Lec 8 Flashcards

1
Q

“EXTREME” ENVIRONMENTS BASED ON: (5)

A
Temperature
Moisture
pH
Salinity
Contaminants
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2
Q

(LOW TEMPERATURE ENVIRONMENTS)

Sulfide gradients result in

A

microbial sulfur cycling

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3
Q

Cold adapted microbes synthesize

A

cold adapted enzymes which have higher activity at low temperatures

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4
Q

PSYCHROPHILES optimal temperature for growth =

A

-15 –> +15*C

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5
Q

(PSYCHROPHILES)

Membrane adaptations:

A
  1. ) Increase in unsaturation
  2. ) Decrease in average chain length
  3. ) Increase in methyl branching (only seen in bacteria)
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6
Q

(PSYCHROPHILES)

Proteins adaptations:

A
  1. ) Increase lysine:arginine ratios & reduced arginine / proline content
  2. ) Glycine clustering at catalytic site
  3. ) Decreased inter-domain & subunit ion, electrostatic, and aromatic interactions
  4. ) Increased hydrophobic surface residues / reduced core hydrophobic residues
  5. ) Increased size & number of enzyme cavities
  6. ) Increased mobility of catalytic site
  7. ) Extended surface loops (Predominance of neutral AAs) (Reduced proline content)
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7
Q

To battle ice, psychrophiles have

A

ice binding proteins (bind ice crystals and stop them from spreading)

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8
Q
  • Thermophiles grow optimally between =
  • Hyperthermophiles =
  • Most thermophiles isolated =
A

= 45-70C
= anything that can grow above 80
C
= archaea

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9
Q

(THERMOPHILES)

Membrane adaptations: (3)

A
  1. ) Decrease in unsaturation
  2. ) Increase in average chain length
  3. ) Presence of monolayers (Only in Archaea)
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10
Q

(THERMOPHILES)

Proteins adaptations: (6)

A
  1. ) Proteins are rigid
  2. ) More inter-subunit interactions
  3. ) Less and shorter loops
  4. ) More metal binding sites
  5. ) More electrostatic interactions
  6. ) Increased oligomerization
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11
Q

Heat-Adapted Proteins: Stabilizing Interactions

A
  1. ) Less cavities
  2. ) More ion pairs
  3. ) Less/shorter loops
  4. ) More AT/proteins (histones) associated
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12
Q

Microbes that live high pressure environment:

A

barophiles

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13
Q

High pressure has the same effects on cellular membranes as

A

low temperature

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14
Q

Barophiles’ proteins are

A

less flexible - so similar to high temperature organisms

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15
Q

(Barophiles)

The pressure can cause…

A

…normally fluid membranes to become waxy and impermeable to nutrients

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