scholarly journals A promiscuous archaeal cardiolipin synthase generating a variety of cardiolipins and phospholipids

2020 ◽  
Author(s):  
Marten Exterkate ◽  
Niels A. W. de Kok ◽  
Ruben L. H. Andringa ◽  
Niels H. J. Wolbert ◽  
Adriaan J. Minnaard ◽  
...  

AbstractCardiolipin (DPCL) biosynthesis has barely been explored in Archaeal isoprenoid-based ether lipid membranes. Here, we identified a cardiolipin synthase (MhCls) from the mesophilic anaerobic methanogen Methanospirillum hungatei. The enzyme was overexpressed in Escherichia coli, purified, and subsequently characterized by LC-MS. MhCls utilizes two archaetidylglycerol molecules in a transesterification reaction to synthesize archaeal di-phosphate cardiolipin (aDPCL) and glycerol. The enzyme is invariant to the stereochemistry of the glycerol-backbone and the nature of the lipid tail, as it also accepts phosphatidylglycerol to generate di-phosphate cardiolipin (DPCL). Remarkably, in the presence of archaetidylglycerol and phosphatidylglycerol, MhCls formed an archaeal-bacterial hybrid di-phosphate cardiolipin (hDPCL), that so far has not been observed in nature. Due to the reversibility of the transesterification, cardiolipin can be converted back in presence of glycerol into phosphatidylglycerol. In the presence of other compounds that contain primary hydroxyl groups (e.g. alcohols, water, sugars) various natural and unique artificial phospholipid species could be synthesized, including multiple di-phosphate cardiolipin species. Moreover, MhCls could utilize a glycolipid in the presence of phosphatidylglycerol to form a glycosyl-mono-phosphate cardiolipin, emphasizing the promiscuity of this cardiolipin synthase.

2013 ◽  
Vol 2013 ◽  
pp. 1-14 ◽  
Author(s):  
Daniel Łowicki ◽  
Adam Huczyński

In this paper structural and microbiological studies on the ionophorous antibiotic monensin A and its derivatives have been collected. Monensin A is an ionophore which selectively complexes and transports sodium cation across lipid membranes, and therefore it shows a variety of biological properties. This antibiotic is commonly used as coccidiostat and nonhormonal growth promoter. The paper focuses on both the latest and earlier achievements concerning monensin A antimicrobial activity. The activities of monensin derivatives, including modifications of hydroxyl groups and carboxyl group, are also presented.


e-Polymers ◽  
2010 ◽  
Vol 10 (1) ◽  
Author(s):  
Meng Zhang ◽  
Yuanjuan Wu ◽  
Qingsi Zhang ◽  
Tianduo Li

AbstractA novel polydimethylsiloxane containing two primary hydroxyl groups at one single chain end was synthesized by five-step reactions which included esterification, hydroxyl protection, anionic ring-opening polymerization, hydrosilylation and deprotection. The prepared compounds in each step were characterized. The results showed that at each step synthesis was successfully carried out and objective products could be achieved.


FEBS Letters ◽  
1995 ◽  
Vol 368 (2) ◽  
pp. 315-320 ◽  
Author(s):  
Shigenori Iwai ◽  
Shin Kataoka ◽  
Makoto Wakasa ◽  
Eiko Ohtsuka ◽  
Haruki Nakamura

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