Structural evidence for dimerization-regulated activation of an integral membrane phospholipase.

Article Details

Citation

Snijder HJ, Ubarretxena-Belandia I, Blaauw M, Kalk KH, Verheij HM, Egmond MR, Dekker N, Dijkstra BW

Structural evidence for dimerization-regulated activation of an integral membrane phospholipase.

Nature. 1999 Oct 14;401(6754):717-21.

PubMed ID
10537112 [ View in PubMed
]
Abstract

Dimerization is a biological regulatory mechanism employed by both soluble and membrane proteins. However, there are few structural data on the factors that govern dimerization of membrane proteins. Outer membrane phospholipase A (OMPLA) is an integral membrane enzyme which participates in secretion of colicins in Escherichia coli. In Campilobacter and Helicobacter pylori strains, OMPLA is implied in virulence. Its activity is regulated by reversible dimerization. Here we report X-ray structures of monomeric and dimeric OMPLA from E. coli. Dimer interactions occur almost exclusively in the apolar membrane-embedded parts, with two hydrogen bonds within the hydrophobic membrane area being key interactions. Dimerization results in functional oxyanion holes and substrate-binding pockets, which are absent in monomeric OMPLA. These results provide a detailed view of activation by dimerization of a membrane protein.

DrugBank Data that Cites this Article

Polypeptides
NameUniProt ID
Phospholipase A1P0A921Details