Insulin discret code 1128
Insulin discret code is an area of bio-macromolecules and processes in biochemistry (chemical engineering, bioprocess engineering, information technology, biorobotics) that treats signals as stochastic processes, dealing with their biosignal properties (e.g., frequences, mean, covariance, etc.).
In this context, discret code are modeled as functions consisting of both deterministic and stochastic components. A simple example and also a common model of many bio systems is a signal Bio(t) that consists of a deterministic part x(t) as white discret code.
DC(t) = [X1,2,3,n + X1,2,3,n]
DC(t) = Discret code 1128;
etc.
where X1,2,3,n represent number of atoms
Table 1 Overview of the mathematical balance between of the number of atoms of the amino
acids in insulin
Amino acids | Number of atoms | | Amino acids | Number of atoms | | Amino acids | Number of atoms |
I,Q,H | 1128 | | Q,S,F,H | 1128 | | G,C,T,A | 1128 |
I,E,K | 1128 | | V,S,F,K | 1128 | | G,C,N,A | 1128 |
G,I,Q | 1128 | | E,S,F,K | 1128 | | I,F,A,P,K | 1128 |
I,V,K | 1128 | | C,N,H,A | 1128 | | Q,N,H,A,K | 1128 |
V,F,H,R | 1128 | | C,T,H,A | 1128 | | Q,T,H,A,K | 1128 |
E,F,H,R | 1128 | | G,E,F,R | 1128 | | E,S,H,A,P | 1128 |
Y,N,P,K | 1128 | | G,V,F,R | 1128 | | V,S,H,A,P | 1128 |
T,Y,P,K | 1128 | | G,T,N,F | 1128 | | G,Q,N.A,K | 1128 |
T,N,F,H | 1128 | | G,Q,S,F | 1128 | | G,E,S,A,P | 1128 |
Q,T,N,R | 1128 | | G,C,H,K | 1128 | | G,V,S,A,P | 1128 |
S,Y,R,K | 1128 | | - | - | | - | - |
etc.
The molecule of insulin we can understand as words built from letters, i.e. aminoacids. The meaning of words is determined by positioning of letters. Each of these words has its biochemical base. If this base is expressed by corresponding discrete numbers, we find out that the base has its own program, cybernetic and information characteristics. In fact, we will find out that the sequencing of the molecule is conditioned and determined not only by biochemical, but also by cybernetic and information principles. For this reason, in this research we will deal more with quantitative, and less with qualitative characteristics of the genetic information and its biochemical foundation.
Programmatic and cybernetic algorithm
We shall now give some mathematical evidences that will prove that in the biochemistry of insulin there really is programmatic and cybernetic algorithm in which it is „recorded“, in the language of mathematics, how the molecule will be built and what will be the quantitative characteristics of the given genetic information. (Figure 2).
I,Q,H |
| | | | 188 atoms | | | ||
I | Q | I | Q | Q | H | I | H | I |
22 | 20 | 22 | 20 | 20 | 20 | 22 | 20 | 22 |
2 | 5 | 10 | 15 | 25 | 26 | 27 | 31 | 46 |
| | | | 188 atoms | | | ||
I | Q | I | Q | Q | H | I | H | I |
22 | 20 | 22 | 20 | 20 | 20 | 22 | 20 | 22 |
53 | 56 | 61 | 66 | 76 | 77 | 78 | 82 | 97 |
(22+20+22…, + 22) = 188; (22+20+22…, + 22) = 188;
(53+56+61…,+97) – (2+5+10…, + 46) = 459;
| | | | 188 atoms | | | ||
I | Q | I | Q | Q | H | I | H | I |
22 | 20 | 22 | 20 | 20 | 20 | 22 | 20 | 22 |
104 | 107 | 112 | 117 | 127 | 128 | 129 | 133 | 148 |
| | | | 188 atoms | | | ||
I | Q | I | Q | Q | H | I | H | I |
22 | 20 | 22 | 20 | 20 | 20 | 22 | 20 | 22 |
155 | 158 | 163 | 168 | 178 | 179 | 180 | 184 | 199 |
(155+158+163…,+199) – (104+107+112…, + 148) = 459;
| | | | 188 atoms | | | ||
I | Q | I | Q | Q | H | I | H | I |
22 | 20 | 22 | 20 | 20 | 20 | 22 | 20 | 22 |
206 | 209 | 214 | 219 | 229 | 230 | 231 | 235 | 250 |
| | | | 188 atoms | | | ||
I | Q | I | Q | Q | H | I | H | I |
22 | 20 | 22 | 20 | 20 | 20 | 22 | 20 | 22 |
257 | 260 | 265 | 270 | 280 | 281 | 282 | 286 | 301 |
(188 x 6) = 1128;
(257+260+265…,+301) – (206+209+214…, + 250) = 459;
etc.
