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S-腺苷甲硫氨酸脱羧酶的多温度晶体学研究观察到动态环运动。

Multi-Temperature Crystallography of S-Adenosylmethionine Decarboxylase Observes Dynamic Loop Motions.

作者信息

Patel Jenitha R, Bonzon Timothy J, Bakht Timothy F, Fagbohun Omowumi O, Clinger Jonathan A

机构信息

Department of Chemistry and Biochemistry, Baylor University, One Bear Place 97348, Waco, TX 76798, USA.

出版信息

Biomolecules. 2025 Sep 3;15(9):1274. doi: 10.3390/biom15091274.

Abstract

S-adenosylmethionine decarboxylase (AdoMetDC) is an essential enzyme in the polyamine biosynthesis pathway and plays a key role in the synthesis of the polyamines spermidine and spermine, polycationic alkylamines that are present in millimolar levels in mammalian cells. Polyamines are metabolic molecules that are involved in many fundamental processes, including regulation of protein and nucleic acid synthesis, stabilization of chromatin, differentiation, apoptosis, protection from oxidation, and regulation of ion channels. Multiple oncogenic pathways lead to dysregulation of polyamines, making polyamines a potential biomarker for cancer and polyamine biosynthesis a target for therapeutic intervention. This study uses multi-temperature crystallography to probe the structure and dynamics of AdoMetDC by collecting diffraction data at 100 K, 273 K, and 293 K. Differential loop behavior is observed across the collected datasets, with dramatic residue rearrangements. In the loop containing residues 20-28, the ambient temperature datasets show a large motion relative to the cryo structure. In a second loop containing residues 164-174, previous cryo structures do not report ordered positions. This loop is ordered in our 100 K structure, while assuming different conformations in the 273 K and 293 K data. These results further illustrate the usefulness of ambient data collection for understanding the structure and dynamics of proteins, especially in loop regions which are less restrained than protein cores.

摘要

S-腺苷甲硫氨酸脱羧酶(AdoMetDC)是多胺生物合成途径中的一种关键酶,在多胺亚精胺和精胺的合成中起关键作用,多胺是哺乳动物细胞中以毫摩尔水平存在的聚阳离子烷基胺。多胺是参与许多基本过程的代谢分子,包括蛋白质和核酸合成的调节、染色质的稳定、分化、凋亡、抗氧化保护以及离子通道的调节。多种致癌途径导致多胺失调,使多胺成为癌症的潜在生物标志物,多胺生物合成成为治疗干预的靶点。本研究使用多温度晶体学,通过在100 K、273 K和293 K收集衍射数据来探测AdoMetDC的结构和动力学。在收集的数据集上观察到不同的环行为,有显著的残基重排。在包含残基20 - 28的环中,常温数据集显示相对于低温结构有较大运动。在包含残基164 - 174 的第二个环中,之前的低温结构未报告有序位置。该环在我们的100 K结构中是有序的,而在273 K和

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