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Chapter 2: The Chemical Level Of Organization
Chapter 2: The Chemical Level Of Organization

... do not. Ions and polar molecules (the latter of which have covalent bonds in which electrons are not shared equally) are hydrophilic, whereas lipids (i.e., fats) are hydrophobic molecules that do not mix well with water. Cells, the fundamental units of life, are surrounded by cell membranes made out ...
Unusual dehydrations in anaerobic bacteria
Unusual dehydrations in anaerobic bacteria

... under which lactyl-CoA dehydratase from C. propionicum [8,14] was immediately inactivated. Moreover, a report on the transient formation of phospholactyl-CoA was not substantiated [28]. The first direct demonstration of the dehydration of lactyl-CoA was the formation of 3HOH from (R)-[3-3H]lactate i ...
Bio130_MidtermReviewPart3
Bio130_MidtermReviewPart3

... Reaction is blocked because binding of regulatory molecule in regulatory site changes conformation of active site so that substrate cannot enter . ...
The Origin and Chemistry of Life
The Origin and Chemistry of Life

... folded chains. Eg. Disulfide bond is a covalent bond between sulfur atoms in two cysteine amino acids that are near each other.  Quaternary structure describes proteins with more than one polypeptide chain. Hemoglobin has four subunits. ...
Kranz Anatomy and the C4 Pathway
Kranz Anatomy and the C4 Pathway

... dioxide (carboxylation phase) occurs in mp cells, and is accomplished by the mp-specific enzyme phosphoenolpyruvate carboxylase (PEPCase). The initial carboxylation of the three-carbon phosphoenolpyruvate (PEP) results in the formation of C4 acids, which are then transported from the mp cells to the ...
Biochemistry
Biochemistry

... The aim of the class: the determination of the ascorbic acid concentration in different biological materials Theoretical basis: classification, structure and functions of water-soluble vitamins, classification, structure and functions of coenzymes. ...
Chemistry 695C Fall 2001 Exam 1 Key
Chemistry 695C Fall 2001 Exam 1 Key

... a) the α helix predicted by Pauling and Corey was not found in myoglobin; β-pleated sheet structure was found. b) “corners” between α-helical regions invariably contained a glycine residue, which, because of its unique properties, cannot fit into the helix. c) highly polar or charged amino acid resi ...
HCS604.03 Exercise 1 Dr. Jones Spring 2005 Recombinant DNA
HCS604.03 Exercise 1 Dr. Jones Spring 2005 Recombinant DNA

... restriction enzymes are a good source of information about the recognition sequences for specific enzymes. The length of the recognition sequence is usually 6 bp but can be 8 or 4 bp. The length of the restriction site determines the frequency that an enzyme will cut a random sequence of genomic DNA ...
Aromatic Amino Acid Metabolism
Aromatic Amino Acid Metabolism

... The bacterium Klebsiella pneumoniae is capable of growing in a mineral salts medium in which glucose is the only organic compound avasilable. Furthermore, K. pneumoniae is sensitive to inhibition by glyphosate. What does this suggest about the metabolism of K. pneumoniae? Mutants of K. pneumoniae th ...
Amino acid frequency distribution at the enzymatic active site
Amino acid frequency distribution at the enzymatic active site

... this study, the whole dataset was divided in three categories namely Viral (VEs; 9), Prokaryotic (pEs; 481) and Eukaryotic (eEs; 348) enzymes based on the source organism. While preparing the database, repetitive CSA entries were excluded. Additionally, depending upon the cellular localization of th ...
Biochemistry Biochemistry is the science concerned the chemical
Biochemistry Biochemistry is the science concerned the chemical

... The aim of the class: the determination of the ascorbic acid concentration in different biological materials Theoretical basis: classification, structure and functions of water-soluble vitamins, classification, structure and functions of coenzymes. ...
Biochemistry Biochemistry is the science concerned the chemical
Biochemistry Biochemistry is the science concerned the chemical

... The aim of the class: the determination of the ascorbic acid concentration in different biological materials Theoretical basis: classification, structure and functions of water-soluble vitamins, classification, structure and functions of coenzymes. ...
COURSE CODE: FST 309 COURSE TITLE: BASIC FOOD
COURSE CODE: FST 309 COURSE TITLE: BASIC FOOD

... The concept of water activity relates the moisture (water) in a food to the RH of the air surrounding the food and is defined as ratio of the partial pressure of water in a food to the vapour pressure of water at the same temperature. aw = p/po wherre P = vapour pressure of water in food Po = vapour ...
Biochemistry Biochemistry is the science concerned the chemical
Biochemistry Biochemistry is the science concerned the chemical

... The aim of the class: the determination of the ascorbic acid concentration in different biological materials Theoretical basis: classification, structure and functions of water-soluble vitamins, classification, structure and functions of coenzymes. ...
amino acids
amino acids

