PROTEOME-2 (Part 4)
Molecular biocoding of Prot P62258 14-3-3 protein epsilon, Homo sapiens
Table 1. Bio intervals Apa and APb
| M | Q | Y | Y | . | . | A | E |
| 20 | 20 | 24 | 24 | . | . | 13 | 19 |
| 1 | 16 | 20 | 49 | . | . | 112 | 116 |
| I | I | I | I | . | . | I | I |
APa | 20 | 309 | 391 | 935 | . | . | 2166 | 2229 |
| I | I | I | I | . | . | I | I |
| 4788 | 4210 | 4046 | 2958 | . | . | 496 | 370 |
| I | I | I | I | . | . | I | I |
APb | 4808 | 4519 | 4437 | 3893 | . | . | 2662 | 2599 |
| I | I | I | I | . | . | I | I |
| D | A | D | K | . | . | N | S |
| 16 | 13 | 16 | 24 | . | . | 17 | 14 |
| 2 | 17 | 21 | 50 | . | . | 113 | 117 |
Y | H |
24 | 20 |
121 | 129 |
I | I |
2333 | 2495 |
I | I |
162 | 162 |
I | I |
2495 | 2333 |
I | I |
Y | R |
24 | 26 |
122 | 130 |
E | G | E | D | Y | . | . | S | D |
19 | 10 | 19 | 16 | 24 | . | . | 14 | 16 |
134 | 138 | 146 | 157 | 182 | . | . | 233 | 238 |
I | I | I | I | I | . | I | I | I |
2599 | 2662 | 2809 | 2998 | 3480 | . | . | 4437 | 4519 |
I | I | I | I | I | . | I | I | I |
370 | 496 | 790 | 1168 | 2132 | . | . | 4046 | 4210 |
I | I | I | I | I | . | I | I | I |
2229 | 2166 | 2019 | 1830 | 1348 | . | . | 391 | 309 |
I | I | I | I | I | . | I | I | I |
F | N | N | I | E | . | . | D | G |
23 | 17 | 17 | 22 | 19 | . | . | 16 | 10 |
135 | 139 | 147 | 158 | 183 | . | . | 234 | 239 |
Table 1. Schematic representation of the bio intervals Apa and APb
Notes: The molecule of protein 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.
The corresponding amino acids
Each bar in the protein chain attracts only the corresponding aminoacid, and only the relevant aminoacid can be positioned at certain place in the chain. Each peptide chain can have the exact number of aminoacids necessary to meet the strictly determined mathematical conditioning. It can have as many atoms as necessary to meet the mathematical balance of the biochemical phenomenon at certain mathematical level, etc. The digital language of biochemistry has a countless number of codes and analogue codes, as well as other information content. These pictures enable us to realize the very essence of functioning of biochemical processes.
Fragment Y,H,Y,R
| | | | | | |
| | Y | H | | | |
| | I | I | | Sum | |
| | 2333 | 2495 | > | 4828 | |
| | I | I | | | |
| | 162 | 162 | | | |
| | I | I | | | |
| | 2495 | 2333 | > | 4828 | |
| | | | | | |
| Sum | 4828 | 4828 | | | |
| | I | I | | | |
| | Y | R | | | |
| | | | | | |
(2495-2333) = 162; (2333+2495) = 4828;
Fragment E,E,S,F
| | | | | | |
| | E | E | | | |
| | I | I | | Sum | |
| | 2229 | 2599 | > | 4828 | |
| | I | I | | | |
| | 370 | 370 | | | |
| | I | I | | | |
| | 2599 | 2229 | > | 4828 | |
| | | | | | |
| Sum | 4828 | 4828 | | | |
| | I | I | | | |
| | S | F | | | |
| | | | | | |
Fragment A,G,N,N
| | | | | | |
| | A | G | | | |
| | I | I | | Sum | |
| | 2166 | 2662 | > | 4828 | |
| | I | I | | | |
| | 496 | 496 | | | |
| | I | I | | | |
| | 2662 | 2166 | > | 4828 | |
| | | | | | |
| Sum | 4828 | 4828 | | | |
| | I | I | | | |
| | N | N | | | |
| | | | | | |
Fragment L,E,D,N
| | | | | | |
| | L | E | | | |
| | I | I | | Sum | |
| | 2019 | 2809 | > | 4828 | |
| | I | I | | | |
| | 790 | 790 | | | |
| | I | I | | | |
| | 2809 | 2019 | > | 4828 | |
| | | | | | |
| Sum | 4828 | 4828 | | | |
| | I | I | | | |
| | D | N | | | |
| | | | | | |
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