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血红素调节基序在血红素介导的对5-氨基酮戊酸合酶线粒体导入的抑制作用中的角色。

Role of the heme regulatory motif in the heme-mediated inhibition of mitochondrial import of 5-aminolevulinate synthase.

作者信息

Munakata Hiroshi, Sun Ji-Ying, Yoshida Koji, Nakatani Tatsuya, Honda Eiko, Hayakawa Sumio, Furuyama Kazumichi, Hayashi Norio

机构信息

Department of Biochemistry, School of Medicine, and Life Science Institute, Kinki University, 377-2 Ohno-Higashi, Osaka-Sayama, 589-8511.

出版信息

J Biochem. 2004 Aug;136(2):233-8. doi: 10.1093/jb/mvh112.

Abstract

5-Aminolevulinate synthase (ALAS) is a mitochondrial enzyme that catalyzes the first step of the heme biosynthetic pathway. The mitochondrial import, as well as the synthesis, of the nonspecific isoform of ALAS (ALAS1) is regulated by heme through a feedback mechanism. A short amino acid sequence, the heme regulatory motif (HRM), is known to be involved in the regulatory function of heme. To determine the role of the HRM in the heme-regulated transport of the nonspecific and erythroid forms of ALAS in vivo, we constructed a series of mutants of rat ALAS1, in which the cysteine residues in the three putative HRMs in the N-terminal region of the enzyme were converted to serine ones by site-directed mutagenesis. The wild-type and mutant enzymes were expressed in quail QT6 fibroblasts through transient transfection, and the mitochondrial import of these enzymes was examined in the presence of hemin. Hemin inhibited the mitochondrial import of wild-type ALAS1, but this inhibition was reversed on the mutation of all three HRMs in the enzyme, indicating that the HRMs are essential for the heme-mediated inhibition of ALAS1 transport in the cell. By contrast, exogenous hemin did not affect the mitochondrial import of the erythroid-specific ALAS isoform (ALAS2) under the same experimental conditions. These results may reflect the difference in the physiological functions of the two ALAS isoforms.

摘要

5-氨基酮戊酸合酶(ALAS)是一种线粒体酶,催化血红素生物合成途径的第一步。非特异性同工型ALAS(ALAS1)的线粒体导入及其合成受血红素通过反馈机制调控。已知一个短氨基酸序列,即血红素调节基序(HRM),参与血红素的调节功能。为了确定HRM在体内血红素调节的非特异性和红系形式的ALAS转运中的作用,我们构建了一系列大鼠ALAS1突变体,通过定点诱变将该酶N端区域三个推定的HRM中的半胱氨酸残基转换为丝氨酸残基。野生型和突变型酶通过瞬时转染在鹌鹑QT6成纤维细胞中表达,并在高铁血红素存在下检测这些酶的线粒体导入。高铁血红素抑制野生型ALAS1的线粒体导入,但在该酶的所有三个HRM发生突变后这种抑制作用被逆转,表明HRM对于细胞中血红素介导的ALAS1转运抑制至关重要。相比之下,在相同实验条件下,外源性高铁血红素不影响红系特异性ALAS同工型(ALAS2)的线粒体导入。这些结果可能反映了两种ALAS同工型生理功能的差异。

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