2.6
The plasma membrane is the innermost layer of the cell envelope and regulates the selective permeability of the prokaryotic cell.
Bacterial plasma membranes are composed of a phospholipid bilayer. The fatty acids in a phospholipid are attached to a glycerol backbone through ester bonds.
In contrast, archaeal plasma membranes contain unique lipids with isoprene-derived hydrocarbons attached via ether bonds to glycerol.
Archaeal lipids include glycerol diethers, which typically form bilayers, and diglycerol tetraethers, which form monolayers. These monolayers provide increased rigidity, particularly to hyperthermophiles.
The ether links enhance the chemical stability of archaea, making them resistant to chemical attacks and high temperatures.
Additionally, many archaeal lipids contain cyclic rings, such as crenarchaeol in Thaumarchaeota, which enhance membrane stability by reducing permeability and fluidity.
Despite these chemical differences, the membranes of both domains have hydrophilic heads facing outwards and hydrophobic tails pointing inwards, making them selectively permeable.
Both bacterial and archaeal plasma membranes contain integral and peripheral membrane proteins that facilitate the transport of nutrients and ions through passive and active transport systems.
The plasma membrane is an essential cellular structure responsible for maintaining cellular integrity and regulating the selective transport of molecu…
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