Sikander Aqeel

BIO ALGEBRA OF LIVING ORGANISMS

Jun 8th 2016, 11:05 am
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(Bio Mathematical Lab of Sikander Aqeel) 

CHAPTER [3] PROTEINS  

Proteins  

(6/8/2016) 

Amino Acid Composition of Proteins:  

It is amazing that all the different types of proteins are initially synthesized as polymers of only 20 amino acids, known as the common amino acids, the common amino acids are defined as those amino acids for which a specific codon exists in the DNA genetic code, there are 20 amino acids for which DNA codon are known, the process of the reading of the DNA code, resulting in the polymerization of amino acids of a specific sequence into the proteins based on the DNA code, In this chapter we shall discus only the protein of this genetically controlled synthetic process,  

 

In addition to the common amino acids, derived amino acids are found in proteins, derived amino acids are found from one of the common amino acids, usually by an enzyme-facilitated reaction, after the common amino acids has been incorporated into the proteins structure, 

 

Regular Structure of the Common Amino Acids, 

The common amino acids have the regular structure, they contain on common a central (Alpha) carbon atom, to which a carboxyl acid group an amino group, and a hydrogen atom are covalently bonded, the (Alpha) a-carbon atom binds a side chain group designated R, that is different for each of the 20 amino acids, 

 

ASPARTIC ACID 

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  

 

ASPARTIC ACID 

Regular + Biological Structure of the Aspartic acid

    = 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 + 19.5 (Alpha C + H6 = 19.5) = 37.2

    = a + b = 37.2 + 29.55 (CH + CH + H3 = 30.25) = 66.75 [Aspartic acid increses activity of liver] 

 

    = a + b = 66.75 + 66.75 = 133.5 

    = a + b = 66.75 + R = 133.5      

    = a + b = 133.5 = Aspartic acid (By Regular Structure of the Common Amino Acids)  

 

Monoamino dicorboxylic                   

 

              COO- 

              | 

        H3N – C - H              Aspartic acid = H6

              | 

             CH2 

              | 

             COO-  

 

Here Aspartic acid = C + H6 = C4H6NO4 

The a-amino is proton-ate and in its ammonium ion form: the carbonxylic acid group is in its unproton-ate or carboxyl ate form, 

 

Reaction of Aspartic acid

    = a2 / b1 = c2 

    = a2 Aspartic acid / b1 Time = c2 

    = a2 133.5 / b1 24 hours = c2 

 

    = a2 17822.25 / b1 24 hours = c2 

    = a / b = 742.59 = c2 

    = a / b = 743 / 7 pH of water = 106.14

    = a / b = 106 + 27.5 (N2 of ammonia = 27.5) = 133.5

    = a / b = 133.5 = Aspartic acid 

So Aspartic acid Helps protect the liver by aiding the removal of ammonia.  

 

ASPARTIC ACID ENZYMES, HEAM, GLOBIN, AND HEMOGLOBIN

The enzymes are kind of Time-acids, the world of enzymes belongs with 48 hours of one day, if your age is 48 year today, that your enzymes has worked 96 years, and this process increases to age system, and from this reason the enzymes speed occurs faster for catalyst, 

 

Aspartic acid = 133.5 mole grams 

Aspartic acid enzymes = 48 hours time of dabble speed 

 

    = a2 + b2 = c2 

    = a Aspartic acid + b time = c2  

    = a133.5 + b48 hours = c2 

 

    = a 17822.25 + b 2304 = c2 

    = a + b = 20126.25 = c2 

    = a + b = 20126.25 / 141.8 = 141.9

 

Enzymes number = 141.9 * 141.9 = 20135.61

Enzymes number = Time * Amino Acid = 20135.61

Aspartic acid enzymes number = 20135.61

 

HEMOGLOBIN 

ATP 

Glucose 6-phosphate = 3.204 kcal

               Gene = 15         (15 * 0.008 Photons = 0.12)   

 

    = a2 + b2 = c2 

    = a Aspartic acid + b time = c2  

    = a 133.5 + b48 hours = c2 

 

    = a 17822.25 + b 2304 = c2 

    = a + b = 20126.25 = c2 

    = a + b = 20126.25 * 3.204 = 64484.505

    = a + b = 64485 + 15 = 64500.00 

    = a + b = 64500.00 = molecular weight of hemoglobin 

 

Here (3.204 kcal energy change during hydrolysis ATP) glucose 6-phosphate = 3.204 kcal, One variation of Aspartic acid namely Phosphotidyl Aspartic acid  

 

DIVISION OF HEAM AND GLOBIN 

Heam = two Iron = Fe2 = 56 + 56 = 112 

Globin = proteins = 576 polypeptide chain  

 

Hemoglobin = 64500.00 / 112 Fe2 = 575.89 

           = 576 / 7.4 pH = 77.83 

           = 77.83 + 55.67 (3H2O = 55.5) = 133.5 

           = 133.5 = Aspartic acid amino acids with water 

 

DIVISION OF HEAM AND GLOBIN 

Heam = two Iron = Fe2 = 56 + 56 = 112 

Globin = proteins = 576 polypeptide chain  

 

Hemoglobin = 64500.00 / 112 Fe2 = 575.89 

           = 576 / 3.75 (H3= G///C) = 153.6 

           = 153.6 / 1.150 pH = 133.54

           = 133.5 = C4H7NO4 = Aspartic acid 

 

GENETIC CODE FROM ASPARTIC ACID 

16 permutation of four-Letter code taken by pairs 

Human bones = 206 

Human chromosomes = 46.25 

Aspartic acid = 133.5  

Guanine = 151.13 g/mol = (G) 

 

Human bones = 206 * 46.25 = 9527.5 

            = 9527.5 = total genetic codes of 206 bones,   

 

 

            = a2 + b2 = c2 

            = a2 genetic codes + b2 Aspartic acid = c2   

            = a2 9527.5 + b2 133.5 = c2  

 

 

            = 90773256.25 + 17822.25 = c2 

            = 90773256.25 + 17822.25 = c2  

 

            = a + b = 90791078.5 = c2 

            = a + b = 90791078.5 / 9528.43 = 9528.44

            = 9528 / 151.13 (G) = 63.04 

            = 63 / 10.5 gene = 6 

            = 6 = GAU GAC, Aspartic acid genetic code 

 

            = genetic mutation = 10.5 gene by Aspartic acid 

            = genetic mutation = 10.5 gene into the artery cells, 

So 21 genes happening disorder per day by law of enzymes speed, 

 

SEARCH OF GENETIC MUTATION

Enzymes speed = 120 minute (by 48 hours a day) 

      Guanine = 151.13

 

            = a2 + b2 = c2 

            = a2 enzymes + b2 G = c2   

            = a2 120 + b2 151.13 = c2  

 

 

            = 14400 + 22840.2769 = c2 

            = 14400 + 22840.2769 = c2  

 

            = a + b = 37240.2769 = c2 

            = a + b = 37240.2769 / 192.97 = 192.98  

 

            = 193 / 9.19 (H7) = 21

            = 21 = gene, 

So 21 genes happening disorder per day by law of enzymes speed, 

 

 

 

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