Robust genome editing activity and the applications of enhanced miniature CRISPR-Cas12f1

S Soo-ji Park S Sungjin Ju W Won Jun Jung T Tae Yeong Jeong D Da Eun Yoon J Jang Hyeon Lee J Jiyun Yang H Hojin Lee J Jungmin Choi (Department of Genetics, Yale School of Medicine) H Hyeon Soo Kim K Kyoungmi Kim

Abstract

Abstract With recent advancements in gene editing technology using the CRISPR/Cas system, there is a demand for more effective gene editors. A key factor facilitating efficient gene editing is effective CRISPR delivery into cells, which is known to be associated with the size of the CRISPR system. Accordingly, compact CRISPR-Cas systems derived from various strains are discovered, among which Un1Cas12f1 is 2.6 times smaller than SpCas9, providing advantages for gene therapy research. Despite extensive engineering efforts to improve Un1Cas12f1, the editing efficiency of Un1Cas12f1 is still shown to be low depending on the target site. To overcome this limitation, we develop enhanced Cas12f1 (eCas12f1), which exhibits gene editing activity similar to SpCas9 and AsCpf1, even in gene targets where previously improved Un1Cas12f1 variants showed low gene editing efficiency. Furthermore, we demonstrate that eCas12f1 efficiently induces apoptosis in cancer cells and is compatible with base editing and regulation of gene expression, verifying its high utility and applicability in gene therapy research.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

S

Soo-ji Park

S

Sungjin Ju

W

Won Jun Jung

T

Tae Yeong Jeong

D

Da Eun Yoon

J

Jang Hyeon Lee

J

Jiyun Yang

H

Hojin Lee

J

Jungmin Choi

Department of Genetics, Yale School of Medicine

H

Hyeon Soo Kim

K

Kyoungmi Kim