Kochan Z, Karbowska J, Bukato G, Zydowo M M, Bertoli E, Tanfani F, Swierczyński J
Department of Biochemistry, Medical University of Gdańsk, Poland.
Biochem J. 1995 Jul 15;309 ( Pt 2)(Pt 2):607-11. doi: 10.1042/bj3090607.
The secondary structure of human brain cytosolic and mitochondrial 'malic' enzymes purified to homogeneity has been investigated by Fourier-transform IR spectroscopy. The absorbance IR spectra of these two isoenzymes were slightly different, but calculated secondary-structure compositions were essentially similar (38% alpha-helix, 38-39% beta-sheet, 14% beta-turn and 9-10% random structure). These proportions were not affected by succinate, a positive effector of mitochondrial 'malic' enzyme activity. IR spectra indicate that the tertiary structures of human brain cytosolic and mitochondrial 'malic' enzymes are slightly different, and addition of succinate does not cause conformational changes to the tertiary structure of the mitochondrial enzyme. Thermal-denaturation patterns of the cytosolic and mitochondrial enzymes, obtained from spectra recorded at different temperatures in the absence or presence of Mg2+, suggest that the tertiary structure of both isoenzymes is stabilized by bivalent cations and that the cytosolic enzyme possesses a more compact tertiary structure.
利用傅里叶变换红外光谱法研究了纯化至同质的人脑海马体和线粒体“苹果酸”酶的二级结构。这两种同工酶的红外吸收光谱略有不同,但计算得出的二级结构组成基本相似(38%的α-螺旋、38 - 39%的β-折叠、14%的β-转角和9 - 10%的无规结构)。这些比例不受琥珀酸(线粒体“苹果酸”酶活性的正效应物)的影响。红外光谱表明,人脑海马体和线粒体“苹果酸”酶的三级结构略有不同,添加琥珀酸不会导致线粒体酶三级结构的构象变化。在不存在或存在Mg2 +的情况下,通过在不同温度下记录的光谱获得的海马体和线粒体酶的热变性模式表明,两种同工酶的三级结构均由二价阳离子稳定,且海马体酶具有更紧凑的三级结构。