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FpGalNase的结构基础及其与FpGalNAcDeAc结合以实现高效A到O血型转换

Structural basis of FpGalNase and its combination with FpGalNAcDeAc for efficient A-to-O blood group conversion.

作者信息

Zhou Meiling, Luo Kaishan, Su Chao, Sun Yan, Huang Zuyan, Ma Shuo, Gao Xun, Wang Jiwei, Zhang Chen, Han Pengcheng, Wu Guoqiu

机构信息

Jiangsu Provincial Key Laboratory of Critical Care Medicine, Advanced Institute for Life and Health, Center of Clinical Laboratory Medicine, Department of Pharmacy, School of Medicine, Zhongda Hospital, Southeast University, Nanjing, 210009, China.

出版信息

Exp Hematol Oncol. 2025 Jan 24;14(1):7. doi: 10.1186/s40164-025-00599-7.

Abstract

Transfusion safety and blood typing continue to present significant challenges in clinical practice, including risks of incorrect blood transfusions and blood shortages. One promising solution is the enzymatic conversion of all red blood cell (RBC) types into universal O-type RBCs. However, the major obstacle to this strategy is the relatively low catalytic efficiency of the enzymes involved. In this study, we investigated two enzymes from Flavonifractor plautii, N-acetylgalactosamine deacetylase (FpGalNAcDeAc) and galactosaminidase (FpGalNase), which demonstrate synergistic activity in efficiently converting A-type RBCs to O-type. We optimized treatment conditions, achieving over 99% conversion in just five minutes using phosphate buffer saline and a 16 nM enzyme concentration. Additionally, we engineered two fusion proteins, FpGalNAcDeAc-FpGalNase and FpGalNase-FpGalNAcDeAc, which showed a 28-fold increase in catalytic efficiency compared to the enzyme mixture. Using cryo-electron microscopy, we resolved the full-length structure of FpGalNase, identifying critical active site residues involved in its catalytic mechanism. This study provides essential structural and biochemical insights for clinical applications in blood group conversion, offering a promising approach for producing universal O-type RBCs.

摘要

输血安全和血型鉴定在临床实践中仍然面临重大挑战,包括输血错误和血液短缺的风险。一个有前景的解决方案是将所有红细胞(RBC)类型酶促转化为通用O型红细胞。然而,该策略的主要障碍是所涉及酶的催化效率相对较低。在本研究中,我们研究了来自普拉氏黄酮菌的两种酶,N-乙酰半乳糖胺脱乙酰酶(FpGalNAcDeAc)和半乳糖胺酶(FpGalNase),它们在将A型红细胞有效转化为O型红细胞方面表现出协同活性。我们优化了处理条件,使用磷酸盐缓冲盐水和16 nM的酶浓度,仅在五分钟内就实现了超过99%的转化率。此外,我们构建了两种融合蛋白,FpGalNAcDeAc-FpGalNase和FpGalNase-FpGalNAcDeAc,其催化效率比酶混合物提高了28倍。利用冷冻电子显微镜,我们解析了FpGalNase的全长结构,确定了其催化机制中涉及的关键活性位点残基。这项研究为血型转化的临床应用提供了重要的结构和生化见解,为生产通用O型红细胞提供了一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e115/11762096/7996dc72898e/40164_2025_599_Fig1_HTML.jpg

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