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In Silico Analysis of Relationship between Proteins from Plastid Genome of Red Alga Palmaria sp. (Japan) and Angiotensin I Converting Enzyme Inhibitory Peptides

机译:计算机分析红藻棕藻质体基因组蛋白质之间的关系。 (日本)和血管紧张素I转换酶抑制肽

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摘要

Plastid proteins are one of the main components in red algae. In order to clarify the angiotensin I converting enzyme (ACE) inhibitory peptides from red alga Palmaria sp. (Japan), we determined the plastid genome sequence. The genome possesses 205 protein coding genes, which were classified as genetic systems, ribosomal proteins, photosystems, adenosine triphosphate (ATP) synthesis, metabolism, transport, or unknown. After comparing ACE inhibitory peptides between protein sequences and a database, photosystems (177 ACE inhibitory peptides) were found to be the major source of ACE inhibitory peptides (total of 751). Photosystems consist of phycobilisomes, photosystem I, photosystem II, cytochrome complex, and a redox system. Among them, photosystem I (53) and II (51) were the major source of ACE inhibitory peptides. We found that the amino acid sequence of apcE (14) in phycobilisomes, psaA (18) and psaB (13) in photosystem I, and psbB (11) and psbC (10) in photosystem II covered a majority of bioactive peptide sequences. These results are useful for evaluating the bioactive peptides from red algae.
机译:质体蛋白是红藻中的主要成分之一。为了阐明红藻Palmaria sp。的血管紧张素I转化酶(ACE)抑制肽。 (日本),我们确定了质体基因组序列。该基因组拥有205个蛋白质编码基因,这些基因被分类为遗传系统,核糖体蛋白,光系统,三磷酸腺苷(ATP)合成,代谢,转运或未知。在比较蛋白质序列和数据库之间的ACE抑制肽后,发现光系统(177个ACE抑制肽)是ACE抑制肽的主要来源(总计751)。光系统由藻胆体,光系统I,光系统II,细胞色素复合物和氧化还原系统组成。其中,光系统I(53)和II(51)是ACE抑制肽的主要来源。我们发现藻胆体中apcE(14),光系统I中的psaA(18)和psaB(13)以及光系统II中的psbB(11)和psbC(10)的氨基酸序列涵盖了大多数生物活性肽序列。这些结果对于评估红藻的生物活性肽很有用。

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