Abstract
Nitrate uptake in Neurospora crassa has been investigated under various conditions of nitrogen nutrition by measuring the rate of disappearance of nitrate from the medium and by determining mycelial nitrate accumulation. The nitrate transport system is induced by either nitrate or nitrite, but is not present in mycelia grown on ammonia or Casamino Acids. The appearance of nitrate uptake activity is prevented by cycloheximide, puromycin, or 6-methyl purine. The induced nitrate transport system displays a K(m) for nitrate of 0.25 mM. Nitrate uptake is inhibited by metabolic poisons such as 2,4-dinitrophenol, cyanide, and antimycin A. Furthermore, mycelia can concentrate nitrate 50-fold. Ammonia and nitrite are non-competitive inhibitors with respect to nitrate, with K(i) values of 0.13 and 0.17 mM, respectively. Ammonia does not repress the formation of the nitrate transport system. In contrast, the nitrate uptake system is repressed by Casamino Acids. All amino acids individually prevent nitrate accumulation, with the exception of methionine, glutamine, and alanine. The influence of nitrate reduction and the nitrate reductase protein on nitrate transport was investigated in wild-type Neurospora lacking a functional nitrate reductase and in nitrate non-utilizing mutants, nit-1, nit-2, and nit-3. These mycelia contain an inducible nitrate transport system which displays the same characteristics as those found in the wild-type mycelia having the functional nitrate reductase. These findings suggest that nitrate transport is not dependent upon nitrate reduction and that these two processes are separate events in the assimilation of nitrate.
MeSH Terms
Amino Acids/metabolism
Ammonia/metabolism
Antimycin A/pharmacology
Biological Transport, Active
Cell-Free System
Culture Media
Cyanides/pharmacology
Cycloheximide/pharmacology
Dinitrophenols/pharmacology
Enzyme Induction
Enzyme Repression
Fungal Proteins/biosynthesis
Mutation
Neurospora/metabolism
Neurospora crassa/enzymology,metabolism
Nitrate Reductases/metabolism
Nitrates/metabolism
Nitrite Reductases/metabolism
Nitrites/metabolism
Purines/pharmacology
Puromycin/pharmacology
RNA/biosynthesis
Tungsten/pharmacology
Vanadium/pharmacology
Chemicals
Amino Acids
Culture Media
Cyanides
Dinitrophenols
Fungal Proteins
Nitrates
Nitrites
Purines
Vanadium
Puromycin
RNA
Antimycin A
Ammonia
Cycloheximide
Nitrate Reductases
Nitrite Reductases
Tungsten
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Schloemen R H
Garrett R H
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17 references, click to expand
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