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康宁木霉3-磷酸甘油醛脱氢酶两种同工酶的克隆及其对康氏木霉酸敏感性不同

Cloning of two isozymes of Trichoderma koningii glyceraldehyde-3-phosphate dehydrogenase with different sensitivity to koningic acid.

作者信息

Watanabe H, Hasumi K, Fukushima Y, Sakai K, Endo A

机构信息

Department of Applied Biological Science, Tokyo Noko University, Japan.

出版信息

Biochim Biophys Acta. 1993 Feb 20;1172(1-2):43-8. doi: 10.1016/0167-4781(93)90267-h.

Abstract

Koningic acid inhibits glyceraldehyde-3-phosphate dehydrogenase (GAPDH) by binding to the SH group in the active center. The fungus Trichoderma koningii, the producer of koningic acid, contains two GAPDH isozymes (GAPDHs I and II). GAPDH I is inhibited 50% by 1.1.10(-3) M koningic acid, while GAPDH II is inhibited 50% at 6.8 x 10(-6) M. cDNAs of the two isozymes were cloned from T. koningii and their nucleotide sequences were determined. The sequence of coding region and codon usage in both clones were compared with each other and with those of the gene for Aspergillus nidulans GAPDH (enzyme activity is inhibited 50% by 2.7 x 10(-7) M koningic acid). Results indicated that GAPDH II is more closely related to A. nidulans GAPDH than GAPDH I. All essential amino acid residues, except 174 and 181, which are implicated in catalysis and binding of NAD and substrates, were conserved among A. nidulans GAPDH and GAPDHs I and II. Residues 174 and 181 are threonine in both A. nidulans GAPDH and GAPDH II, but alanine and serine, respectively, in GAPDH I. The side-chain of alanine-174 in GAPDH I can not replace threonine-174 functionally as threonine-174 side-chain forms a hydrogen bond with the catalytically essential histidine-176.

摘要

koningic酸通过与活性中心的巯基结合来抑制3-磷酸甘油醛脱氢酶(GAPDH)。产生koningic酸的真菌康宁木霉含有两种GAPDH同工酶(GAPDH I和II)。1.1×10⁻³ M的koningic酸可使GAPDH I受到50%的抑制,而GAPDH II在6.8×10⁻⁶ M时受到50%的抑制。从康宁木霉中克隆了这两种同工酶的cDNA,并测定了它们的核苷酸序列。将两个克隆的编码区序列和密码子使用情况相互比较,并与构巢曲霉GAPDH基因(2.7×10⁻⁷ M的koningic酸可使酶活性受到50%的抑制)的序列进行比较。结果表明,GAPDH II与构巢曲霉GAPDH的关系比GAPDH I更密切。除了参与NAD和底物催化及结合的174和181位氨基酸残基外,构巢曲霉GAPDH以及GAPDH I和II中的所有必需氨基酸残基都是保守的。在构巢曲霉GAPDH和GAPDH II中,174和181位残基都是苏氨酸,但在GAPDH I中分别是丙氨酸和丝氨酸。GAPDH I中174位丙氨酸的侧链不能在功能上替代174位苏氨酸,因为174位苏氨酸侧链与催化必需的176位组氨酸形成氢键。

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