A mechanism of bicarbonate uptake with a high sensitivity to the putative anion-exchange inhibitor 4,4h-diisothiocyanostilbene-2,2h- disulphonic acid (DIDS) has been previously reported in green algae. In this study, DIDS inhibited net oxygen evolution by Dunaliella tertiolecta by up to 22%, but internal pH regulation, intracellular CO5 accumulation, carbon fixation and affinity for dissolved inorganic carbon (DIC) in Dunaliella tertiolecta showed low or insignificant sensitivity to DIDS. However, in cells grown and tested at pH 9n5, treatment with DIDS elevated the k3n8(HCO6−), suggesting there may be a minor role for a DIDS-sensitive anion-exchange-type HCO6− transporter in DIC acquisition by D. tertiolecta at high pH. In contrast, significant external carbonic anhydrase (CAext) activity and up to 70% inhibition of DIC-dependent O5 evolution by acetozolamide (AZ) suggest that CAext has an important role in DIC acquisition in D. tertiolecta, in normal seawater conditions and at elevated pH. Furthermore, the rate of DIC-dependent photosynthesis at high pH, in the presence of AZ, was 12 times higher than the calculated uncatalysed rate of CO5 supply from HCO6−. This requires some system for direct HCO6− uptake by D. tertiolecta, which may include a DIDS-insensitive mechanism. The effects of DIDS upon indirect measures of DIC acquisition should be interpreted cautiously as DIDS may have non-specific effects upon whole cell function, and affect ion transport processes not directly related to HCO6− uptake.
Inorganic carbon acquisition by Dunaliella tertiolecta (Chlorophyta) involves external carbonic anhydrase and direct HCO3- utilization insensitive to the anion exchange inhibitor DIDS / Young, E.; Beardall, J.; Giordano, Mario. - In: EUROPEAN JOURNAL OF PHYCOLOGY. - ISSN 0967-0262. - STAMPA. - 36:(2001), pp. 81-88. [10.1017/S0967026201003079]
Inorganic carbon acquisition by Dunaliella tertiolecta (Chlorophyta) involves external carbonic anhydrase and direct HCO3- utilization insensitive to the anion exchange inhibitor DIDS
GIORDANO, Mario
2001-01-01
Abstract
A mechanism of bicarbonate uptake with a high sensitivity to the putative anion-exchange inhibitor 4,4h-diisothiocyanostilbene-2,2h- disulphonic acid (DIDS) has been previously reported in green algae. In this study, DIDS inhibited net oxygen evolution by Dunaliella tertiolecta by up to 22%, but internal pH regulation, intracellular CO5 accumulation, carbon fixation and affinity for dissolved inorganic carbon (DIC) in Dunaliella tertiolecta showed low or insignificant sensitivity to DIDS. However, in cells grown and tested at pH 9n5, treatment with DIDS elevated the k3n8(HCO6−), suggesting there may be a minor role for a DIDS-sensitive anion-exchange-type HCO6− transporter in DIC acquisition by D. tertiolecta at high pH. In contrast, significant external carbonic anhydrase (CAext) activity and up to 70% inhibition of DIC-dependent O5 evolution by acetozolamide (AZ) suggest that CAext has an important role in DIC acquisition in D. tertiolecta, in normal seawater conditions and at elevated pH. Furthermore, the rate of DIC-dependent photosynthesis at high pH, in the presence of AZ, was 12 times higher than the calculated uncatalysed rate of CO5 supply from HCO6−. This requires some system for direct HCO6− uptake by D. tertiolecta, which may include a DIDS-insensitive mechanism. The effects of DIDS upon indirect measures of DIC acquisition should be interpreted cautiously as DIDS may have non-specific effects upon whole cell function, and affect ion transport processes not directly related to HCO6− uptake.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.