In Vivo Regulation of Glutamine Synthetase Activity in the Marine Chlorophyll b -Containing Cyanobacterium Prochlorococcus sp. Strain PCC 9511 (Oxyphotobacteria)

Author:

El Alaoui Sabah1,Diez Jesús1,Humanes Lourdes1,Toribio Fermı́n1,Partensky Frédéric2,Garcı́a-Fernández José Manuel1

Affiliation:

1. Departamento de Bioquı́mica y Biologı́a Molecular, Universidad de Córdoba, E-14071 Córdoba, Spain,1 and

2. Station Biologique de Roscoff (CNRS UPR 9042 et UniversitéParis VI),2 29682 Roscoff Cedex, France

Abstract

ABSTRACT The physiological regulation of glutamine synthetase (GS; EC 6.3.1.2 ) in the axenic Prochlorococcus sp. strain PCC 9511 was studied. GS activity and antigen concentration were measured using the transferase and biosynthetic assays and the electroimmunoassay, respectively. GS activity decreased when cells were subjected to nitrogen starvation or cultured with oxidized nitrogen sources, which proved to be nonusable for Prochlorococcus growth. The GS activity in cultures subjected to long-term phosphorus starvation was lower than that in equivalent nitrogen-starved cultures. Azaserine, an inhibitor of glutamate synthase, provoked an increase in enzymatic activity, suggesting that glutamine is not involved in GS regulation. Darkness did not affect GS activity significantly, while the addition of diuron provoked GS inactivation. GS protein determination showed that azaserine induces an increase in the concentration of the enzyme. The unusual responses to darkness and nitrogen starvation could reflect adaptation mechanisms of Prochlorococcus for coping with a light- and nutrient-limited environment.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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