Sikander Aqeel

BIO ALGEBRA OF LIVING ORGANISMS

Jun 20th 2016, 11:12 am
Posted by aqeelsika
358 Views

(Bio Mathematical Lab of Sikander Aqeel) 

CHAPTER [3] PROTEINS  

Proteins  

(6/21/2016) 

Polar and A-polar Proteins of the Amino acid R Group:  

It is important to have an appreciation for the relative hydrophobicity of the amino acids side chain in order to understand the role played by the different 

Amino acids in protein structure and function, the more hydrophobic Leucine, Isoleucine, Valine, Tyrosine, (uncharged) and Proline, 

In globular proteins the side chain R group from the more hydrophobic amino acid are folded into the interior of the protein molecule, away from the water salvation, Exception to the above rule may occur in small regions of the total protein molecule and are usually associate with a function of the protein such as providing a hydrophobic binding site for substrate or ligand molecules to the protein, Amino acids with intermediate polarity include the smaller alkyl amino acids, Glutamate, asparagines, threonine, serine, and methionine, these amino acids side chains are found both in the interior and on the solvent protein interface significant proportions, In contrast the amino acids containing charged R group at pH 7 [Lysine, arginine, histidine (charged), Glutamate and aspartate] are most always found on surface in globular protein, where the charge is stabilized by the water solvent, the rare positioning of a charged side chain into the interior of globular protein is usually correlated with an essential structure or functional role for the buried charged side chain group within the non-polar interior of the protein,    

 

GLUTAMATE 

Regular Structure of the Common Amino Acids 

 

----------COO- 

----------| 

----H3N – C – H             Regular structure of common amino acids,  

----------|     

----------R  

 

In the structure the ionized form for common amino acids that present in solution at 7.0 pH, is shown,  

 

For example, 

    = a2 + b2 = c2 

    = a2 (NH3) + b2 (H) = c2 

    = a2 (17.75) + b2 (1.25) = c2 

 

    = a2 (315.0625) + b2 (1.5625) = c2 

    = a + b = 316.625 = c2 

    = a + b = 316.625 / 44 (COO-) = 7.19 

    = a + b = 7 = pH  

 

GLUTAMATE 

Regular + Hydrophobic Structure of the Glutamate

    = a2 + b2 = c2 

    = a2 (NH3) + b2 (H) = c2 

    = a2 (17.75) + b2 (1.25) = c2 

 

    = a2 (315.0625) + b2 (1.5625) = c2 

    = a + b = 316.625 = c2 

    = a + b = 316.625 / 17.7 = 17.7 

 

    = a + b = 17.7 + 23.25 (Alpha C + H9 = 23.25) = 40.95

    = a + b = 40.95 + 33.675 (HO2 = 33.675) = 74.625 [Glutamate hydrophobic] 

 

    = a + b = 74.625 + 74.625 = 283.25 

    = a + b = 74.625 + R = 149.25      

    = a + b = 149.25 = [Glutamate hydrophobic]  

 

Here Glutamate = C + H9 = C5H9NO4 

Amino acids with intermediate polarity include the smaller alkyl amino acids, Glutamate, asparagines, threonine, serine, and methionine, these amino acids side chains are found both in the interior and on the solvent protein interface significant proportions, 

 

Reaction of Glutamate

    = a2 / b1 = c2 

    = a2 Glutamate / b1 hydrophobic = c2 

    = a2 149.25 / b1 33.675 (HO2) = c2 

 

    = a2 22275.5625 / b1 33.675 = c2 

    = a / b = 661.48 = c2 

    = a / b = 662 / 7 pH of water = 94.57

    = a / b = 95 + 54.25 (CH2OH + H2O + H3 = 54) = 149.25

    = a / b = 149.25 = [Glutamate hydrophobic] Helps to stop alcohol or natural sleepy and sugar cravings,

 

      H

      |

NH3 – C – COO- 

      | 

     R1 

Regular = C2H5NO2 = 64.25

 

