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ADAM17 信号肽形成淀粉样聚集物的潜力。

Potential of ADAM 17 Signal Peptide To Form Amyloid Aggregates .

机构信息

School of Biosciences and Bioengineering, Indian Institute of Technology Mandi, VPO Kamand, Mandi, Himachal Pradesh 175075, India.

出版信息

ACS Chem Neurosci. 2023 Oct 18;14(20):3818-3825. doi: 10.1021/acschemneuro.3c00424. Epub 2023 Oct 6.

Abstract

ADAM 17, a disintegrin and metalloproteinase 17 belonging to the adamalysin protein family, is a Zn-dependent type-I transmembrane α-secretase protein. As a major sheddase, ADAM 17 acts as an indispensable regulator of chief cellular events and controls diverse cytokines, adhesion molecules, and growth factors. The signal peptide (residues 1-17) of ADAM 17 targets the protein to the secretory pathway and gets cleaved off afterward. No other function is documented for the ADAM 17 signal peptide (ADAM 17-SP) inside the cells. Here, we have taken a reductionist approach to understand the biophysical properties of ADAM 17-SP. Aiming to understand the possibility of aggregation, we found several aggregation-prone segments in the signal peptide. We performed experiments to show that the signal peptide forms amyloid-like aggregates in buffered conditions. We also studied its aggregation in the presence of sodium tripolyphosphate and heparin to correlate with the cellular conditions, as these biomolecules are naturally present inside cells. Further, we performed seeding experiments to observe the possibility of ADAM 17-SP aggregate interaction with the Aβ42 peptide. The results suggest that its seeds escalate the aggregation kinetics of the Aβ42 peptide and form heteromeric aggregates with it. We believe this finding could further intensify the aggregation studies on other signal peptides and shed light on the potential role of these segments other than signaling.

摘要

ADAM17 是解整合素金属蛋白酶 17,属于金属蛋白酶家族的 adamalysin 蛋白家族,是一种 Zn 依赖性的Ⅰ型跨膜α分泌酶蛋白。作为主要的剪切酶,ADAM17 是细胞内主要事件的不可或缺的调节因子,控制多种细胞因子、黏附分子和生长因子。ADAM17 的信号肽(残基 1-17)将蛋白质靶向分泌途径,随后被切割。目前还没有发现 ADAM17 信号肽(ADAM17-SP)在细胞内的其他功能。在这里,我们采用了一种简化的方法来了解 ADAM17-SP 的生物物理特性。为了了解聚集的可能性,我们在信号肽中发现了几个易于聚集的片段。我们进行了实验表明,在缓冲条件下,信号肽形成类似淀粉样的聚集物。我们还研究了它在三聚磷酸钠和肝素存在下的聚集,以与细胞内条件相关联,因为这些生物分子在细胞内自然存在。此外,我们进行了接种实验,观察 ADAM17-SP 聚集物与 Aβ42 肽相互作用的可能性。结果表明,其种子加速了 Aβ42 肽的聚集动力学,并与 Aβ42 肽形成杂合聚集物。我们相信这一发现可以进一步加强对其他信号肽的聚集研究,并阐明这些片段除了信号传递以外的潜在作用。

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