Itpr1 regulates the formation of anterior eye segment tissues derived from neural crest cells

Author:

Kinoshita Akira1ORCID,Ohyama Kaname2ORCID,Tanimura Susumu3,Matsuda Katsuya4,Kishino Tatsuya5,Negishi Yutaka6,Asahina Naoko7,Shiraishi Hideaki7,Hosoki Kana8ORCID,Tomiwa Kiyotaka9ORCID,Ishihara Naoko10,Mishima Hiroyuki1ORCID,Mori Ryoichi11,Nakashima Masahiro4,Saitoh Shinji6,Yoshiura Koh-ichiro1

Affiliation:

1. Department of Human Genetics, Atomic Bomb Disease Institute, Nagasaki University, Nagasaki 852-8523, Japan

2. Department of Pharmacy Practice, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki 852-3131, Japan

3. Department of Cell Regulation, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki 852-3131, Japan

4. Department of Tumor and Diagnostic Pathology, Atomic Bomb Disease Institute, Nagasaki University, Nagasaki 852-8523, Japan

5. Gene Research Center, Center for Frontier Life Sciences, Nagasaki University, Nagasaki 852-8523, Japan

6. Department of Pediatrics and Neonatology, Nagoya City University Graduate School of Medical Sciences, Nagoya 467-8602, Japan

7. Department of Pediatrics, Hokkaido University Graduate School of Medicine, Sapporo 060-8638, Japan

8. Department of Medical Genetics, Osaka Women's and Children's Hospital, Osaka 594-1101, Japan

9. Department of Pediatrics, Todaiji Ryoiku Hospital for Children, Nara 630-8211, Japan

10. Department of Pediatrics, Fujita Health University School of Medicine, Toyoake 470-1192, Japan

11. Department of Pathology, Nagasaki University School of Medicine and Graduate School of Biomedical Sciences, Nagasaki 852-8523, Japan

Abstract

ABSTRACT Mutations in ITPR1 cause ataxia and aniridia in individuals with Gillespie syndrome (GLSP). However, the pathogenic mechanisms underlying aniridia remain unclear. We identified a de novo GLSP mutation hotspot in the 3′-region of ITPR1 in five individuals with GLSP. Furthermore, RNA-sequencing and immunoblotting revealed an eye-specific transcript of Itpr1, encoding a 218amino acid isoform. This isoform is localized not only in the endoplasmic reticulum, but also in the nuclear and cytoplasmic membranes. Ocular-specific transcription was repressed by SOX9 and induced by MAF in the anterior eye segment (AES) tissues. Mice lacking seven base pairs of the last Itpr1 exon exhibited ataxia and aniridia, in which the iris lymphatic vessels, sphincter and dilator muscles, corneal endothelium and stroma were disrupted, but the neural crest cells persisted after completion of AES formation. Our analyses revealed that the 218-amino acid isoform regulated the directionality of actin fibers and the intensity of focal adhesion. The isoform might control the nuclear entry of transcriptional regulators, such as YAP. It is also possible that ITPR1 regulates both AES differentiation and muscle contraction in the iris.

Funder

Japan Society for the Promotion of Science

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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