I,E,K
| | | | 188 atoms | | | ||
I | E | I | E | I | E | E | I | K |
22 | 19 | 22 | 19 | 22 | 19 | 19 | 22 | 24 |
2 | 4 | 10 | 17 | 27 | 34 | 42 | 46 | 50 |
| | | | 188 atoms | | | ||
I | E | I | E | I | E | E | I | K |
22 | 19 | 22 | 19 | 22 | 19 | 19 | 22 | 24 |
53 | 55 | 61 | 68 | 78 | 85 | 93 | 97 | 101 |
| | | | 188 atoms | | | ||
I | E | I | E | I | E | E | I | K |
22 | 19 | 22 | 19 | 22 | 19 | 19 | 22 | 24 |
104 | 106 | 112 | 119 | 129 | 136 | 144 | 148 | 152 |
| | | | 188 atoms | | | ||
I | E | I | E | I | E | E | I | K |
22 | 19 | 22 | 19 | 22 | 19 | 19 | 22 | 24 |
155 | 157 | 163 | 170 | 180 | 187 | 195 | 199 | 203 |
| | | | 188 atoms | | | ||
I | E | I | E | I | E | E | I | K |
22 | 19 | 22 | 19 | 22 | 19 | 19 | 22 | 24 |
206 | 208 | 214 | 221 | 231 | 238 | 246 | 250 | 254 |
| | | | 188 atoms | | | ||
I | E | I | E | I | E | E | I | K |
22 | 19 | 22 | 19 | 22 | 19 | 19 | 22 | 24 |
257 | 259 | 265 | 272 | 282 | 289 | 297 | 301 | 305 |
(188 x 6) = 1128;
(257+259+265…,+305) – (206+208+214…, + 254) = 459;
etc.
Figure 2. Gropu of amino acids I,Q,H, and I,E,K.
Notes: In the aforementioned examples aminoacids are connected by the discret code 1128 and their position numbers are connected with code 459.
Mathematical evidence is provided here to prove that in the biochemistry of insulin there really is programmatic and cybernetic algorithm in which it is „recorded“, in the language of mathematics, how the molecule will be built and what will be the quantitative characteristics of the given genetic information.
We will give a few more examples of coding of amino acids of insulin with discret code 1128.(Figure 3)
G,I,Q
Example 1
| | | | 188 atoms | | | | | | ||
G | I | Q | I | Q | Q | I | G | G | G | G | I |
10 | 22 | 20 | 22 | 20 | 20 | 22 | 10 | 10 | 10 | 10 | 22 |
1 | 2 | 5 | 10 | 15 | 25 | 27 | 29 | 41 | 44 | 52 | 53 |
| | | | 188 atoms | | | | | ||
Q | I | Q | Q | I | G | G | G | I | G | I |
20 | 22 | 20 | 20 | 22 | 10 | 10 | 10 | 22 | 10 | 22 |
56 | 61 | 66 | 76 | 78 | 80 | 92 | 52 | 53 | 95 | 97 |
| | | | 188 atoms | | | | | ||
G | I | Q | I | Q | Q | I | G | G | G | I |
10 | 22 | 20 | 22 | 20 | 20 | 22 | 10 | 10 | 10 | 22 |
103 | 104 | 107 | 112 | 117 | 127 | 129 | 131 | 143 | 146 | 148 |
| | | | 188 atoms | | | | | ||
G | I | Q | I | Q | Q | I | G | G | G | I |
10 | 22 | 20 | 22 | 20 | 20 | 22 | 10 | 10 | 10 | 22 |
154 | 155 | 158 | 163 | 168 | 178 | 180 | 182 | 194 | 197 | 199 |
| | | | 188 atoms | | | | | ||
G | I | Q | I | Q | Q | I | G | G | G | I |
10 | 22 | 20 | 22 | 20 | 20 | 22 | 10 | 10 | 10 | 22 |
205 | 206 | 209 | 214 | 219 | 229 | 231 | 233 | 245 | 248 | 250 |
| | | | 188 atoms | | | | | ||
G | I | Q | I | Q | Q | I | G | G | G | I |
10 | 22 | 20 | 22 | 20 | 20 | 22 | 10 | 10 | 10 | 22 |
256 | 257 | 260 | 265 | 270 | 280 | 282 | 284 | 296 | 299 | 301 |
(188 x 6) = 1128;
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