bioenergetika 1

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BIOENERGETIC

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Page 1: BIOENERGETIKA 1

BIOENERGETIC

Page 2: BIOENERGETIKA 1

• ENERGY IS DEFINED AS THE CAPACITY TO DO WORK

• DIFFERENT KINDS OR STATES OF ENERGY : POTENSIAL, KINETIC, THERMAL, ELECTRICAL AND RADIANT ENERGY

• DIFFERENT KINDS OF WORK: MECHANICAL, ELECTRICAL AND OSMOTIC WORK.

Page 3: BIOENERGETIKA 1

BIOENERGETICS IS THE TERM TO DESIGNATE THE STUDY OF ENERGY TRANSFORMATIONS IN LIVING ORGANISMS.

Page 4: BIOENERGETIKA 1

sun

PhotoSyntheticcells

Heterotrophyc cells

Chemical energy

WorkDone In theEnvir.

entrophy

Radiant energy

Page 6: BIOENERGETIKA 1

respiration

FuelMol AndO2

ATP

Biosynthesis

Mechanical work

TRANSPORT WORK

ADP + PiCO2

H2O

Page 7: BIOENERGETIKA 1
Page 8: BIOENERGETIKA 1

THE SYSTEM FREE ENERGY

ALWAYS DECREASESENTROPY MAY INCREASE,

STAY CONSTANT OR DECREASE

THE SURROUNDINGSENTROPY MAY INCREASE,STAY CONSTANT OR DECREASE

HEAT MAY PASS BETWEEN THE SYSTEM AND THE SURROUNDINGS

Page 9: BIOENERGETIKA 1

ENTROPY : DISORDER/ RANDOMNESS (S)FREE ENERGY (G). G IS THE CHANGES IN FREE ENERGY OF THE SYSTEM ALONE E IS THE CHANGE IN TOTAL ENERGY OF THE SYSTEM G = E –T S

Page 10: BIOENERGETIKA 1

G NEGATIVE = EXERGONIC/ SPONTANT

G POSITIVE = ENDERGONIC

H = ENTHALPY HEAT CONTENT

Page 11: BIOENERGETIKA 1

FREEENERGY

C

A

D

B

HEAT

A+C B+D

Page 12: BIOENERGETIKA 1

• THE FIRST LAW OF THERMODYNAMICS : ENERGY CAN BE NEITHER CREATED NOR DESTROYED THE TOTAL ENERGY OF THE UNIVERSE IS CONSTANT

• THE SECOND LAW :

THE ENTROPY OF THE UNIVERSE ALWAYS INCREASES

Page 14: BIOENERGETIKA 1
Page 15: BIOENERGETIKA 1

Adenosine 5' triphosphate

Page 16: BIOENERGETIKA 1
Page 17: BIOENERGETIKA 1

                                                                                                     

Phosphoric Acid Anhydride Linkages

Page 18: BIOENERGETIKA 1

Adenosine 5' diphosphate

Page 19: BIOENERGETIKA 1

Hidrolysis ATP

Page 20: BIOENERGETIKA 1

Pyrophosphate

Page 21: BIOENERGETIKA 1

Adenosine 5' monophosphate

Page 22: BIOENERGETIKA 1

Phosphoenol pyruvate

Page 23: BIOENERGETIKA 1

Hydrolysis phosphoenol pyruvate

Page 24: BIOENERGETIKA 1

Creatine phosphate

Page 25: BIOENERGETIKA 1

Acetyl phosphate

Page 26: BIOENERGETIKA 1

COMPOUNDS G

Kcal/mole

Direction of phosphate group transfer

PEP -14.8

1,3-DIPHOSPHO

GLYCERATE

-11.8

PHOSPHO

CREATINE

-10.3

ACETYL PHOSPHATE

-10.1

Page 27: BIOENERGETIKA 1

ATP -7.3G-1-P -5.0

F-6-P -3.8

G-6-P -3.3

3-PHOSPHO

GLYCERATE

-2.4

GLYCEROL-3-P -2.2

ATP-ADP : DONOR AND ACCEPTOR PHOSPHATE INTERMEDIATE

Page 28: BIOENERGETIKA 1

PHOSPHORYLATED COMPOUNDS IN THE CELL

• HIGH ENERGY PHOSPHATE AND LOW ENERGY PHOSPHATE

• THERE IS NO SUCH SHARP DIVISION

• ATP- ADP SYSTEMACT AS AN INTERMEDIATE LINKING SYSTEM BETWEEN PHOSPHATE COMPOUNDS HAVING A HIGH PHOSPHATE GROUP TRANSFER POTENTIAL AND A LOW ONE.

Page 29: BIOENERGETIKA 1

0

2

4

6

8

10

12

14

16

0 5 10 15

DE

LT

A G

(K

CA

L)

PEP1,3-DPGPCACPATPG-1-PF-6-PG-6-P3-PGGLY-3-P

Page 30: BIOENERGETIKA 1

• X-P + ADP X + ATP

• ATP + Y ADP + Y-P

• X-P DENOTES A HIGH ENERGY PHOSPHATE DONOR MOLECULE

• Y IS A PHOSPHATE ACCEPTOR

• ATP IS THE COMMON INTERMEDIATE

Page 31: BIOENERGETIKA 1

3',5'-cyclic Adenosine monophosphate