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Regulatory effects of fatty acyl-coenzyme A derivatives on phosphate-activated pig brain and kidney glutaminase in vitro.

机译:脂肪酰基辅酶A衍生物在体外对磷酸盐激活的猪脑和谷氨酰胺酶的调节作用。

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摘要

1. Fatty n-acyl-CoA derivatives in the concentration range 5muM-0.1mM and with 5-18 fatty acyl carbons have dual effects on phosphate-activated glutaminase from pig brain and kidney. Generally, fatty acyl-CoA derivatives in low concentrations activate the enzyme, but inhibit at higher concentrations; phosphate and citrate potentiate the activation, displaying positive co-operatively, and protect against inactivation. The fatty acyl-CoA derivatives affect glutaminase similarly to Bromothymol Blue, but differently from acetyl-CoA, which activates the enzyme only at very low phosphate or citrate concentrations. 2. Saturated fatty acyl-CoA derivatives, with 5-10 fatty acyl carbons, only activate the enzyme in the concentration range 0-0.1 mM. When the fatty acyl chain is elongated, the fatty acyl-CoA derivatives gradually become more powerful inhibitors of glutaminase at the expense of their activating capacity. In particular, palmitoyl-CoA and stearoyl-CoA are strong inhibitors at concentrations (10 muM) at which the corresponding free fatty acids and fatty acyl-carnitine derivatives have no effect. 3. The unsaturated fatty acyl-CoA derivatives, oleoyl-CoA and linoleoyl-CoA, behave as potent activators in the lower part of the concentration range tested (0-0.05mM), and as inhibitors in the upper part of this range (0.02-0.10mM). Oleic acid and linoleic acid have similar properties, but their activating capacity is less pronounced. 4. Phosphate both prevented and reversed the inhibition, but no restoration of activity was possible once the enzyme became inactivated. 5. By changing the pH from 7.0 to 8.0 the activating capacity of the fatty acyl-CoA derivatives is increased, as is their concentration range for activation. 6. The fatty acyl-CoA derivatives are somewhat more potent activator for brain glutaminase, but otherwise they affect the two enzymes similarly.
机译:1.浓度范围为5muM-0.1mM且具有5-18个脂肪酰基碳的脂肪n-酰基-CoA衍生物对猪脑和肾脏的磷酸激活的谷氨酰胺酶具有双重作用。通常,低浓度的脂肪酰基辅酶A衍生物会激活酶,但在较高的浓度下会抑制酶。磷酸盐和柠檬酸盐增强活化作用,协同显示阳性,并防止失活。脂肪酰基辅酶A衍生物与溴百里酚蓝类似,但与乙酰辅酶A不同,谷氨酰胺酶对谷氨酰胺酶的影响,后者仅在非常低的磷酸盐或柠檬酸盐浓度下才激活酶。 2.具有5-10个脂肪酰基碳的饱和脂肪酰基-CoA衍生物仅在0-0.1mM的浓度范围内活化酶。当脂肪酰基链被拉长时,脂肪酰基辅酶A衍生物逐渐变成更强大的谷氨酰胺酶抑制剂,但代价是它们的活化能力。特别地,棕榈酰-CoA和硬脂酰-CoA在浓度(10μM)下是强抑制剂,在该浓度下相应的游离脂肪酸和脂肪酰基-肉碱衍生物没有作用。 3.不饱和脂肪酰基-CoA衍生物油酰基-CoA和亚油酰基-CoA在所测试浓度范围的下部(0-0.05mM)中充当有效的活化剂,在该范围的上部(0.02中充当抑制剂) -0.10mM)。油酸和亚油酸具有相似的性质,但是它们的活化能力不太明显。 4.磷酸既阻止又逆转了抑制作用,但是一旦酶失活,活性就不可能恢复。 5.通过将pH从7.0改变至8.0,脂肪酰基辅酶A衍生物的活化能力以及其活化的浓度范围增加。 6.脂肪酰基辅酶A衍生物是大脑谷氨酰胺酶的更有效活化剂,但否则它们会类似地影响这两种酶。

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