细菌二肽基肽酶7扩大了底物特异性,使一半的二肽组合从肽n端释放出来。

IF 2.9 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Kana Shirakura, Takayuki K Nemoto, Yuko Ohara Nemoto, Haruka Nishimata, Momo Sawase, Yu Shimoyama, Manami Nakasato-Suzuki, Kiyoshi Ito, Naomi Tanoue
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引用次数: 0

摘要

二肽基肽酶(DPP)4、DPP5、DPP7和DPP11介导的二肽生成在牙龈卟啉单胞菌(一种牙周病溶糖细菌)的生长中起着至关重要的作用。鉴于dpp在P1位点的特异性,我们推测DPP5或DPP7可能负责降解难降解的P1氨基酸,即中性(Thr, His, Gly, Ser, Gln)和亲水(Asn)残基。目前的结果确定DPP7作为处理这些残基的实体,从而确保细菌中营养二肽的完全生产。P1'残基对DPP7、DPP4和DPP5的活性有增强作用。对于难降解的P1残基,DPP7独特地水解了HX|LD-MCA (X = His, Gln或Asn),并且它们的水解在DPP7基因破坏的细胞中受到最显著的抑制。疏水性P2残基显著增强了DPP7对这些底物的活性。研究结果提出了一个全面的20 P1 × 20 P2氨基酸基质,显示了四种dpp的协调,以实现完整的二肽生产以及附属肽酶。目前发现,DPP7具有广泛的底物特异性,可以释放48% %(192/400)的n端二肽,这可能暗示其在牙周病与相关全身性疾病的联系中具有潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Broadened substrate specificity of bacterial dipeptidyl-peptidase 7 enables release of half of all dipeptide combinations from peptide N-termini.

Dipeptide production mediated by dipeptidyl-peptidase (DPP)4, DPP5, DPP7, and DPP11 plays a crucial role in growth of Porphyromonas gingivalis, a periodontopathic asaccharolytic bacterium. Given the particular P1-position specificity of DPPs, it has been speculated that DPP5 or DPP7 might be responsible for degrading refractory P1 amino acids, i.e., neutral (Thr, His, Gly, Ser, Gln) and hydrophilic (Asn) residues. The present results identified DPP7 as an entity that processes these residues, thus ensuring complete production of nutritional dipeptides in the bacterium. Activity enhancement by the P1' residue was observed in DPP7, as well as DPP4 and DPP5. Toward the refractory P1 residues, DPP7 uniquely hydrolyzed HX|LD-MCA (X = His, Gln, or Asn) and their hydrolysis was most significantly suppressed in dpp7 gene-disrupted cells. Additionally, hydrophobic P2 residue significantly enhanced DPP7 activity toward these substrates. The findings propose a comprehensive 20 P1 × 20 P2 amino acid matrix showing the coordination of four DPPs to achieve complete dipeptide production along with subsidiary peptidases. The present finding of a broad substrate specificity that DPP7 accounts for releasing 48 % (192/400) of N-terminal dipeptides could implicate its potential role in linking periodontopathic disease to related systemic disorders.

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来源期刊
Biological Chemistry
Biological Chemistry 生物-生化与分子生物学
CiteScore
7.20
自引率
0.00%
发文量
63
审稿时长
4-8 weeks
期刊介绍: Biological Chemistry keeps you up-to-date with all new developments in the molecular life sciences. In addition to original research reports, authoritative reviews written by leading researchers in the field keep you informed about the latest advances in the molecular life sciences. Rapid, yet rigorous reviewing ensures fast access to recent research results of exceptional significance in the biological sciences. Papers are published in a "Just Accepted" format within approx.72 hours of acceptance.
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