Identification of novel OCRL isoforms associated with phenotypic differences between Dent disease-2 and Lowe syndrome

Author:

Sakakibara Nana1ORCID,Ijuin Takeshi2,Horinouchi Tomoko1,Yamamura Tomohiko1,Nagano China1ORCID,Okada Eri13,Ishiko Shinya1,Aoto Yuya1,Rossanti Rini1,Ninchoji Takeshi1,Awano Hiroyuki1,Nagase Hiroaki1,Minamikawa Shogo1,Tanaka Ryojiro4,Matsuyama Takeshi5,Nagatani Koji6,Kamei Koichi7,Jinnouchi Kumiko8,Ohtsuka Yasufumi8,Oka Masafumi8,Araki Yoshinori9,Tanaka Toju9,Harada Mari S10,Igarashi Toru11,Kitahara Hikaru12,Morisada Naoya113ORCID,Nakamura Shun-ichi2,Okada Taro2,Iijima Kazumoto1ORCID,Nozu Kandai1ORCID

Affiliation:

1. Department of Pediatrics, Kobe University Graduate School of Medicine, Kobe, Japan

2. Division of Biochemistry, Kobe University Graduate School of Medicine, Kobe, Japan

3. Department of Nephrology, Faculty of Medicine, University of Tsukuba, Tsukuba, Japan

4. Department of Nephrology, Hyogo Prefectural Kobe Children's Hospital, Kobe, Japan

5. Department of Pediatrics, Fussa Hospital, Tokyo, Japan

6. Department of Pediatrics, Uwajima City Hospital, Uwajima, Japan

7. Division of Nephrology and Rheumatology, National Center for Child Health and Development, Tokyo, Japan

8. Department of Pediatrics, Faculty of Medicine, Saga University, Saga, Japan

9. Department of Pediatrics, National Hospital Organization Hokkaido Medical Center, Sapporo, Japan

10. Department of Pediatrics, School of Medicine, University of Occupational and Environmental Health, Kitakyushu, Japan

11. Department of Pediatrics, Nippon Medical School Hospital, Tokyo, Japan

12. Department of Pediatrics, Osaka Medical College, Takatsuki, Japan

13. Department of Clinical Genetics, Hyogo Prefectural Kobe Children's Hospital, Kobe, Japan

Abstract

ABSTRACT Background Although Lowe syndrome and Dent disease-2 are caused by Oculocerebrorenal syndrome of Lowe (OCRL) mutations, their clinical severities differ substantially and their molecular mechanisms remain unclear. Truncating mutations in OCRL exons 1–7 lead to Dent disease-2, whereas those in exons 8–24 lead to Lowe syndrome. Herein we identified the mechanism underlying the action of novel OCRL protein isoforms. Methods Messenger RNA samples extracted from cultured urine-derived cells from a healthy control and a Dent disease-2 patient were examined to detect the 5′ end of the OCRL isoform. For protein expression and functional analysis, vectors containing the full-length OCRL transcripts, the isoform transcripts and transcripts with truncating mutations detected in Lowe syndrome and Dent disease-2 patients were transfected into HeLa cells. Results We successfully cloned the novel isoform transcripts from OCRL exons 6–24, including the translation-initiation codons present in exon 8. In vitro protein-expression analysis detected proteins of two different sizes (105 and 80 kDa) translated from full-length OCRL, whereas only one protein (80 kDa) was found from the isoform and Dent disease-2 variants. No protein expression was observed for the Lowe syndrome variants. The isoform enzyme activity was equivalent to that of full-length OCRL; the Dent disease-2 variants retained >50% enzyme activity, whereas the Lowe syndrome variants retained <20% activity. Conclusions We elucidated the molecular mechanism underlying the two different phenotypes in OCRL-related diseases; the functional OCRL isoform translated starting at exon 8 was associated with this mechanism.

Funder

Ministry of Education, Culture, Sports, Science and Technology

Publisher

Oxford University Press (OUP)

Subject

Transplantation,Nephrology

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