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PMID: 2832233 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, P.H.S. Review

Sugar permeases of the bacterial phosphoenolpyruvate-dependent phosphotransferase system: sequence comparisons.

Saier MH, Yamada M, Erni B, Suda K, Lengeler J, Ebner R, Argos P, Rak B, Schnetz K, Lee CA

Abstract

The amino acyl sequences of eight permeases (enzymes II and enzyme II-III pairs) of the bacterial phosphoenolpyruvate:sugar phosphotransferase system (PTS) have been analyzed. All systems show similar sizes, and six of these systems exhibit the same molecular weight +/- 2%. Several exhibit sequence homology. Characteristic NH2-terminal and COOH-terminal sequences were found. The NH2-terminal leader sequences are believed to function in targeting of the permeases to the membrane, whereas the characteristic COOH-terminal sequences are postulated to mediate interaction with the energy-coupling protein phospho HPr. One of the systems, the one specific for mannose, exhibits distinctive characteristics. A pair of probable phosphorylation sites was detected in each of the five most similar systems, those specific for beta-glucosides, sucrose, glucose, N-acetylglucosamine, and mannitol. One of the two equivalent phosphorylation sites (proposed phosphorylation site 1) was located approximately 80 residues from the COOH terminus of each system. The other site (proposed phosphorylation site 2) was located approximately 440 residues from the COOH termini of the glucose and N-acetylglucosamine systems, approximately 320 residues from the COOH termini of the beta-glucoside and sucrose systems, and 381 residues from the COOH terminus of the mannitol system. Intragenic rearrangement during evolutionary history may account for the different positions of phosphorylation sites 2 in the different PTS permeases. More extensive intragenic rearrangements may have given rise to entirely different positions of phosphorylation in the glucitol, mannose, and lactose systems. A single, internal amphipathic alpha-helix with characteristic features was found in each of seven of the eight enzymes II. The lactose-specific enzyme III of Staphylococcus aureus was unique in possessing a COOH-terminal amphipathic alpha-helix rich in basic amino acyl residues. Possible functions for these amphipathic segments are discussed.

MeSH Terms
Amino Acid Sequence Bacteria/enzymology Bacterial Proteins/metabolism Biological Evolution Carbohydrates/genetics Genes Membrane Transport Proteins/genetics Molecular Sequence Data Phosphoenolpyruvate/physiology Phosphoenolpyruvate Sugar Phosphotransferase System/analysis Phosphorylation Phosphotransferases/metabolism Recombination, Genetic Structure-Activity Relationship
Chemicals
Bacterial Proteins Carbohydrates Membrane Transport Proteins Phosphoenolpyruvate Phosphotransferases Phosphoenolpyruvate Sugar Phosphotransferase System
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Saier M H
Department of Biology, USCD, La Jolla, California 92093.
Yamada M
Erni B
Suda K
Lengeler J
Ebner R
Argos P
Rak B
Schnetz K
Lee C A
Article Info
Journal
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
Abbr.
FASEB J
ISSN
0892-6638
Published
1988-03-01
Pages
199-208
Language
English
Region
United States
NLM ID
8804484
Subset
IM
Grants
NIAID NIH HHS · 2R01AI14176 · United States
NIAID NIH HHS · 5R01AI 21702 · United States
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