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钴胺素类似物对大鼠体内钴胺素依赖性酶的抑制作用。

Inhibition of cobalamin-dependent enzymes by cobalamin analogues in rats.

作者信息

Stabler S P, Brass E P, Marcell P D, Allen R H

机构信息

Department of Medicine, University of Colorado Health Sciences Center, Denver 80262.

出版信息

J Clin Invest. 1991 Apr;87(4):1422-30. doi: 10.1172/JCI115148.

Abstract

To determine which parts of the cobalamin (cbl) molecule are required for enzyme activity and which parts, if altered, might inhibit cbl-dependent enzyme activity, we synthesized 16 cbl analogues and administered them to nutritionally normal rats. The cbl analogues, with either modifications of the propionamide side chains of the A-, B-, and C-rings, the acetamide side chain of the B-ring, or the nucleotide moiety, were administered to rats by continuous 14-d subcutaneous infusion. Infusion of cbl-stimulated, cbl-dependent activity. Changes in any part of the cbl molecule always abolished stimulation and, in some cases, caused potent inhibition of both cbl-dependent enzymes. The most inhibitory analogues, OH-cbl[c-lactam], a B-ring analogue, and OH-cbl[e-dimethylamide] and OH-cbl[e-methylamide], two C-ring analogues, decreased mean liver holo-L-methylmalonyl-coenzyme A mutase activity to 65% of control values and increased serum methylmalonic acid concentrations to as high as 3,200% of the control values. Liver methionine synthetase activity was decreased to approximately 20% of the control and mean serum total homocysteine concentrations were increased to 340% of control. A similar level of inhibition was demonstrated in rats who were exposed to 28 d of inhaled nitrous oxide or a prolonged period of dietary cbl deficiency. The inhibitory cbl analogues, nitrous oxide, and diet deficiency all depleted liver cbl. The naturally occurring cbl analogues with modifications of the nucleotide moiety had no effects. We conclude that all parts of the cbl molecule are necessary for in vivo cbl-dependent enzyme activity and that modifications of the side chains of the B and C rings are associated with potent in vivo inhibition of cbl-dependent enzyme activity.

摘要

为了确定钴胺素(cbl)分子的哪些部分是酶活性所必需的,以及哪些部分若发生改变可能会抑制依赖cbl的酶活性,我们合成了16种cbl类似物,并将它们给予营养正常的大鼠。这些cbl类似物,有的对A、B、C环的丙酰胺侧链进行了修饰,有的对B环的乙酰胺侧链进行了修饰,还有的对核苷酸部分进行了修饰,通过连续14天皮下输注的方式给予大鼠。输注cbl可刺激依赖cbl的活性。cbl分子任何部分的改变都会消除刺激作用,在某些情况下,还会对两种依赖cbl的酶产生强烈抑制。最具抑制性的类似物,即B环类似物OH-cbl[c-内酰胺]以及两种C环类似物OH-cbl[e-二甲基酰胺]和OH-cbl[e-甲基酰胺],可使肝脏中全酶L-甲基丙二酰辅酶A变位酶活性降至对照值的65%,并使血清甲基丙二酸浓度升高至对照值的3200%。肝脏甲硫氨酸合成酶活性降至对照值的约20%,血清总同型半胱氨酸平均浓度升高至对照值的340%。在吸入一氧化二氮28天或长期饮食性cbl缺乏的大鼠中也表现出类似程度的抑制。具有抑制作用的cbl类似物、一氧化二氮和饮食缺乏都会使肝脏cbl减少。对核苷酸部分进行修饰的天然存在的cbl类似物则没有影响。我们得出结论,cbl分子的所有部分对于体内依赖cbl的酶活性都是必需的,并且B环和C环侧链的修饰与体内对依赖cbl的酶活性的强烈抑制有关。

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Presence of cobalamin analogues in animal tissues.动物组织中钴胺素类似物的存在。
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