5.7 Protein Synthesis – Human Biology (2024)

Created by: CK-12/Adapted by Christine Miller

5.7Protein Synthesis – Human Biology (1)

This amazing artwork (Figure 5.7.1) shows a process that takes place in the cells of all living things: the production of proteins. This process is called protein synthesis, and itactually consists of two processes —transcriptionand translation. In eukaryoticcells, transcription takes place in thenucleus. During transcription,DNAis used as a template to make a molecule of messengerRNA(mRNA). The molecule of mRNA then leaves the nucleus and goes to aribosomein the cytoplasm, where translation occurs. During translation, thegenetic code in mRNA is read and used to make a polypeptide. These two processes are summed up by thecentral dogmaof molecular biology:DNA RNAProtein.

Transcriptionis the first part of thecentral dogmaof molecular biology:DNARNA. It is the transfer of genetic instructions in DNA to mRNA. During transcription, a strand of mRNA is made to complement a strand of DNA. You can see how this happens in Figure 5.7.2.

5.7Protein Synthesis – Human Biology (2)

Transcription begins when the enzyme RNA polymerase binds to a region of a gene called the promoter sequence. This signals the DNA to unwind so the enzyme can “read” the bases of DNA. The two strands of DNA are named based on whether they will be used as a template for RNA or not. The strand that is used as a template is called the template strand, or can also be called the antisensestrand. The sequence of bases on the opposite strand of DNA is called the non-coding or sense strand. Once the DNA has opened, and RNA polymerase has attached, the RNA polymerase moves along the DNA, adding RNA nucleotides to the growing mRNA strand. The template strand of DNA is used as to create mRNA through complementary base pairing. Once the mRNA strand is complete, and it detaches from DNA. The result is a strand of mRNA that is nearly identical to the coding strand DNA – the only difference being that DNA uses the base thymine, and the mRNA uses uracil in the place of thymine

Processing mRNA

In eukaryotes, the new mRNA is not yet ready for translation. At this stage, it is called pre-mRNA, and it must go through more processing before it leaves thenucleusas mature mRNA. The processing may include splicing, editing, and polyadenylation. These processes modify the mRNA in various ways. Such modifications allow a single gene to be used to make more than oneprotein.

  • Splicing removes introns from mRNA, as shown in Figure 5.7.3. Intronsare regions that do not code for the protein. The remaining mRNA consists only of regions calledexonsthat do code for the protein. The ribonucleoproteins in the diagram are smallproteinsin the nucleus that contain RNA and are needed for the splicing process.
  • Editing changes some of the nucleotides in mRNA. For example, a human protein called APOB, which helps transportlipidsin theblood, has two different forms because of editing. One form is smaller than the other because editing adds an earlier stop signal in mRNA.
  • 5′ Cappingadds a methylated cap to the “head” of the mRNA. This cap protects the mRNA from breaking down, and helps the ribosomes know where to bind to the mRNA
  • Polyadenylation adds a “tail” to the mRNA. The tail consists of a string of As (adenine bases). It signals the end of mRNA. It is also involved in exporting mRNA from the nucleus, and it protects mRNA fromenzymes that might break it down.
5.7Protein Synthesis – Human Biology (3)

Translationis the second part of thecentral dogmaof molecular biology:RNA Protein. It is the process in which the genetic code in mRNA is read to make a protein. Translation is illustrated in Figure 5.7.4. After mRNA leaves the nucleus, it moves to a ribosome, which consists of rRNA and proteins. The ribosome reads the sequence of codons in mRNA, and molecules of tRNA bring amino acids to the ribosome in the correct sequence.

Translation occurs in three stages: Initiation, Elongation and Termination.

Initiation:

After transcription in the nucleus, the mRNA exits through a nuclear pore and enters the cytoplasm. At the region on the mRNA containing the methylated cap and the start codon, the small and large subunits of the ribosome bind to the mRNA. These are then joined by a tRNA which contains the anticodons matching the start codon on the mRNA. This group of molecues (mRNA, ribosome, tRNA) is called an initiation complex.

