Kong Au T, Chow Leung P
Department of Zoology, The University of Hong Kong, Pokfulam Road, Hong Kong.
Plant Physiol. 1998 Nov;118(3):965-73. doi: 10.1104/pp.118.3.965.
Ophiobolin A, a fungal toxin that affects maize and rice, has previously been shown to inhibit calmodulin by reacting with the lysine (Lys) residues in the calmodulin. In the present study we mutated Lys-75, Lys-77, and Lys-148 in the calmodulin molecule by site-directed mutagenesis, either by deleting them or by changing them to glutamine or arginine. We found that each of these three Lys residues could bind one molecule of ophiobolin A. Normally, only Lys-75 and Lys-148 bind ophiobolin A. Lys-77 seemed to be blocked by the binding of ophiobolin A to Lys-75. Lys-75 is the primary binding site and is responsible for all of the inhibition of ophiobolin A. When Lys-75 was removed, Lys-77 could then react with ophiobolin A to produce inhibition. Lys-148 was shown to be a binding site but not an inhibition site. The Lys-75 mutants were partially resistant to ophiobolin A. When both Lys 75 and Lys-77 or all three Lys residues were mutated, the resulting calmodulins were very resistant to ophiobolin A. Furthermore, Lys residues added in positions 86 and/or 143 (which are highly conserved in plant calmodulins) did not react with ophiobolin A. None of the mutations seemed to affect the properties of calmodulin. These results show that ophiobolin A reacts quite specifically with calmodulin.
蛇孢菌素A是一种影响玉米和水稻的真菌毒素,此前已证明它通过与钙调蛋白中的赖氨酸(Lys)残基反应来抑制钙调蛋白。在本研究中,我们通过定点诱变对钙调蛋白分子中的赖氨酸-75、赖氨酸-77和赖氨酸-148进行了突变,要么删除它们,要么将它们变为谷氨酰胺或精氨酸。我们发现这三个赖氨酸残基中的每一个都可以结合一分子蛇孢菌素A。正常情况下,只有赖氨酸-75和赖氨酸-148结合蛇孢菌素A。赖氨酸-77似乎被蛇孢菌素A与赖氨酸-75的结合所阻断。赖氨酸-75是主要结合位点,负责蛇孢菌素A的所有抑制作用。当赖氨酸-75被去除时,赖氨酸-77然后可以与蛇孢菌素A反应产生抑制作用。赖氨酸-148被证明是一个结合位点但不是抑制位点。赖氨酸-75突变体对蛇孢菌素A具有部分抗性。当赖氨酸75和赖氨酸-77或所有三个赖氨酸残基都发生突变时,产生的钙调蛋白对蛇孢菌素A具有很强的抗性。此外,在位置86和/或143(在植物钙调蛋白中高度保守)添加的赖氨酸残基不与蛇孢菌素A反应。似乎没有一个突变影响钙调蛋白的性质。这些结果表明蛇孢菌素A与钙调蛋白的反应非常特异。