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DECODING SCHEME IN THE MOLECULE OF INSULIN According to mathematical rules, in a molecule of insulin, amino acid Phe (F) should be first, Val (V) second, Asn (N) third, etc. Ve can decode these mathematical rules, by using a codes 19, 7, 931, and analog code. Example: Molecule of insulin Chain A Phe,(F), Val(V), Asn(N), Gln(Q), His(H), Leu(L), Cys(C), Gly(G), Ser(S), His(H), Leu(L), Val(V), Glu(E), Ala(A), Leu(L), Tyr(Y), Leu(L), Val(V), Cys(C), Gly(G), Glu(E), Arg(R), Gly(G), Phe(F), Phe(F), Tyr(Y), Thr(T), Pro((P), Lys(K), Ala(A) Chain B Glu(E), Ileu(J), Val(V), Glu(E), Gln(Q), Cys(C), Cys(C), Ala(A), Ser(S), Val(V), Cys(C), Ser(S), Leu(L), Tyr(Y), Gln(Q), Leu(L), Glu(E), Asn(N), Tyr(Y), Cys(C), Asn(N), Number of atoms: Chain A F=23; V=19; N=17, Q=20; H=20; L=22; C=14; G=10; S=14; H=20; L=22; V=19; E=19; A=13; L=22; Y=23; L=22; V=19; C=14; G=10; E=19; R=25; G=10; F=23; F=23; Y=23; T=17; P=17; K=24; A=13; = 556 atoms. Chain B E=19; J=22; V=19; E=19; Q=20; C=14; C=14; A=13; S=14; V=19;C=14; S=14; L=22; Y=23; Q=20; L=22; E=19; N=17; Y=23; C=14; N= 17;=378 atoms Fragment 1
(28276 – 18594) = 9682; Fragment 2
(28276 + 18594) = 46870; 46870 = { (139 + 931) + [ (197 + 719) x y] } Those are only some of the fragments from matrix code in genetic processes. Those processes are sequenced with codes 19, 7 and 931. |
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