally regulated manner. Differential splicing, lipidation, and phosphorylation contribute to electrophoretic heterogeneity that results in an array of multiple bands on Western blots, most notably in brain. Paralemmin is associated with the cytoplasmic face of the plasma membranes of postsynaptic specializations, axonal and dendritic processes and perikarya, and also appears to be associated with an intracellular vesicle pool. It does not line the neuronal plasmalemma continuously but in clusters and patches. Its molecular and morphological properties are reminiscent of GAP-43, CAP-23, and MARCKS, proteins implicated in plasma membrane dynamics. Overexpression in several cell lines shows that paralemmin concentrates at sites of plasma membrane activity such as filopodia and microspikes, and induces cell expansion and process formation. The lipidation motif is essential for this morphogenic activity. We propose a function for paralemmin in the control of cell shape, e.g., through an involvement in membrane flow or in membrane–cytoskeleton interaction.Keywords
This publication has 72 references indexed in Scilit:
- Synaptic Adhesion: the Building Blocks of Memory?Neuron, 1998
- Structure of the Human Paralemmin Gene (PALM), Mapping to Human Chromosome 19p13.3 and Mouse Chromosome 10, and Exclusion of Coding Mutations ingrizzled, mocha, jittery,andhesitantMiceGenomics, 1998
- Synaptic Vesicle Endocytosis Impaired by Disruption of Dynamin-SH3 Domain InteractionsScience, 1997
- Function of Myosin-V in Filopodial Extension of Neuronal Growth ConesScience, 1996
- MARCKS deficiency in mice leads to abnormal brain development and perinatal death.Proceedings of the National Academy of Sciences, 1995
- Catalytic specificity of protein-tyrosine kinases is critical for selective signallingNature, 1995
- Two upstream cysteines and the CAAX motif but not the polybasic domain are required for membrane association of xlcaax in Xenopus oocytesBiochemistry, 1993
- The role of lipid anchors for small G proteins in membrane traffickingTrends in Cell Biology, 1992
- cDNA encoding the chicken ortholog of the mouse dilute gene product Sequence comparison reveals a myosin I subfamily with conserved C‐terminal domainsFEBS Letters, 1992
- Ultrastructural double localization of B-50/GAP43 and synaptophysin (p38) in the neonatal and adult rat hippocampusJournal of Neurocytology, 1990