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Endocytic properties of the M-type 180-kDa receptor for secretory phospholipases A2
E Zvaritch1, G Lambeau, M Lazdunski
1Institut de Pharmacologie Moléculaire et Cellulaire, Valbonne, France.
Abstract:
Endocytic properties of the M-type 180-kDa receptor for secretory phospholipases A2 (sPLA2) were first investigated in rabbit myocytes that express it at high levels. Internalization of the receptor was shown to be clathrin-coated pit-mediated, rapid (ke = 0.1 min-1), and ligand-independent. The signal sequence for internalization was then identified upon transient and stable expression of various receptor constructs with mutated cytoplasmic sequences. Analysis of the internalization efficiency of the mutants suggested that the NSYY motif encodes the major endocytic signal, with the distal tyrosine residue playing the key role. Amino acid substitutions at the putative casein kinase II phosphorylation site of the receptor did not affect internalization. A chimeric protein composed of the extracellular and transmembrane domains of the rabbit sPLA2 receptor and of the cytoplasmic domain of the structurally homologous human macrophage mannose receptor retained the high affinity for sPLA2 and was internalization competent, exhibiting 50% endocytic activity of the M-type sPLA2 receptor. The results indicate the compatibility of the structural domains of the two parent proteins and provide evidence for the interchangeable character of their internalization signals.
Insights
The M-type 180-kDa receptor for secretory phospholipases A2 (sPLA2) is internalized via clathrin-coated pits. Its major endocytic signal, the NSYY motif, allows for interchangeable use with homologous receptors.
Area of Science:
- Cell biology
- Molecular biology
- Biochemistry
Background:
- The M-type 180-kDa receptor binds secretory phospholipases A2 (sPLA2).
- Understanding receptor endocytosis is crucial for cellular signaling and regulation.
Purpose of the Study:
- To investigate the endocytic properties of the M-type sPLA2 receptor.
- To identify the specific endocytic signal sequence within the receptor.
Main Methods:
- Investigated receptor internalization in rabbit myocytes.
- Utilized transient and stable expression of mutated receptor constructs.
- Created chimeric proteins with homologous receptor domains.
Main Results:
- Receptor internalization is clathrin-coated pit-mediated, rapid, and ligand-independent.
- The NSYY motif, particularly the distal tyrosine, acts as the major endocytic signal.
- Chimeric receptor with human mannose receptor cytoplasmic domain shows 50% endocytic activity.
Conclusions:
- The NSYY motif is the primary endocytic signal for the M-type sPLA2 receptor.
- Structural domains and internalization signals between homologous receptors are interchangeable.