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The consequences of the single amino acid change

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The consequences of the single amino acid change

From the experiment, Gene mutations or the single amino acid change have various effects. Gene mutation haves varying health consequences depending on where the changes occur and whether hey do alter the function of the essential proteins or not. In the experiment that involve the mutation of valine to a glutamic acid have a change in the nature or the structure of proteins which in extension have a relative broader impact on the nature of the organism. Such a mutation of the protein structure might result in the loss of the protein in which the protein changes the structure and becomes null or loses its normal function and become a morph. Depending on the nature of the protein that is involved in the mutation, the mutation can result in the final protein formulated (glutamic acid) become less functional compared to the originals protein before the single amino acid change.

Not all mutations have the negative impacts of the formulated protein. In other cases mutation a result in a change of the structure of proteins or the single amid acid to even perform better. As such, such modification can also result in an increase in the protein’s functions or become what is termed as the hyper-morph.  After the process of mutation, the product protein might acquire the new feature or get an ectopic expression of the function, neo-morph, and gain of better functional capacity. All these commonly occur due to the reduction of the amino acid stability that takes place on the membrane of the protein during the process of the mutation—such a result of either a complete of the particular change of the amino acid structure. The modification of valine to the glutamic acidic in a transmembrane domain of protein could be one such mutation that could result in any form of change on the amino acid structure and hence function. However, if the mutation is a nonsense mutation, then the structure’s change would not result in the transformation of the amino acid function.

non-membrane permeable analog of Cortisol

Asteroid exists in different forms: those who are membrane-permeable and those who are not-permeable. The operation of such asteroids on the membrane is very different depending on these critical characteristics.  The formulation of the analog of Cortisol asteroid that is not membrane permeable is likely to behave differently than the cortisol, which is membrane permeable. A membrane-permeable gets access to the site where it is supposed to act on relatively faster in understanding its function. On the other hand, a non-membrane permeable asteroid (the analog of Cortisol) has to change its natural form to be able to access the to where it is likely to act. Generally, a non-membrane permeable asteroid does take a relatively long time to respond to the membrane-permeable membranes one. As such, the activity of the two forms of asteroids is not the same.  The time is taken by each to act off to perform its function is different.

 

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