Free Bachelor of Pharmacy (B.Pharm.) Biochemistry Questions and Answers — Questions and Answers
Question 1: Proteins' peptide bonds are detected by
- water
- Million test
- formaldehyde
- Biuret test (Correct answer)
Correct answer: Biuret test
The Biuret test is a specific chemical test used to detect the presence of peptide bonds, which are the characteristic linkages between amino acids in proteins. The test relies on the reaction of copper(II) ions in an alkaline solution with the peptide bonds, producing a distinctive violet color. This color change indicates the presence of proteins or peptides containing at least two peptide bonds.
Question 2: Which amino acid is the smallest?
- Valine
- Glycine (Correct answer)
- Phenylalanine
- Alanine
Correct answer: Glycine
Glycine is the smallest and simplest amino acid because its side chain (R-group) consists of a single hydrogen atom. This unique structure makes it the only achiral (non-chiral) amino acid among the standard 20, contributing to its flexibility and specific roles in protein structure and function.
Question 3: Related to vitamin A are:
- ɣ-ionone
- δ-ionone
- α-ionone
- β-ionone (Correct answer)
Correct answer: β-ionone
Vitamin A (retinol) and its precursors, such as beta-carotene, are structurally derived from β-ionone. The β-ionone ring is a crucial structural component found in beta-carotene, which is then cleaved to form retinal, a direct precursor to vitamin A. This specific ring structure is essential for the biological activity and function of vitamin A in the body.
Question 4: The following vitamins interact with Ca++ ATPase in intestinal cells:
- Vitamin D (Correct answer)
- Vitamin B6
- Vitamin B2
- Vitamin B1
Correct answer: Vitamin D
Vitamin D plays a critical role in regulating calcium absorption in the intestines. It stimulates the synthesis of calcium-binding proteins and enhances the activity of Ca++ ATPase, an enzyme responsible for actively transporting calcium ions across intestinal cell membranes into the bloodstream. This action is vital for maintaining proper calcium levels and bone health.
Question 5: Regular use of the antitubercular medication isoniazid results in deficiencies of:
- Vitamin B1
- Vitamin B2
- vitamin B6 (Correct answer)
- Vitamin B12
Correct answer: vitamin B6
Isoniazid, an antitubercular medication, is known to interfere with the metabolism of vitamin B6 (pyridoxine). It forms an inactive derivative with pyridoxal phosphate, the active form of vitamin B6, leading to its depletion in the body. This deficiency can cause peripheral neuropathy, a common side effect of isoniazid therapy, which is often prevented by co-administering vitamin B6 supplements.
Question 6: The test for Sakaguchi is anticipated to:
- Tyrosine
- Tryptophan
- Arginine (Correct answer)
- Glycine
Correct answer: Arginine
The Sakaguchi test is a specific biochemical test used to detect the presence of the guanidino group. Among the given amino acids, arginine is the only one that contains a guanidino group in its side chain. Therefore, a positive result in the Sakaguchi test indicates the presence of arginine.
Question 7: Which enzyme can be used to clinically diagnose acute pancreatitis?
- Amylase
- Lipase
- Both A and B (Correct answer)
- Creatinine phosphokinase
Correct answer: Both A and B
Amylase and lipase are key digestive enzymes primarily produced by the pancreas. In acute pancreatitis, the inflamed pancreas releases these enzymes into the bloodstream, leading to significantly elevated serum levels. Measuring both amylase and lipase levels is crucial for an accurate clinical diagnosis of this condition.
Question 8: Which enzyme helps two molecules bind together?
- Lyases
- Ligase (Correct answer)
- Isomerase
- Transferase
Correct answer: Ligase
Ligases are a class of enzymes specifically responsible for catalyzing the joining of two large molecules. They achieve this by forming a new chemical bond, a process often coupled with the hydrolysis of a small, energy-rich molecule like ATP. This makes them essential for processes like DNA replication and repair.
