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芽孢形成细菌的二氨基庚二酸脱羧酶

Diaminopimelate decarboxylase of sporulating bacteria.

作者信息

Grandgenett D P, Stahly D P

出版信息

J Bacteriol. 1968 Dec;96(6):2099-109. doi: 10.1128/jb.96.6.2099-2109.1968.

Abstract

The meso-diaminopimelate (DAP) decarboxylase of Bacillus licheniformis, a pyridoxal phosphate-requiring enzyme, was stabilized in vitro by 0.15 m sodium phosphate buffer (pH 7.0) containing 1 mm 2,3-dimercaptopropan-1-ol, 100 mug of pyridoxal phosphate per ml, and 3 mm DAP. When the meso-DAP concentration was varied, the enzyme in cell-free extracts of B. licheniformis exhibited Michaelis-Menten kinetics. Pyridoxal phosphate was the only pyridoxine derivative which acted as a cofactor. The enzyme was subject to both inhibition and repression by l-lysine. The inhibitory effect of lysine was on the K(m) (meso-DAP). A maximum repression of about 20% was obtained. No significant inhibition or activation was produced by cadaverine, dipicolinic acid, phenylalanine, pyruvate, ethylenediamine-tetraacetate, adenosine triphosphate, adenosine diphosphate, or adenosine monophosphate. When B. licheniformis was grown in an ammonium lactate-glucose-salts medium, an increase in DAP decarboxylase specific activity occurred during cellular growth with a maximal specific activity at the end of the exponential phase. As soon as growth ceased, the specific activity of the enzyme decreased to approximately one-half of the maximal specific activity and remained at this level thereafter. When B. cereus was grown in complex media, there was an increase in DAP decarboxylase specific activity up to the end of the exponential phase. Thereafter, the specific activity decreased to a nondetectable level in 4 hr. Dipicolinic acid synthesis was first detected 15 min later and was essentially complete after an additional 2.5 hr. The significance of the disappearance of DAP decarboxylase in B. cereus was discussed with regard to control of dipicolinic acid and spore mucopeptide biosynthesis.

摘要

地衣芽孢杆菌的中-二氨基庚二酸(DAP)脱羧酶是一种需要磷酸吡哆醛的酶,在体外可通过含有1 mM 2,3-二巯基丙醇、每毫升100 μg磷酸吡哆醛和3 mM DAP的0.15 M磷酸钠缓冲液(pH 7.0)来稳定。当中-二氨基庚二酸浓度变化时,地衣芽孢杆菌无细胞提取物中的酶表现出米氏动力学。磷酸吡哆醛是唯一作为辅因子的吡哆醇衍生物。该酶受到L-赖氨酸的抑制和阻遏。赖氨酸的抑制作用针对的是K(m)(中-二氨基庚二酸)。获得了约20%的最大阻遏。尸胺、二吡啶羧酸、苯丙氨酸、丙酮酸、乙二胺四乙酸、三磷酸腺苷、二磷酸腺苷或一磷酸腺苷均未产生明显的抑制或激活作用。当地衣芽孢杆菌在乳酸铵-葡萄糖-盐培养基中生长时,在细胞生长期间DAP脱羧酶的比活性增加,在指数期末达到最大比活性。一旦生长停止,该酶的比活性降至最大比活性的约二分之一,并在此后保持在该水平。当蜡样芽孢杆菌在复杂培养基中生长时,直到指数期末DAP脱羧酶的比活性都在增加。此后,比活性在4小时内降至不可检测的水平。二吡啶羧酸合成在15分钟后首次检测到,并在另外2.5小时后基本完成。讨论了蜡样芽孢杆菌中DAP脱羧酶消失对于二吡啶羧酸和芽孢粘肽生物合成控制的意义。

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