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Ch. 17 - Recombinant DNA Technology
Klug - Essentials of Genetics 10th Edition
Klug10th EditionEssentials of GeneticsISBN: 9780135588789당신이 사용하는 게 아니라요?교과서 변경
17장, 문제 21

Gene targeting and gene editing are both techniques for removing or modifying a particular gene, each of which can produce the same ultimate goal. What is the main technical difference in how DNA is modified that differs between these approaches?

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Understand that both gene targeting and gene editing aim to modify specific DNA sequences within the genome, but they use different molecular mechanisms to achieve this.
Gene targeting typically relies on homologous recombination, a natural cellular process where a piece of introduced DNA with sequences homologous to the target site replaces or modifies the endogenous gene through crossover events.
Gene editing, on the other hand, often uses engineered nucleases (such as CRISPR-Cas9, TALENs, or ZFNs) to create targeted double-strand breaks (DSBs) at specific genomic locations.
After the DSB is introduced in gene editing, the cell's repair machinery fixes the break either by non-homologous end joining (NHEJ), which can introduce insertions or deletions, or by homology-directed repair (HDR) if a repair template is provided, allowing precise modifications.
Therefore, the main technical difference lies in gene targeting using homologous recombination without necessarily inducing breaks, while gene editing actively induces targeted DNA breaks to stimulate repair pathways for modification.

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주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Gene Targeting

Gene targeting is a technique that uses homologous recombination to introduce specific changes into a gene by replacing or disrupting it with a designed DNA sequence. This method relies on the cell's natural DNA repair mechanisms to incorporate the introduced DNA at a precise location.
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Gene Editing

Gene editing involves directly cutting the DNA at a specific site using engineered nucleases like CRISPR-Cas9, TALENs, or ZFNs, followed by the cell's repair processes to introduce mutations or insertions. It allows precise and efficient modification without necessarily relying on homologous recombination.
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DNA Repair Mechanisms

Cells repair DNA breaks primarily through homologous recombination (HR) or non-homologous end joining (NHEJ). Gene targeting depends on HR for precise DNA replacement, while gene editing often exploits NHEJ or HR after nuclease-induced double-strand breaks to achieve desired modifications.
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Repair Pathways