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AllatRa by Anastasia Novykh 2 www.allatra.org

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<strong>AllatRa</strong> <strong>by</strong> <strong>Anastasia</strong> <strong>Novykh</strong><br />

while during the cell division they are tightly twisted in a spiral, figuratively speaking in<br />

the shape of two entwined serpents... Well, and you remember that among the DNA<br />

functions are the information storage, its transmission and the implementation of the<br />

genetic programme of development.<br />

Generally, if we examine the biochemistry of animals, including human beings, in more<br />

detail, we can find a great variety of types of spirals (left-handed spirals, right-handed<br />

spirals, triple-stranded spirals and so on). For instance, the typical collagen molecule<br />

consists of three polypeptide chains of different types (α-spirals). They are usually<br />

twisted in the form of the right-handed threefold spiral. Yet, what is collagen? It is the<br />

most widespread thread-like protein in animal <strong>org</strong>anisms, which makes up nearly 25%<br />

of the total amount of protein. It makes the base of collagenous connective tissue fibres,<br />

securing its strength and flexibility. Therefore, bones (including the cranium, spine,<br />

etc.), cartilages, and tendons consist of it.<br />

Here’s another example. What is hair and nails of humans and feathers, claws, quills and<br />

hair of animals? All these structures mostly consist of keratin (horn matter). Keratin,<br />

being a structural protein, is also mainly built in the form of a spiral, like, for example,<br />

the structural protein of human or animal hair α-keratin. The longest part of its peptide<br />

chain is twisted in the right-handed α-spiral. And two peptide chains form a single lefthanded<br />

super spiral. Figuratively speaking, this is an entwined spiral in the shape of two<br />

serpents. Super spirals, in their turn, are combined into tetramers, and the latter are<br />

combined into a more complex structure. Eight of such complex structures already form<br />

a microfibril of hair. These are simply processes which are visible in the material world<br />

and which form at the invisible energy level of the <strong>org</strong>anisation of mater.<br />

3<br />

<strong>www</strong>.<strong>allatra</strong>.<strong>org</strong>

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