+ All Categories
Transcript
Page 1: Canonical protein dynamics

Canonical protein dynamics

1

Differential equationFlowchart

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

𝛽𝛼

π‘₯ (𝑑 )

𝑑0

Solution

Page 2: Canonical protein dynamics

2

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

No translations

Physical picture of protein translation and degradation

No degradation for this protein

+No

chan

ge

Page 3: Canonical protein dynamics

Physical picture of protein translation and degradation

3

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

Chance translation

+

+

Page 4: Canonical protein dynamics

Physical picture of protein translation and degradation

4

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

No

chan

ge

Neglecting to roll dice on this freshly

generated protein.

+

Page 5: Canonical protein dynamics

Physical picture of protein translation and degradation

5

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+N

o ch

ange

+

Page 6: Canonical protein dynamics

Physical picture of protein translation and degradation

6

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

Page 7: Canonical protein dynamics

Physical picture of protein translation and degradation

7

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

No

chan

ge

Rolled dice for protein that was

already degraded!

+

Page 8: Canonical protein dynamics

Physical picture of protein translation and degradation

8

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

Page 9: Canonical protein dynamics

Physical picture of protein translation and degradation

9

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

Page 10: Canonical protein dynamics

Physical picture of protein translation and degradation

10

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

Chance translation

+

Page 11: Canonical protein dynamics

Physical picture of protein translation and degradation

11

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

+

Page 12: Canonical protein dynamics

Physical picture of protein translation and degradation

12

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

+

Page 13: Canonical protein dynamics

Physical picture of protein translation and degradation

17

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

+

Page 14: Canonical protein dynamics

Physical picture of protein translation and degradation

18

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ + +

+

+

Chance translation

+

Page 15: Canonical protein dynamics

Physical picture of protein translation and degradation

19

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ + +

+

+

+

Page 16: Canonical protein dynamics

Physical picture of protein translation and degradation

20

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ + +

+

+

+

Page 17: Canonical protein dynamics

Physical picture of protein translation and degradation

21

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ + +

+

+

+

Page 18: Canonical protein dynamics

Physical picture of protein translation and degradation

22

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

+

βˆ† 𝑑

Between times and

β‰…2degradations

(20 time steps ) (28 proteins )(ΒΏ time steps ) (ΒΏ proteins )Proteins lost

β‰…3 translations20 time steps

(ΒΏ time steps )Proteins added β‰… π›½βˆ† 𝑑

β‰… π›Όβˆ† 𝑑 π‘₯ (𝑑 0 )π‘₯ (𝑑 0+βˆ†π‘‘ )β‰… π‘₯ (𝑑 0 )+π›½βˆ† π‘‘βˆ’π›Όβˆ† 𝑑 π‘₯ (𝑑 0 )

π‘₯ (𝑑 0+βˆ†π‘‘ )βˆ’π‘₯ (𝑑 0 )β‰… π›½βˆ† π‘‘βˆ’π›Όβˆ† 𝑑 π‘₯ (𝑑 0 )

𝑑π‘₯𝑑𝑑 |𝑑=𝑑 0β‰…

π‘₯ (𝑑0+βˆ† 𝑑 )βˆ’π‘₯ (𝑑0 )βˆ† 𝑑

β‰… π›½βˆ’π›Ό π‘₯ ( 𝑑0 )

𝑑 0 +

Page 19: Canonical protein dynamics

Physical picture of protein translation and degradation

23

𝑑 (𝜏𝐷𝐼𝐢𝐸 )2 3 4 5 6 7 8 90 1 12 13 14 15 16 17 18 1910 11 20

Note: Proteins can be distinguished by momentary distortions.

+ +

+

+

+

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯

+

STOPLimitation!!! (But we all do it this it this way)

x (# proteins)

28

29

30

Realistic trajectory

Unrealistically smooth trajectory

f𝛽 𝛼

π‘₯

Page 20: Canonical protein dynamics

Canonical protein dynamics

24

Differential equationFlowchart

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

𝛽𝛼

π‘₯ (𝑑 )

𝑑0

Solution

Page 21: Canonical protein dynamics

𝛽𝛼

Time-course and rise time

25

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

Declare initial condition, for example, β€œstart at time 0 with no protein”

π‘₯ (0 )=0

Look for possible steady states

0=𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯𝑆𝑇

π‘₯ (𝑑 )

𝑑0

π‘₯𝑆𝑇=𝛽𝛼

Estimate some slopes

Page 22: Canonical protein dynamics

Time-course and rise time

26

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

π‘₯ (𝑑 )