Glutamate = 149.25 mole grams 

Regular = C2H5NO2 = 64.25 

 

    = a2 + b2 = c2 

    = a2 Glutamate + b2 Regular = c2  

    = a2 149.25 + b2 64.25 = c2 

 

    = a 22275.5625 + b 4128.0625 = c2 

    = a + b = 17875.625 = c2 

    = a + b = 17875.625 / 133.69 = 133.70

 

Enzymes number = 133.70

Enzymes number = 134

 

      H

      |

NH3 – C – COO- 

      | 

     R-2.085

Regular = R group = 2.085

Regular = 64.25 * 2.085 times = 149.25

 

Regular = 134 = C4H7NO4 = Aspartic acid (charged R group at pH 7) 

Regular = 134 / 33.675 (HO2) = 3.97

Regular = pH 3.97 = pH of any juice

 

 

61 TO 92 YEAR AGE 

61 to 92 year age = 65 heartbeat per minute 

Regular = Glutamate 149.25 + 134 Aspartic acid = 283.25   

 

            = a2 + b2 = c2 

            = a2 Glutamate + Aspartic acid + b2 heartbeat = c2   

            = a2 283.25 + b2 65 = c2  

 

 

            = 80230.5625 + 4225 = c2 

            = 80230.5625 + 4225 = c2  

 

            = a + b = 84455.5625 = c2 

            = a + b = 84455.5625 / 290.61 = 290.61

 

            = 290.61 / 149.25 (Glutamate) = 1.94

            = 290.61 / 134 (Aspartic acid) = 2.16

 

            = 4.1 % (Glutamate + Aspartic acid) in 61 to 92 year age, 

 

 

 

31 TO 61 YEAR AGE 

31 to 61 year age = 75 heartbeat per minute 

Regular = Glutamate 149.25 + 134 Aspartic acid = 283.255   

 

            = a2 + b2 = c2 

            = a2 Glutamate + Aspartic acid + b2 heartbeat = c2   

            = a2 283.25 + b2 75 = c2  

 

 

            = 80230.5625 + 5625 = c2 

            = 80230.5625 + 5625 = c2  

 

            = a + b = 85855.5625 = c2 

            = a + b = 85855.5625 / 293.0 = 293.0

 

            = 293.0 / 149.25 (Glutamate) = 1.96

            = 293.0 / 134 (Aspartic acid) = 2.18

 

            = 4.21 % (Glutamate + Aspartic acid) in 31 to 61 year age, 

 

1 TO 31 YEAR AGE 

1 to 31 year age = 120 heartbeat per minute 

Regular = Glutamate 149.25 + 134 Aspartic acid = 283.25   

 

            = a2 + b2 = c2 

            = a2 Glutamate + Aspartic acid + b2 heartbeat = c2   

            = a2 283.25 + b2 120 = c2  

 

 

            = 80230.5625 + 14400 = c2 

            = 80230.5625 + 14400 = c2  

 

            = a + b = 94630.5625 = c2 

            = a + b = 94630.5625 / 307.62 = 307.62

 

            = 307.62 / 149.25 (Glutamate) = 2.06

            = 307.62 / 134 (Aspartic acid) = 2.29

 

            = 4.35 % (Glutamate + Aspartic acid) in 1 to 31 year age, 

 

The heart beating rate of one year child is 120 times per minute, and heartbeat increases quantity of amino acids into the cells, 

 

4.1 % (Glutamate + Aspartic acid) will be called non process of protein 

4.14 % (Glutamate + Aspartic acid) will be called low process of protein 

4.35 % (Glutamate + Aspartic acid) will be called full process of protein 

 

4.35 % (Glutamate + Aspartic acid) will be called full process of protein 

4.35 % (Glutamate + charged R group at pH 7) will be called full process of protein, 

One of two excitatory neurotransmitters, the other being aspartic acid/asparagine,

 

Bookmark & Share:

Please Like Us
Please Like Us