Elongation:

tRNA keep bringing amino acids to the growing polypeptide according to complementary base pairing between the codons on the mRNA and the anticodons on the tRNA. As a tRNA moves into the ribosome, its amino acid is transferred to the growing polypeptide. Once this transfer is complete, the tRNA leaves the ribosome, the ribosome moves one codon length down the mRNA, and a new tRNA enters with its corresponding amino acid. This process repeats and the polypeptide grows.

Termination:

At the end of the mRNA coding is a stop codon which will end the elongation stage. The stop codon doesn’t call for a tRNA, but instead for a type of protein called a release factor, which will cause the entire complex (mRNA, ribosome, tRNA, and polypeptide) to break apart, releasing all of the components.

5.7Protein Synthesis – Human Biology (4)

Watch this video “Protein Synthesis (Updated) with the Amoeba Sisters” to see this process in action:

Protein Synthesis (Updated), Amoeba Sisters, 2018.

After a polypeptide chain is synthesized, it may undergo additional processes. For example, it may assume a folded shape due to interactions between its amino acids. It may also bind with other polypeptides or with different types of molecules, such as lipids or carbohydrates. Many proteins travel to the Golgi apparatus within the cytoplasm to be modified for the specific job they will do.7 Summary

5.7 Summary

  • Protein synthesis is the process in whichcellsmake proteins. It occurs in two stages: transcription and translation.
  • Transcription is the transfer of genetic instructions in DNA to mRNA in the nucleus. It includes three steps: initiation, elongation, and termination. After the mRNA is processed, it carries the instructions to a ribosome in the cytoplasm.
  • Translation occurs at the ribosome, which consists of rRNA and proteins. In translation, the instructions in mRNA are read, and tRNA brings the correct sequence of amino acids to the ribosome. Then, rRNA helps bonds form between the amino acids, producing a polypeptide chain.
  • After a polypeptide chain is synthesized, it may undergo additional processing to form the finished protein.
  1. Relate protein synthesis and its two major phases to the central dogma of molecular biology.
  2. Explain how mRNA is processed before it leaves the nucleus.
  3. What additional processes mighta polypeptide chain undergo after it is synthesized?
  4. Where does transcription take place in eukaryotes?
  5. Where does translation take place?

Protein Synthesis, Teacher’s Pet, 2014.

Attributions

Figure 5.7.1

How proteins are made by Nicolle Rager, National Science Foundation on Wikimedia Commons is released into the public domain (https://en.wikipedia.org/wiki/Public_domain).

Figure 5.7.2

Transcription by National Human Genome Research Institute, (reworked and vectorized by Sulai) on Wikimedia Commons is released into the public domain (https://en.wikipedia.org/wiki/Public_domain).

Figure 5.7.3

Pre mRNA processing by Christine Miller is used under a CC BY-NC-SA 4.0 (https://creativecommons.org/licenses/by-nc-sa/4.0/) license.

Figure 5.7.4

Translationby CNX OpenStax on Wikimedia Commons is used under a CC BY 4.0 (https://creativecommons.org/licenses/by/4.0) license.

References

Amoeba Sisters. (2018, January 18) Protein synthesis (Updated). YouTube. https://www.youtube.com/watch?v=oefAI2x2CQM&feature=youtu.be

Parker, N., Schneegurt, M., Thi Tu, A-H., Lister, P., Forster, B.M. (2016, November 1). Microbiology [online]. Figure 11.15 Translation in bacteria begins with the formation of the initiation complex. In Microbiology (Section 11-4). OpenStax. https://openstax.org/books/microbiology/pages/11-4-protein-synthesis-translation

Teacher’s Pet. (2014, December 7). Protein synthesis. YouTube. https://www.youtube.com/watch?v=2zAGAmTkZNY&feature=youtu.be

5.7 Protein Synthesis – Human Biology (2024)
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