铁-而不是镁-原卟啉IX与跨膜b型细胞色素结合。

Q3 Biochemistry, Genetics and Molecular Biology Molecular Membrane Biology Pub Date : 2014-02-01 Epub Date: 2013-12-16 DOI:10.3109/09687688.2013.867079
Lydia Tome, Cornelia Schaetzel, Carolin Dreher, Dirk Schneider
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引用次数: 2

摘要

跨膜b型细胞色素是非共价结合一个或多个血红素(Fe-protoporphyrin IX)分子,它在电子转移链中起关键作用。类似地,叶绿素通常也是由参与光合作用的几个膜整体多肽非共价结合的。虽然叶绿素和血红素都是四吡咯大环,但它们在四吡咯环部分具有不同的取代基。叶绿素中的中心金属离子为Mg(2+),血红素中的中心金属离子为Fe(2+/3+)。由于血红素和叶绿素a具有相似的结构,并且可能都由多肽链的两个组氨酸残基连接,并且叶绿素a的局部浓度可能比血红素的浓度高100倍,因此问题就出现了,即生物体如何确保血红素而不是叶绿素与参与光合电子转移反应的跨膜载脂蛋白特异性结合。如图所示,在四吡咯环上带有修饰取代基的fe -原卟啉IX衍生物仍然与载细胞色素结合;然而,这种联系似乎减少了。这表明,环取代基与蛋白质片段的疏水和极性相互作用稳定了蛋白质/血红素复合物,但本身不是必需的。然而,去除或替换中心铁离子完全消除了全蛋白复合物的形成,因此中心铁离子似乎决定了血红素与载脂蛋白b6的结合。
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Fe- but not Mg-protophorphyrin IX binds to a transmembrane b-type cytochrome.
Abstract Transmembrane b-type cytochromes, which are crucially involved in electron transfer chains, bind one or more heme (Fe-protoporphyrin IX) molecules non-covalently. Similarly, chlorophylls are typically also non-covalently bound by several membrane integral polypeptides involved in photosynthesis. While both, chlorophyll and heme, are tetrapyrrole macrocycles, they have different substituents at the tetrapyrrole ring moiety. Furthermore, the central metal ion is Mg2+ in chlorophyll and Fe2+/3+ in heme. As heme and chlorophyll a have similar structures and might both be ligated by two histidine residues of a polypeptide chain, and as the local concentration of chlorophyll a might be up to 100-times higher than the concentration of heme, the question arises, as to how an organism ensures specific binding of heme, but not of chlorophyll, to transmembrane apo-cytochromes involved in photosynthetic electron transfer reactions. As shown here, Fe-protoporphyrin IX derivatives with modified substituents at the tetrapyrrole ring moiety still bind to an apo-cytochrome; however, association appears to be reduced. This indicates that hydrophobic and polar interactions of the ring substituents with the protein moiety stabilize the protein/heme-complex but are not essential per se. However, removal or replacement of the central Fe-ion completely abolishes formation of a holo-protein complex, and thus the central iron ion appears to determine heme binding to apo-cytochrome b6.
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来源期刊
Molecular Membrane Biology
Molecular Membrane Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Cessation. Molecular Membrane Biology provides a forum for high quality research that serves to advance knowledge in molecular aspects of biological membrane structure and function. The journal welcomes submissions of original research papers and reviews in the following areas: • Membrane receptors and signalling • Membrane transporters, pores and channels • Synthesis and structure of membrane proteins • Membrane translocation and targeting • Lipid organisation and asymmetry • Model membranes • Membrane trafficking • Cytoskeletal and extracellular membrane interactions • Cell adhesion and intercellular interactions • Molecular dynamics and molecular modelling of membranes. • Antimicrobial peptides.
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