Cytosolic Ca2+-dependent Ca2+ release activity primarily determines the ER Ca2+ level in cells expressing the CPVT-linked mutant RYR2

Author:

Kurebayashi Nagomi1ORCID,Murayama Takashi1ORCID,Ota Ryosaku2ORCID,Suzuki Junji3,Kanemaru Kazunori4,Kobayashi Takuya1,Ohno Seiko5,Horie Minoru6ORCID,Iino Masamitsu4,Yamashita Fumiyoshi2ORCID,Sakurai Takashi1ORCID

Affiliation:

1. Department of Cellular and Molecular Pharmacology, Juntendo University Graduate School of Medicine, Tokyo, Japan

2. Department of Drug Delivery Research, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, Japan

3. Department of Physiology, University of California San Francisco, San Francisco, CA

4. Department of Physiology, Nihon University School of Medicine, Tokyo, Japan

5. Department of Bioscience and Genetics, National Cerebral and Cardiovascular Center Research Institute, Osaka, Japan

6. Department of Cardiovascular Medicine, Shiga University of Medical Science, Shiga, Japan

Abstract

Type 2 ryanodine receptor (RYR2) is a cardiac Ca2+ release channel in the ER. Mutations in RYR2 are linked to catecholaminergic polymorphic ventricular tachycardia (CPVT). CPVT is associated with enhanced spontaneous Ca2+ release, which tends to occur when [Ca2+]ER reaches a threshold. Mutations lower the threshold [Ca2+]ER by increasing luminal Ca2+ sensitivity or enhancing cytosolic [Ca2+] ([Ca2+]cyt)-dependent activity. Here, to establish the mechanism relating the change in [Ca2+]cyt-dependent activity of RYR2 and the threshold [Ca2+]ER, we carried out cell-based experiments and in silico simulations. We expressed WT and CPVT-linked mutant RYR2s in HEK293 cells and measured [Ca2+]cyt and [Ca2+]ER using fluorescent Ca2+ indicators. CPVT RYR2 cells showed higher oscillation frequency and lower threshold [Ca2+]ER than WT cells. The [Ca2+]cyt-dependent activity at resting [Ca2+]cyt, Arest, was greater in CPVT mutants than in WT, and we found an inverse correlation between threshold [Ca2+]ER and Arest. In addition, lowering RYR2 expression increased the threshold [Ca2+]ER and a product of Arest, and the relative expression level for each mutant correlated with threshold [Ca2+]ER, suggesting that the threshold [Ca2+]ER depends on the net Ca2+ release rate via RYR2. Modeling reproduced Ca2+ oscillations with [Ca2+]cyt and [Ca2+]ER changes in WT and CPVT cells. Interestingly, the [Ca2+]cyt-dependent activity of specific mutations correlated with the age of disease onset in patients carrying them. Our data suggest that the reduction in threshold [Ca2+]ER for spontaneous Ca2+ release by CPVT mutation is explained by enhanced [Ca2+]cyt-dependent activity without requiring modulation of the [Ca2+]ER sensitivity of RYR2.

Funder

Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Basis for Supporting Innovative Drug Discovery and Life Science Research

National Center of Neurology and Psychiatry

Vehicle Racing Commemorative Foundation

Publisher

Rockefeller University Press

Subject

Physiology

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