𝑑

0

𝛽𝛼

𝑑π‘₯𝑑𝑑

=𝛼 ( π›½π›Όβˆ’π‘₯ )𝑠 (π‘₯ )

𝑠 (π‘₯ )=βˆ’π‘₯+𝛽𝛼

𝑠 (π‘₯ (0 ) )= 𝛽𝛼

𝑠 (π‘₯𝑆𝑇 )=βˆ’ 𝛽𝛼 +𝛽𝛼

=0

𝑑 𝑠𝑑𝑑

=𝑑𝑠𝑑π‘₯

𝑑π‘₯𝑑 𝑑

𝑑 𝑠𝑑𝑑

= 𝑑𝑑π‘₯ (βˆ’ π‘₯+ 𝛽

𝛼 ) 𝑑π‘₯𝑑𝑑

βˆ’π‘‘π‘ π‘‘ 𝑑

=𝛼 𝑠

βˆ«π‘‘=0

𝑑 𝑓1𝑠𝑑 𝑠𝑑𝑑

𝑑𝑑=βˆ’π›Ό βˆ«π‘‘=0

𝑑 𝑓

𝑑𝑑

βˆ«π‘ =𝑠 (π‘₯ (0 ))

𝑠 ( π‘₯ (𝑑 𝑓 ) )1𝑠𝑑 𝑠=βˆ’π›Ό ∫

𝑑=0

𝑑 𝑓

𝑑𝑑

𝑑 𝑠𝑑𝑑

=βˆ’π‘‘π‘₯𝑑𝑑

Page 23: Canonical protein dynamics

Time-course and rise time

27

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

π‘₯ (𝑑 )

𝑑

0

𝛽𝛼

𝑠 (π‘₯ )=βˆ’π‘₯+𝛽𝛼

𝑠 (π‘₯ (0 ) )= 𝛽𝛼

𝑠 (π‘₯𝑆𝑇 )=βˆ’ 𝛽𝛼 +𝛽𝛼

=0

𝑑 𝑠𝑑𝑑

=𝑑𝑠𝑑π‘₯

𝑑π‘₯𝑑 𝑑

𝑑 𝑠𝑑𝑑

= 𝑑𝑑π‘₯ (βˆ’ π‘₯+ 𝛽

𝛼 ) 𝑑π‘₯𝑑𝑑

βˆ«π‘ =𝑠 (π‘₯ (0 ))

𝑠 ( π‘₯ (𝑑 𝑓 ) )1𝑠𝑑 𝑠=βˆ’π›Ό ∫

𝑑=0

𝑑 𝑓

𝑑𝑑

ln (𝑠 (π‘₯ ( 𝑑 𝑓 )) )βˆ’ ln( 𝛽𝛼 )=βˆ’π›Ό [𝑑 𝑓 βˆ’0 ]

𝑑 𝑠𝑑𝑑

=βˆ’π‘‘π‘₯𝑑𝑑

ln ( 𝑠 (π‘₯ (𝑑 𝑓 ) )𝛽𝛼 )=βˆ’π›Όπ‘‘ 𝑓𝑠 (π‘₯ (𝑑 𝑓 ) )

𝛽𝛼

=π‘’βˆ’π›Όπ‘‘ 𝑓

𝑠=π›½π›Όπ‘’βˆ’π›Όπ‘‘ 𝑓

Page 24: Canonical protein dynamics

𝑇 12

Time-course and rise time

28

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

π‘₯ (𝑑 )

𝑑0

𝑠=π›½π›Όπ‘’βˆ’π›Όπ‘‘ 𝑓

𝛽2𝛼

𝛽𝛼

𝛽2𝛼

𝛽𝛼

𝛽2𝛼

𝛽𝛼

𝛽2𝛼

𝛽𝛼

𝛽2𝛼

𝛽𝛼

𝑇 12

=ln (2 )𝛼

STOPShow

Page 25: Canonical protein dynamics

𝑇 12

𝑇 12

𝑇 12

𝑇 12

𝑇 12

𝛽2𝛼

Time-course and rise time

29

𝑑π‘₯𝑑𝑑

=π›½βˆ’π›Ό π‘₯f

𝛽 𝛼π‘₯

π‘₯ (𝑑 )

𝑑0

𝑠=π›½π›Όπ‘’βˆ’π›Όπ‘‘ 𝑓

𝛽𝛼

𝑇 12

=ln (2 )𝛼


Top Related