CCNK Gene Deficiency Influences Neural Progenitor Cells Via Wnt5a Signaling in CCNK‐Related Syndrome

Author:

Dai Weiqian1,Wang He2,Zhan Yongkun1,Li Nan1,Li Fei3,Wang Jingmin4,Yan Huifang4,Zhang Yu4,Wang Junyu4,Wu Lingqian5,Liu Huili1,Fan Yanjie1,Tao Yue6,Mo Xi6,Yang Jian‐Jun2,Sun Kun7,Chen Guiquan8,Yu Yongguo1ORCID

Affiliation:

1. Department of Pediatric Endocrinology and Genetics Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai Institute for Pediatric Research Shanghai China

2. Department of Anesthesiology, Pain and Perioperative Medicine The First Affiliated Hospital of Zhengzhou University Zhengzhou China

3. Department of Developmental and Behavioral Pediatrics, Department of Child Primary Care, Brain and Behavioral Research Unit of Shanghai Institute for Pediatric Research and MOE‐Shanghai Key Laboratory for Children's Environmental Health, Xinhua Hospital, School of Medicine Shanghai Jiao Tong University School of Medicine Shanghai China

4. Departmentof Pediatrics Peking University First Hospital Beijing China

5. State Key Laboratory of Medical Genetics Central South University Changsha China

6. Pediatric Translational Medicine Institute, Shanghai Children's Medical Center, School of Medicine Shanghai Jiao Tong University Shanghai China

7. Department of Pediatric Cardiovascular, Center of Clinical Genetics Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine Shanghai China

8. MOE Key Laboratory of Model Animal for Disease Study, Model Animal Research Center, Medical School Nanjing University Nanjing China

Abstract

ObjectiveRare variants of CCNK (cyclin K) give rise to a syndrome with intellectual disability. The purpose of this study was to describe the genotype–phenotype spectrum of CCNK‐related syndrome and the underlying molecular mechanisms of pathogenesis.MethodsWe identified a number of de novo CCNK variants in unrelated patients. We generated patient‐induced pluripotent stem cells (iPSCs) and neural progenitor cells (NPCs) as disease models. In addition, we constructed NPC‐specific Ccnk knockout (KO) mice and performed molecular and morphological analyses.ResultsWe identified 2 new patients harboring CCNK missense variants and followed‐up 3 previous reported patients, which constitute the largest patient population analysis of the disease. We demonstrate that both the patient‐derived NPC models and the Ccnk KO mouse displayed deficient NPC proliferation and enhanced apoptotic cell death. RNA sequencing analyses of these NPC models uncovered transcriptomic signatures unique to CCNK‐related syndrome, revealing significant changes in genes, including WNT5A, critical for progenitor proliferation and cell death. Further, to confirm WNT5A's role, we conducted rescue experiments using NPC and mouse models. We found that a Wnt5a inhibitor significantly increased proliferation and reduced apoptosis in NPCs derived from patients with CCNK‐related syndrome and NPCs in the developing cortex of Ccnk KO mice.InterpretationWe discussed the genotype–phenotype relationship of CCNK‐related syndrome. Importantly, we demonstrated that CCNK plays critical roles in NPC proliferation and NPC apoptosis in vivo and in vitro. Together, our study highlights that Wnt5a may serve as a promising therapeutic target for the disease intervention. ANN NEUROL 2023;94:1136–1154

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Neurology (clinical),Neurology

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