A salvage pathway is a pathway in which a biological product is produced from intermediates in the degradative pathway of its own or a similar substance. The term often refers to nucleotide salvage in particular, in which nucleotides are synthesized from intermediates in their degradative pathway. Nucleotide salvage pathways are used to recover bases and nucleosides that are formed during degradation of RNA and DNA. This is important in some organs because some tissues cannot undergo de novo synthesis. The salvaged products can then be converted back into nucleotides. Salvage pathways are targets for drug development, one family being called antifolates. A number of other biologically-important substances, like methionine and nicotinate, have their own salvage pathways to recycle parts of the molecule.
Substrates
The nucleotide salvage pathway requires distinct substrates:
Phosphoribosyltransferases add activated ribose-5-phosphate to bases, creating nucleoside monophosphates. There are two types of phosphoribosyltransferases: adenine phosphoribosyltransferase and hypoxanthine-guanine phosphoribosyltransferase. HGPRT is an important enzyme in Purine pathway metabolism and its deficiency is implicated in Lesch–Nyhan syndrome. The parasite Plasmodium falciparum relies exclusively on the purine salvage pathway for its purine nucleotide requirements. Thus, enzymes constituting the purine salvage pathway in the parasite are potential targets for drug discovery. 5´nucleotidases catalyze the hydrolysis of purine mononucleotides to their respective nucleosides and phosphate. The nucleosides are taken up in the cell by transporters and are funneled through the salvage pathway. If the nucleoside is adenosine, it is acted upon by adenosine deaminases to convert it into inosine. This metabolite, in turn, is acted upon by purine nucleoside phosphorylase and is converted to hypoxanthine. Hypoxanthine is acted upon by HGXPRT in the parasite to convert the respective nucleobase to its nucleotide monophosphate, respectively. If it is IMP, this is subsequently acted upon by adenylosuccinate synthase and adenylosuccinate lyase, in a two step process, to convert it into sAMP and AMP, respectively. On the contrary, IMP can also be acted upon by IMP dehydrogenase and GMP synthetase to convert it into GMP.
Folate biosynthesis
and its derivatives are produced by salvage pathways from GTP.
Other salvage pathways
L-methionine salvage is the pathway that regenerates methionine from its downstream products. A version of the pathway uses methylthioadenosine, forming the so-called MTA cycle with its synthesizing reaction. This sulphur-recycling action is found in humans, and seems to be universal among aerobic life. Nicotinate salvage is the process of regenerating nicotinamide adenine dinucleotide from nicotinic acid. This pathway is important for controlling the level of oxidative stress in cells. The human geneNAPRT encodes the main enzyme in the pathway. Cancer cells, which have increased NAD requirements, tend to upregulate the pathway. Salvage pathways also exist for ceramide, cobalamin, cell wall components, and tetrahydrobiopterin in various organisms.