Lec 8 Flashcards
“EXTREME” ENVIRONMENTS BASED ON: (5)
Temperature Moisture pH Salinity Contaminants
(LOW TEMPERATURE ENVIRONMENTS)
Sulfide gradients result in
microbial sulfur cycling
Cold adapted microbes synthesize
cold adapted enzymes which have higher activity at low temperatures
PSYCHROPHILES optimal temperature for growth =
-15 –> +15*C
(PSYCHROPHILES)
Membrane adaptations:
- ) Increase in unsaturation
- ) Decrease in average chain length
- ) Increase in methyl branching (only seen in bacteria)
(PSYCHROPHILES)
Proteins adaptations:
- ) Increase lysine:arginine ratios & reduced arginine / proline content
- ) Glycine clustering at catalytic site
- ) Decreased inter-domain & subunit ion, electrostatic, and aromatic interactions
- ) Increased hydrophobic surface residues / reduced core hydrophobic residues
- ) Increased size & number of enzyme cavities
- ) Increased mobility of catalytic site
- ) Extended surface loops (Predominance of neutral AAs) (Reduced proline content)
To battle ice, psychrophiles have
ice binding proteins (bind ice crystals and stop them from spreading)
- Thermophiles grow optimally between =
- Hyperthermophiles =
- Most thermophiles isolated =
= 45-70C
= anything that can grow above 80C
= archaea
(THERMOPHILES)
Membrane adaptations: (3)
- ) Decrease in unsaturation
- ) Increase in average chain length
- ) Presence of monolayers (Only in Archaea)
(THERMOPHILES)
Proteins adaptations: (6)
- ) Proteins are rigid
- ) More inter-subunit interactions
- ) Less and shorter loops
- ) More metal binding sites
- ) More electrostatic interactions
- ) Increased oligomerization
Heat-Adapted Proteins: Stabilizing Interactions
- ) Less cavities
- ) More ion pairs
- ) Less/shorter loops
- ) More AT/proteins (histones) associated
Microbes that live high pressure environment:
barophiles
High pressure has the same effects on cellular membranes as
low temperature
Barophiles’ proteins are
less flexible - so similar to high temperature organisms
(Barophiles)
The pressure can cause…
…normally fluid membranes to become waxy and impermeable to nutrients