-
The following statements describe the propensity and role of amino acids in the secondary structure of proteins
A. Alanine has a high frequency of occurrence in α- helices
B. Proline has a high frequency of occurrence in α- helices
C. The 𝛘 does not affect the helix propensity of serine, threonine and valine
D. Peptide bonds involving ‘N’ of proline may display cis-trans isomerism
Choose the correct combination.(1) A and D
(2) B and C
(3) B and C
(4) C and DAmino Acid Propensity in Protein Secondary Structure
Proteins adopt specific secondary structures such as alpha-helices, beta-sheets, and turns, primarily governed by the intrinsic properties of amino acids. Understanding these propensities is crucial for students preparing for CSIR NET Life Science and related competitive exams. Let’s explore the correct combination of statements regarding amino acid roles in secondary structures and their implications.
Correct Answer:
The correct combination is (1) A and D.
Explanation:
A. Alanine has a high frequency of occurrence in α-helices ✅
Alanine is a small, nonpolar amino acid with a strong propensity for forming alpha-helices due to its ability to fit well within the helical structure without causing steric hindrance.
B. Proline has a high frequency of occurrence in α-helices ❌
Proline is known as a helix breaker due to its rigid cyclic structure. It introduces kinks in the helical structure, making it unfavorable for alpha-helix formation.
C. The χ (chi) angle does not affect the helix propensity of serine, threonine, and valine ❌
The chi (𝛘) angle, which represents the side-chain torsional angle, significantly affects helix formation. Serine, threonine, and valine are known to disrupt helices due to steric hindrance and hydrogen bonding competition.
D. Peptide bonds involving ‘N’ of proline may display cis-trans isomerism ✅
Unlike most amino acids, which predominantly adopt the trans configuration in peptide bonds, proline can exist in both cis and trans forms. This property plays a critical role in protein folding and structure.
Nearby Topics for Better Understanding
1. Factors Affecting Secondary Structure Formation
Several factors influence whether an amino acid prefers an alpha-helix, beta-sheet, or turn:
- Hydrogen Bonding: Stabilizes helices and sheets.
- Steric Hindrance: Bulky side chains may disrupt helix formation.
- Electrostatic Interactions: Charged amino acids can stabilize or destabilize secondary structures.
2. Amino Acids with High Helix Propensity
- Alanine – Strong alpha-helix former
- Leucine, Methionine, Glutamate – Favor alpha-helices
- Glycine, Proline – Helix breakers
3. Beta-Sheet Forming Amino Acids
- Valine, Isoleucine, Phenylalanine – Favor beta-sheets due to their bulky side chains and ability to engage in hydrogen bonding
4. Role of Proline in Protein Folding
Proline is often found in turns and loops rather than helices. It plays an essential role in protein folding due to its unique ability to exist in both cis and trans configurations, influencing protein stability and function.
Conclusion
Understanding amino acid propensities in secondary structures is essential for mastering protein biochemistry. Alanine strongly favors alpha-helices, whereas proline disrupts them and contributes to structural bends due to its cis-trans isomerism. This knowledge is valuable for CSIR NET Life Science aspirants, aiding in conceptual clarity and application-based learning.
By grasping these fundamental concepts, students can effectively tackle questions on protein structure and function, ensuring better performance in competitive exams.
31 Comments
Akshay mahawar
March 27, 2025Done 👍
Suman bhakar
March 27, 2025👍
Ujjwal
March 28, 2025Done 👍
Arushi
March 28, 2025👍✔️
pallavi gautam
March 28, 2025done sir
Priyam choudhary
April 24, 2025Done 👍
Aakansha sharma Sharma
September 25, 2025Correct Answer:
The correct combination is (1) A and D.
Kirti Agarwal
September 26, 2025Statement A and D
Dharmpal Swami
September 26, 2025Statement A and D are write
Pallavi Ghangas
September 26, 2025peptide Bond involving n of proline may displace sis and trans isomerism Alanine have high frequency to form Alpha heli x
Parul
September 26, 2025Alanine has high frequency of occurring in Alpha-helices. Proline can exist in both cis and trans forms during peptide bond formation.
Neelam Sharma
September 27, 2025Understanding amino acid propensities in secondary structures is essential for mastering protein biochemistry. Alanine strongly favors alpha-helices, whereas proline disrupts them and contributes to structural bends due to its cis-trans isomerism.
Minal Sethi
September 27, 2025A and D are correct
Neha Yadav
September 27, 2025Alanine has high frequency of occurring in Alpha-helices. Proline can exist in both cis and trans forms during peptide bond formation.
Kajal
September 27, 2025Option A and D is correct
Khushi Singh
September 27, 2025A is correct
Bhawna Choudhary
September 27, 2025A and D is correct answer
Rishita
September 28, 2025A and d
Mohd juber Ali
September 28, 2025Statement a and d is right
Santosh Saini
September 28, 2025Alanine has a high frequency of occurrence in alpha helices . Peptide bonds involving of proline may display cis trans isomerism
Anju
September 28, 2025Ans: 1(a&d)
Alanine has high propensity
Proline can exist in both cis and trans form
Sakshi Kanwar
September 28, 2025Proline does not have high frequency of occuring alpha helix
And Chi value depends on braching and branching affects the helix formation
So option A and D are correct
Divya rani
September 28, 2025A and D options are correct because alanine is a small, non polar amino acid with a strong propensity for forming alpha helix due to its ability to fit well with in the helical structure without causing steric hindrance.
D is correct because unlike most amino acid which predominantly adopt the trans configuration in peptide bonds Pr online can exist in both cis and trans forms, this property play a crucial role in Protein folding and structure.
Anurag Giri
September 28, 2025peptide Bond involving n of proline may displace sis and trans isomerism Alanine have high frequency to form Alpha helix
sakshi vijay
September 28, 2025a and d is correct option
a- due to less steric hinderance alanine alanine have high frequency forming alpha helix.
b- proline exist in both cis and trans form ,this property of prolinr play critical role in protein folding and structure.
Heena Mahlawat
September 29, 2025A and D
Priya khandal
September 30, 2025A and d is right
Mahima Sharma
September 30, 2025Peptide bonds involving ‘N’ of proline may display cis-trans isomerism
Mahima Sharma
September 30, 2025Alanine have high frequency to form Alpha helix
Arushi Saini
October 1, 2025A and D
Muskan Yadav
October 3, 2025Correct Answer:
The correct combination is (1) A and D.