Kandiba Lina, Guan Ziqiang, Eichler Jerry
Department of Life Sciences, Ben Gurion University of the Negev, Beersheva, Israel.
Biochim Biophys Acta. 2013 Mar;1828(3):938-43. doi: 10.1016/j.bbamem.2012.11.023. Epub 2012 Nov 29.
The S-layer glycoprotein is the sole component of the protein shell surrounding Haloferax volcanii cells. The deduced amino acid sequence of the S-layer glycoprotein predicts the presence of a C-terminal membrane-spanning domain. However, several earlier observations, including the ability of EDTA to selectively solubilize the protein, are inconsistent with the presence of a trans-membrane sequence. In the present report, sequential solubilization of the S-layer glycoprotein by EDTA and then with detergent revealed the existence of two distinct populations of the S-layer glycoprotein. Whereas both S-layer glycoprotein populations underwent signal peptide cleavage and N-glycosylation, base hydrolysis followed by mass spectrometry revealed that a lipid, likely archaetidic acid, modified only the EDTA-solubilized version of the protein. These observations are consistent with the S-layer glycoprotein being initially synthesized as an integral membrane protein and subsequently undergoing a processing event in which the extracellular portion of the protein is separated from the membrane-spanning domain and transferred to a waiting lipid moiety.
S层糖蛋白是环绕嗜盐嗜热栖热菌细胞的蛋白质外壳的唯一组成成分。S层糖蛋白推导的氨基酸序列预测存在一个C端跨膜结构域。然而,包括EDTA能够选择性溶解该蛋白在内的一些早期观察结果与跨膜序列的存在不一致。在本报告中,用EDTA然后用去污剂对S层糖蛋白进行顺序溶解,揭示了S层糖蛋白存在两种不同的群体。虽然两个S层糖蛋白群体都经历了信号肽切割和N-糖基化,但碱水解后进行质谱分析表明,一种脂质(可能是古菌酸)仅修饰了EDTA溶解的蛋白版本。这些观察结果与S层糖蛋白最初作为整合膜蛋白合成,随后经历一个加工过程一致,在该过程中,蛋白的细胞外部分与跨膜结构域分离并转移到一个等待的脂质部分。