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人神经氨酸酶 Neu3 发生 S-酰化作用并表现为一种完整的膜蛋白。

Human Sialidase Neu3 is S-Acylated and Behaves Like an Integral Membrane Protein.

机构信息

Centro de Investigaciones en Química Biológica de Córdoba, CIQUIBIC, CONICET and Departamento de Química Biológica Ranwel Caputto, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, Córdoba, X5000HUA, Argentina.

出版信息

Sci Rep. 2017 Jun 23;7(1):4167. doi: 10.1038/s41598-017-04488-w.

Abstract

Membrane-bound sialidase Neu3 is involved in the catabolism of glycoconjugates, and plays crucial roles in numerous biological processes. Since the mechanism of its association with membranes is still not completely understood, the aim of this work was to provide further information regarding this aspect. Human Neu3 was found to be associated with the plasma membrane and endomembranes, and it was not released from the lipid bilayer under conditions that typically release peripheral membrane proteins. By different experimental approaches, we demonstrated that its C-terminus is exposed to the cytosol while another portion of the protein is exposed to the extracellular space, suggesting that Neu3 possesses the features of a transmembrane protein. However, in silico analysis and homology modeling predicted that the sialidase does not contain any α-helical transmembrane segment and shares the same β-propeller fold typical of viral and bacterial sialidases. Additionally, we found that Neu3 is S-acylated. Since this post-translational modification is restricted to the cytosolic side of membranes, this finding strongly supports the idea that Neu3 may contain a cytosolic-exposed domain. Although it remains to be determined exactly how this sialidase crosses the lipid bilayer, this study provides new insights about membrane association and topology of Neu3.

摘要

膜结合唾液酸酶 Neu3 参与糖缀合物的分解代谢,在许多生物学过程中发挥着关键作用。由于其与膜结合的机制尚不完全清楚,本工作旨在提供这方面的进一步信息。发现人 Neu3 与质膜和内膜结合,并且在通常释放外周膜蛋白的条件下,它不会从脂质双层中释放出来。通过不同的实验方法,我们证明其 C 端暴露于细胞质,而蛋白质的另一部分暴露于细胞外空间,这表明 Neu3 具有跨膜蛋白的特征。然而,计算机分析和同源建模预测该唾液酸酶不含有任何 α-螺旋跨膜片段,并且与病毒和细菌唾液酸酶共享相同的β-三叶桨折叠。此外,我们发现 Neu3 被 S 酰化。由于这种翻译后修饰仅限于膜的细胞质侧,这一发现强烈支持 Neu3 可能含有一个暴露于细胞质的结构域的观点。尽管确切地确定这种唾液酸酶如何穿过脂质双层还有待确定,但本研究提供了关于 Neu3 膜结合和拓扑结构的新见解。

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