Question 9: Kinetics of enzyme reactions are controlled by:
- Menten theory
- Michaelis theory
- Noyes and Whitney theory
- Michaellis and Menten theory (Correct answer)
Correct answer: Michaellis and Menten theory
The kinetics of enzyme reactions, which describe how reaction rates are influenced by substrate concentration and enzyme properties, are primarily controlled by the Michaelis-Menten theory. This widely accepted model provides a mathematical framework to understand the relationship between reaction velocity and substrate concentration, defining parameters like Vmax and Km.
Question 10: Where do the carbon atoms in cholesterol come from?
- Squalene
- Lanosterol
- Mevalonic acid
- Acetyl-CoA (Correct answer)
Correct answer: Acetyl-CoA
All carbon atoms found in cholesterol are ultimately derived from acetyl-CoA. Acetyl-CoA molecules are sequentially condensed and modified through a multi-step pathway, including the formation of mevalonic acid and squalene, to build the complex sterol structure of cholesterol. This makes acetyl-CoA the fundamental building block for cholesterol biosynthesis.
Question 11: The HMP enzyme pathway is found in:
- Heart
- Intestine
- Cytosol (Correct answer)
- Adipose tissue
Correct answer: Cytosol
The Hexose Monophosphate Pathway (HMP pathway), also known as the Pentose Phosphate Pathway, is a metabolic pathway that occurs entirely in the cytosol of cells. Its primary functions are to generate NADPH, essential for reductive biosynthesis and antioxidant defense, and to produce the precursor ribose-5-phosphate for nucleotide synthesis.
Question 12: The enzyme, cis-aconitase, uses the citrate to create isocitrate:
- aconitase (Correct answer)
- Cutrate synthase
- malate dehydrogenase
- isocitrate dehydrogenate
Correct answer: aconitase
The enzyme aconitase is responsible for catalyzing the reversible isomerization of citrate to isocitrate in the citric acid cycle. This reaction proceeds through an intermediate called cis-aconitate, hence the enzyme's name. It plays a crucial role in preparing the carbon skeleton for subsequent oxidative decarboxylation steps.
Question 13: The blood plasma's typical level of calcium is:
- 100mg/100 ml
- 20-40 mg/ 100ml
- 30-40 mg/100 ml
- 9-11 mg/100 ml (Correct answer)
Correct answer: 9-11 mg/100 ml
The typical level of calcium in the blood plasma is tightly regulated within a narrow physiological range to maintain essential bodily functions. A normal adult reference range for total serum calcium is generally considered to be 9-11 mg/100 ml (or 2.2-2.75 mmol/L). Deviations from this range can have significant health implications.
Question 14: The following is related to the atherosclerosis risk factor:
- HDL
- VLDL
- VLDL and LDL (Correct answer)
- Chylomicron
Correct answer: VLDL and LDL
Very Low-Density Lipoproteins (VLDL) and Low-Density Lipoproteins (LDL) are strongly associated with an increased risk of atherosclerosis. VLDL transports triglycerides and cholesterol from the liver to peripheral tissues, while LDL primarily delivers cholesterol to cells. High levels of these lipoproteins contribute to plaque formation in arteries, leading to cardiovascular disease.
Question 15: The condition albinism is related to:
- defect of phenylealanine metabolism
- defect related to melanin biosynthesis (Correct answer)
- defect of tyrosine metabolism
- All of these
Correct answer: defect related to melanin biosynthesis
Albinism is a genetic disorder characterized by a partial or complete absence of melanin pigment in the skin, hair, and eyes. This condition is directly related to a defect in the melanin biosynthesis pathway, most commonly due to a deficiency or absence of the enzyme tyrosinase, which is crucial for converting tyrosine into melanin.
Question 16: The vitamin D precursor is:
- Lipid
- Fatty acid
- Cholesterol (Correct answer)
- Sterol
Correct answer: Cholesterol
Cholesterol serves as the precursor for vitamin D synthesis in the body. Specifically, 7-dehydrocholesterol, a derivative of cholesterol found in the skin, is converted into pre-vitamin D3 upon exposure to ultraviolet B (UVB) radiation from sunlight. This pre-vitamin D3 then isomerizes to vitamin D3, which is further metabolized to its active form.
Proteins' peptide bonds are detected by