Okawa Kazuaki, Kijima Masashi, Ishii Mana, Maeda Nanako, Yasumura Yudai, Sakaguchi Masayoshi, Kimura Masahiro, Uehara Maiko, Tabata Eri, Bauer Peter O, Oyama Fumitaka
Department of Chemistry and Life Science, Kogakuin University, Hachioji, Tokyo, Japan.
Department of Chemistry and Life Science, Kogakuin University, Hachioji, Tokyo, Japan; School of Bioscience and Biotechnology, Tokyo University of Technology, Hachioji, Tokyo, Japan.
J Biol Chem. 2025 Jan;301(1):108100. doi: 10.1016/j.jbc.2024.108100. Epub 2024 Dec 18.
Accumulation of environmental chitin in the lungs can lead to pulmonary fibrosis, characterized by inflammatory infiltration and fibrosis in acidic chitinase (Chia)-deficient mice. Transgenic expression of Chia in these mice ameliorated the symptoms, indicating the potential of enzyme supplementation as a promising therapeutic strategy for related lung diseases. This study focuses on utilizing hyperactivated human Chia, which exhibits low activity. We achieved significant activation of human Chia by incorporating nine amino acids derived from the crab-eating monkey (Macaca fascicularis) Chia, known for its robust chitin-degrading activity. The modified human Chia retained high activity across a broad pH spectrum and exhibited enhanced thermal stability. The amino acid substitutions associated with hyperactivation of human Chia activity occurred species specifically in monkey Chia. This discovery highlights the potential of hyperactivated Chia in treating pulmonary diseases resulting from chitin accumulation in human lungs.
环境几丁质在肺部的积累可导致肺纤维化,在酸性几丁质酶(Chia)缺陷的小鼠中表现为炎症浸润和纤维化。在这些小鼠中Chia的转基因表达改善了症状,表明酶补充作为相关肺部疾病的一种有前景的治疗策略具有潜力。本研究聚焦于利用活性低的超活化人Chia。我们通过掺入来自食蟹猴(猕猴)Chia的九个氨基酸实现了人Chia的显著活化,食蟹猴Chia以其强大的几丁质降解活性而闻名。修饰后的人Chia在广泛的pH范围内保持高活性,并表现出增强的热稳定性。与人Chia活性超活化相关的氨基酸取代在猴Chia中具有物种特异性。这一发现突出了超活化Chia在治疗人类肺部几丁质积累所致肺部疾病方面的潜力。