In which subject did Har Gobind Khorana receive the Nobel Prize?

Points to Remember:

  • Har Gobind Khorana’s Nobel Prize
  • Subject of his Nobel Prize
  • Year of the award

Introduction:

Har Gobind Khorana was a highly distinguished biochemist who made groundbreaking contributions to the understanding of the genetic code. His work was pivotal in deciphering how the sequence of nucleotides in DNA translates into the sequence of amino acids in proteins – a fundamental process of life. This research earned him significant recognition, culminating in a Nobel Prize. This answer will detail the specific subject area for which he received this prestigious award.

Body:

Subject of the Nobel Prize:

Har Gobind Khorana received the Nobel Prize in Physiology or Medicine in 1968. He shared the prize with Marshall W. Nirenberg and Robert W. Holley.

Khorana’s Contributions:

Khorana’s work focused on the interpretation of the genetic code. Specifically, he synthesized RNA molecules with defined sequences and used them to decipher the relationship between the sequence of nucleotides in RNA and the sequence of amino acids in the resulting proteins. This involved painstaking laboratory work, including the chemical synthesis of polynucleotides, which was a significant technical achievement at the time. His research provided crucial evidence for understanding how genetic information is translated into functional proteins, a process essential for all life forms.

Significance of the Award:

The Nobel Prize in Physiology or Medicine recognized the monumental importance of Khorana’s contributions to our understanding of the fundamental mechanisms of life. His work laid the foundation for numerous advancements in molecular biology, genetics, and biotechnology. It opened doors to genetic engineering, gene therapy, and other transformative technologies that continue to impact medicine and other fields.

Conclusion:

In summary, Har Gobind Khorana’s Nobel Prize in Physiology or Medicine in 1968 acknowledged his pioneering work in deciphering the genetic code. His research, involving the synthesis of RNA molecules with defined sequences and their use in understanding protein synthesis, was a landmark achievement in molecular biology. This fundamental understanding has had a profound and lasting impact on various scientific fields, highlighting the importance of basic research in driving technological advancements and improving human health. His legacy continues to inspire scientists to explore the complexities of life at the molecular level, furthering our understanding of biological processes and paving the way for future breakthroughs in medicine and biotechnology.

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