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Semmelweis Entrance Exam Study Questions With Complete Solutions

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Semmelweis Entrance Exam Study Questions With Complete Solutions There are two patterns To be familiar with for secondary structure first pattern = alpha helix; the Hydrogen bonds just run up and down this , Stabilizing this coiled structure Second pattern = beta sheet; stabalized by hydrogen bonds. parallel beta sheet : If you have the amino ends and the carboxyl ends line up Anti parallel configuration: if you have a single polypeptide that wraps upon itself and have the hydrogen bondsd stablizing, then you have the amino ends coming around and lining up with the carboxyl end

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Semmelweis Entrance Exam Study Questions
With Complete Solutions

There are two patterns To be familiar with for secondary structure first pattern = alpha

helix; the Hydrogen bonds just run up and down this , Stabilizing this coiled structure




Second pattern = beta sheet; stabalized by hydrogen bonds.

parallel beta sheet : If you have the amino ends and the carboxyl ends line up




Anti parallel configuration: if you have a single polypeptide that wraps upon itself and have the

hydrogen bondsd stablizing, then you have the amino ends coming around and lining up with the

carboxyl end




Tertiary structure: higher order of folding within a polypeptide chain. Think of it as the

many folds within a polypeptide which then fold upon each other again.

This depends on distant group interaction so distant interactions.

Just like secondary structure, it is stabalized by hydrogen bonds but you can also have some

other interactions that come in to play such as van der waals interaction

There is also hydrophobic packing and also disulfide bridge formation.

hydrophobic packing: for example lets say we have a folding up polypeptide or protein, and this

protein is found within the wateryb polar environment of the interior of the cell

,Semmelweis Entrance Exam Study Questions
With Complete Solutions
So if we have water on the exterior of this protein then we will find all of the polar groups on the

exterior iterating with this water

Then on the interior you would find the nonpolar or hydrophobic group hiding from the water

disulfide bridge: describe an interaction that happens only between cystines




Cystines a type of amino acid (aa) that have a special thiol group as part of its side chain.

This thiol group has a sulfer atom that can become oxidized. when this oxidation occurs you get

the formation of a covalent bond between the sufler groups.

The formation of a dissulfide bridge happens on the exterior of a cell and you tend to see the

formation of separate thiol groups on the interior of a cell and that is because the interior of the

cell has antioxidants which generate a reducing environment

Since the exterior of a cell lacks these antioxidants you get an oxidizing environment

So if we were to ask you which environment favours the formation of disfulide bridges, you

would say the extracellular space does




quaternary structure: describes the bonding between multiple polypeptides.


The same interactions that determine tertiary structure play a role in quaternary

Example: lets say I have one folded up polypeptide, two folded up polypeptides and a third and a

fourth. The quaternary structure is described by the interactions between these four polypeptides.

,Semmelweis Entrance Exam Study Questions
With Complete Solutions
Within the completed protein structure, each individual polypeptide is termed a subunit.

Since this protein has four subunits, it is called a tetramer

If we were to have two subunits, it would me called a dimer

Three would be called a trimer

An anything above four is called a multimer

So the term for a completely properly folded up protein is called the proper conformation of a

protein and to achieve the proper confirmation you must have the correct primary structure,

secondary structure tertiary structure and quaternary structure and id any of these levels of

protein structure were to break down then yous start to have misfolding which can then

contribute to any of a number of disease states




Allostery The allosteric, or "other", site is the active site of an adjoining protein subunit.

The binding of oxygen to one subunit induces a conformational change in that subunit that

interacts with the remaining active sites to enhance their oxygen affinity

A classical example of allosteric control in protein kinases is cyclin binding to cyclin-dependent

kinases (CDKs), where cyclin binding induces a reformation of the ATP binding site [18].

The term allostery refers to the fact that the regulatory site of an allosteric protein is physically

distinct from its active site

Allostery in proteins influences various biological processes such as regulation of gene

transcription and activities of enzymes and cell signaling.

, Semmelweis Entrance Exam Study Questions
With Complete Solutions
Watch a video




Starch (Polysaccharides) found in plants, role to store energy, example found in potatos


2 kinds of plant strach:

1- amylose: made up of glucose monomers, forms a straght chain of glucose monomers, bond

that connects the glucose monomers is an alpha 1 4 glycosidic bond CH2OH

2 amylopectictin: contains branch structures, still has a straight chain but ocasionally , youll have

chains that will branch off from the main chain

Bonds in amylopectin: straight chain has the alpha 1,4 bond , the branch part has an alpha 1, 6

bond

So amylopectin contains two types of glycosidic bonds




alph and the beta forms of glucose. Alpha: form the OH group on the carbon 1, its facing

the downward direction




Beta form of glucose: has the OH group pointing up




glycogen An extensively branched glucose storage polysaccharide found in the liver and

muscle of animals; the animal equivalent of starch.

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