Fungal L-lysine a-oxidase (1.4.3.14) (LO) from Trichoderma harzianum Rifai
presents an oxidoreductase with a firmly attached coenzyme--FAD. This stabl
e enzyme catalyzes an oxidative deamination of L-lysine yielding hydrogen p
eroxide, ammonia, and a-keto acid. LO exhibits antitumor activity toward 5
of 12 tested transplantable tumors. The sensitive tumors were ascitic hepat
oma 22 (T/C = 201%, CR = 66%); mammary adenocarcinoma Ca755 (TGI = 96%); me
lanoma B-16 (TGI = 81%); AKATOL (TGI = 75%); RSHM 5 (TGI = 79%). LO therape
utic activity was observed within a wide range of doses, 35-350 U/kg, by in
traperitoneal daily injections for 5 d.
Contrary to Escherichia coli L-asparaginase, LO demonstrates its antitumor
activity by the low therapeutic doses in vivo within a wide range of optima
l doses and through another antitumor spectrum. Fisher lymphadenosis L-5178
y highly sensitive toward L-asparaginase appeared to be LO resistant.
The possible mechanisms of LO antitumor activity through the key biochemica
l processes are discussed.