Introcution to protein crystallography using x-ray and neutron diffraction Flashcards

1
Q

Why do we use crystals instead of individual proteins for x-ray or neutron visualisation?

A

Because the scattered light would be too tiny to detect.

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2
Q

What are the problems you may encounter when generating protein crystals?

A
  1. Poor protein instability.
  2. Poor protein solubility.
  3. Poor protein expression in cells.
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3
Q

Why is it important to reduce salt concentraition in your protein solution?

A

Because the salt is more prone to crystalisation than proteins.

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4
Q

Explain the experimental setup of generating a protein crystal.

A
  1. Pure protein solution is mixed with precipitate (solution which is supposed to induce crystalisation).
  2. Place the drop on the lid of a reservoir (well), which contains precipitate.
  3. Incubate at 6-20 degrees.
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5
Q

When interpreting protein crystals, what do you need to keep in mind?

A

Keep in mind that the protein is outside of its physiological context as well as that the structure is a snapshot of its conformation.

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6
Q

There are three methods that can be used in order to achieve crystalisation, which?

A
  1. Vapour diffusion (drop from the lid of a reservoir). [precipitant in drop] is initially lower than [precipiate in reservoir], then, water gets evaporated from the drop, increasing the [precipitate].
  2. Batch. Mix protein and precipitants and hope for good circumstances.
  3. Dialysis. Dialysis membrane is used to allow fresh precipitate to reach the protein crystal nucleus over time.
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7
Q

What’s the idea behind a microseed stock?

A

You got a big protein crystal which you crush, then use for seeding other crystals.

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8
Q

How do you verify that your crystals are in fact protein crystals and not salt crystals?

A

Check absorption UV280nm.

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9
Q

You can prepare your crystals for data collection in room temperature or frozen. What are the pros and cons?

A

Pros RT
- No damage from cryopreservatives.
- The protein is visualized at conditions closer to physiological ones.

Pros Cryo
- Easy to do
- Easy to store
- Samples are protected from x-ray damaging.

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10
Q

What is a synchotron and how does it work?

A

A synchotron is a small particle accelerator. Electrons are accelerated, then, abruptly, the travelling direction is changed. This generates x-ray radiation.

Diffracted x-rays from the crystal which has been targeted are collected.

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11
Q

X-rays scatter of (1) ___.
Neutrons scatter of (2)_____.

A

(1) Electron clouds.
(2) The nucleus.

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12
Q

Is neutron crystallography as common as x-ray crystallography?

A

No. There’s 5 reactors.

Neutrons are gathered from the radiactive decay of U-235.

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13
Q

Is neutron crystallography as common as x-ray crystallography?

A

No. There’s 5 reactors.

Neutrons are gathered from the radiactive decay of U-235.

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14
Q

What can neutrons distinguish that electrons cant?

A

Isotopes. Ex: C-13, C-14.

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15
Q

Why is it beneficial to exchange hydrogen for deuterium during nuetron crystallography?

A

Neutrons don’t effectively visualize hydrogen. Deuterium is heavier, by visualising them, you get an idea of the electrostatic static / hydrogen bonds that are found in the protein.

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