... • Polypeptides - amino acids joined end to end • Conformation - the three dimensional shape of a protein which is determined by its sequence • Active site - a cleft or groove in an enzyme that binds the substrates of a reaction ...
CHEM523 Final Exam Possible
CHEM523 Final Exam Possible

... You begin your purification by performing an ammonium sulfate (AS) precipitation. You add the appropriate concentration of AS to your CL sample, incubate overnight at 4°C, then centrifuge to generate a supernatant (AS-S) and pellet (AS-P). a) What concentration of AS will you use to precipitate β-ga ...
Nonredox Nickel Enzymes - American Chemical Society
Nonredox Nickel Enzymes - American Chemical Society

... increase caused by the urease activity, and acting as the major cause of pathologies, including cancer induced by gastroduodenal infections.31 In the agricultural context, bacterial urease activity is widespread in the environment and especially in soils fertilized with urea, a nitrogen fertilizer u ...
Class11 POGIL Translation Full Win17 KEY v1
Class11 POGIL Translation Full Win17 KEY v1

... 25. Draw a square around the part of the tRNA (at the top) that contains the anti-codon. 26. a. Using the name "amino-acyl tRNA synthetases" as a guide, name two different substrates of these enzymes: amino acid and tRNA b. These enzymes also require ATP as a substrate. Explain. Putting two molecule ...
Double-Strand Specific DNase (dsDNase)
Double-Strand Specific DNase (dsDNase)

... linkages in DNA to yield oligonucleotides with 5’-phosphate and 3’-hydroxyl termini. dsDNase has a very high specific activity, estimated 30 times higher than bovine DNase I, and it is heat labile. dsDNase has a particularly strong preference for double-stranded DNA (dsDNA). In the presence of magne ...
Proteins…
Proteins…

... Movement – actin and myosin muscles Defense – antibodies in bloodstream Storage – albumin in egg whites Signaling – growth hormones in bloodstream ...
PowerPoint 演示文稿
PowerPoint 演示文稿

... • One Acetyl-CoA through the cycle produces two CO2, one ATP, four reduced coenzymes • Two H2Os are used as substrates • Absolutely depends on O2 ...
DNA, and in some cases RNA, is the primary source of heritable
DNA, and in some cases RNA, is the primary source of heritable

... building blocks of ribosomes. The two ribosomal subunits (large and small) are made of proteins and rRNA. Remember the nucleolus is the area of the nucleus that actively produces/transcribes rRNA and assembles the rRNA together with proteins to form large and small subunits of ribosomes. Together th ...
INDIGO-BINDING DOMAINS IN CELLULASE MOLECULES
INDIGO-BINDING DOMAINS IN CELLULASE MOLECULES

... its ability to bind to cellulose but also the ability to bind to indigo to a significant degree (Fig. 1), the same aromatic residues seem to play a major role in binding indigo. Indigo is a hydrophobic compound (insoluble in water), and its aromatic rings may interact with the aromatic rings of Tyr, ...
lecture_22 - WordPress.com
lecture_22 - WordPress.com

Insights into 5-Lipoxygenase Active Site and Catalysis
Insights into 5-Lipoxygenase Active Site and Catalysis

... containing at least one cis,cis-1,4-pentadiene moiety (Brash 1999, Andreou and Feussner 2009). Lipoxygenases have a widespread presence in the living world, being found in animal, plants, fungi and even bacteria (Joo and Oh 2012). Apart from that, multiple isoforms of lipoxygenase are generally pres ...
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Enzyme



Enzymes /ˈɛnzaɪmz/ are macromolecular biological catalysts. Enzymes accelerate, or catalyze, chemical reactions. The molecules at the beginning of the process are called substrates and the enzyme converts these into different molecules, called products. Almost all metabolic processes in the cell need enzymes in order to occur at rates fast enough to sustain life. The set of enzymes made in a cell determines which metabolic pathways occur in that cell. The study of enzymes is called enzymology.Enzymes are known to catalyze more than 5,000 biochemical reaction types. Most enzymes are proteins, although a few are catalytic RNA molecules. Enzymes' specificity comes from their unique three-dimensional structures.Like all catalysts, enzymes increase the rate of a reaction by lowering its activation energy. Some enzymes can make their conversion of substrate to product occur many millions of times faster. An extreme example is orotidine 5'-phosphate decarboxylase, which allows a reaction that would otherwise take millions of years to occur in milliseconds. Chemically, enzymes are like any catalyst and are not consumed in chemical reactions, nor do they alter the equilibrium of a reaction. Enzymes differ from most other catalysts by being much more specific. Enzyme activity can be affected by other molecules: inhibitors are molecules that decrease enzyme activity, and activators are molecules that increase activity. Many drugs and poisons are enzyme inhibitors. An enzyme's activity decreases markedly outside its optimal temperature and pH.Some enzymes are used commercially, for example, in the synthesis of antibiotics. Some household products use enzymes to speed up chemical reactions: enzymes in biological washing powders break down protein, starch or fat stains on clothes, and enzymes in meat tenderizer break down proteins into smaller molecules, making the meat easier to chew.
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