Demidyuk Ilya V, Gromova Tania Yu, Kostrov Sergey V
Laboratory of Protein Engineering, Institute of Molecular Genetics, Russian Academy of Sciences, Kurchatov sq. 2, 123182, Moscow, Russia.
Protein Pept Lett. 2015;22(6):509-13. doi: 10.2174/0929866522666150428115611.
Two structurally distinct N-terminal propeptides are known in thermolysin-like proteases (TLPs). Propeptides of the first type are similar to the prosequence of thermolysin, while the second type propeptides resemble the protealysin propeptide. At the same time, the catalytic domains of all enzymes of the family are highly similar. The available data suggest that the propeptides determine the biological function of TLPs. It was shown that the thermolysin-type propeptides act as folding assistants, can inhibit cognate mature proteins, and influence their secretion. However, the functions of protealysin-like propeptides remain unclear. Here, we studied the effect of the propeptide on protealysin folding for the first time. After heterologous expression in E. coli cells, active enzyme is formed only in the presence of the propeptide either in cis or in trans. Thus, both types of TLP prosequences can function as folding assistants despite their structural dissimilarity and absolutely different interaction with the cognate catalytic domains as indicated by X-ray data.
在嗜热菌蛋白酶样蛋白酶(TLP)中已知有两种结构不同的N端前肽。第一种类型的前肽与嗜热菌蛋白酶的前序列相似,而第二种类型的前肽类似于蛋白酶解素前肽。同时,该家族所有酶的催化结构域高度相似。现有数据表明,前肽决定了TLP的生物学功能。已表明,嗜热菌蛋白酶型前肽可作为折叠辅助因子,能抑制同源成熟蛋白,并影响其分泌。然而,蛋白酶解素样前肽的功能仍不清楚。在此,我们首次研究了前肽对蛋白酶解素折叠的影响。在大肠杆菌细胞中进行异源表达后,只有在前肽存在的情况下,无论是顺式还是反式,才会形成活性酶。因此,尽管两种类型的TLP前序列结构不同,且如X射线数据所示,它们与同源催化结构域的相互作用完全不同,但都可以作为折叠辅助因子发挥作用。