Literature DB >> 27586648

Genotype-Phenotype Correlations of Malignant Hyperthermia and Central Core Disease Mutations in the Central Region of the RYR1 Channel.

Takashi Murayama1, Nagomi Kurebayashi2, Haruo Ogawa3, Toshiko Yamazawa4, Hideto Oyamada5, Junji Suzuki6, Kazunori Kanemaru6, Katsuji Oguchi5, Masamitsu Iino6, Takashi Sakurai2.   

Abstract

Type 1 ryanodine receptor (RYR1) is a Ca2+ release channel in the sarcoplasmic reticulum of skeletal muscle and is mutated in some muscle diseases, including malignant hyperthermia (MH) and central core disease (CCD). Over 200 mutations associated with these diseases have been identified, and most mutations accelerate Ca2+ -induced Ca2+ release (CICR), resulting in abnormal Ca2+ homeostasis in skeletal muscle. However, it remains largely unknown how specific mutations cause different phenotypes. In this study, we investigated the CICR activity of 14 mutations at 10 different positions in the central region of RYR1 (10 MH and four MH/CCD mutations) using a heterologous expression system in HEK293 cells. In live-cell Ca2+ imaging, the mutant channels exhibited an enhanced sensitivity to caffeine, a reduced endoplasmic reticulum Ca2+ content, and an increased resting cytoplasmic Ca2+ level. The three parameters for CICR (Ca2+ sensitivity for activation, Ca2+ sensitivity for inactivation, and attainable maximum activity, i.e., gain) were obtained by [3 H]ryanodine binding and fitting analysis. The mutant channels showed increased gain and Ca2+ sensitivity for activation in a site-specific manner. Genotype-phenotype correlations were explained well by the near-atomic structure of RYR1. Our data suggest that divergent CICR activity may cause various disease phenotypes by specific mutations.
© 2016 WILEY PERIODICALS, INC.

Entities:  

Keywords:  calcium release channel; calcium-induced calcium release; central core disease; genotype-phenotype correlation; malignant hyperthermia; muscle disease; ryanodine receptor; sarcoplasmic reticulum; skeletal muscle

Mesh:

Substances:

Year:  2016        PMID: 27586648     DOI: 10.1002/humu.23072

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  19 in total

1.  Mouse model of severe recessive RYR1-related myopathy.

Authors:  Stephanie Brennan; Maricela Garcia-Castañeda; Antonio Michelucci; Nesrin Sabha; Sundeep Malik; Linda Groom; Lan Wei LaPierre; James J Dowling; Robert T Dirksen
Journal:  Hum Mol Genet       Date:  2019-09-15       Impact factor: 6.150

Review 2.  Clinical Pharmacogenetics Implementation Consortium (CPIC) Guideline for the Use of Potent Volatile Anesthetic Agents and Succinylcholine in the Context of RYR1 or CACNA1S Genotypes.

Authors:  Stephen G Gonsalves; Robert T Dirksen; Katrin Sangkuhl; Rebecca Pulk; Maria Alvarellos; Teresa Vo; Keiko Hikino; Dan Roden; Teri E Klein; S Mark Poler; Sephalie Patel; Kelly E Caudle; Ronald Gordon; Barbara Brandom; Leslie G Biesecker
Journal:  Clin Pharmacol Ther       Date:  2019-01-24       Impact factor: 6.875

3.  Reduced threshold for store overload-induced Ca2+ release is a common defect of RyR1 mutations associated with malignant hyperthermia and central core disease.

Authors:  Wenqian Chen; Andrea Koop; Yingjie Liu; Wenting Guo; Jinhong Wei; Ruiwu Wang; David H MacLennan; Robert T Dirksen; Sui Rong Wayne Chen
Journal:  Biochem J       Date:  2017-08-07       Impact factor: 3.857

4.  Molecular mechanism of the severe MH/CCD mutation Y522S in skeletal ryanodine receptor (RyR1) by cryo-EM.

Authors:  Kavita A Iyer; Yifan Hu; Thomas Klose; Takashi Murayama; Montserrat Samsó
Journal:  Proc Natl Acad Sci U S A       Date:  2022-07-22       Impact factor: 12.779

5.  Mice with R2509C-RYR1 mutation exhibit dysfunctional Ca2+ dynamics in primary skeletal myocytes.

Authors:  Yoshitaka Tsuboi; Kotaro Oyama; Fuyu Kobirumaki-Shimozawa; Takashi Murayama; Nagomi Kurebayashi; Toshiaki Tachibana; Yoshinobu Manome; Emi Kikuchi; Satoru Noguchi; Takayoshi Inoue; Yukiko U Inoue; Ichizo Nishino; Shuichi Mori; Ryosuke Ishida; Hiroyuki Kagechika; Madoka Suzuki; Norio Fukuda; Toshiko Yamazawa
Journal:  J Gen Physiol       Date:  2022-10-06       Impact factor: 4.000

6.  Molecular basis for gating of cardiac ryanodine receptor explains the mechanisms for gain- and loss-of function mutations.

Authors:  Takuya Kobayashi; Akihisa Tsutsumi; Nagomi Kurebayashi; Kei Saito; Masami Kodama; Takashi Sakurai; Masahide Kikkawa; Takashi Murayama; Haruo Ogawa
Journal:  Nat Commun       Date:  2022-05-20       Impact factor: 17.694

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

Authors:  Nagomi Kurebayashi; Takashi Murayama; Ryosaku Ota; Fumiyoshi Yamashita; Junji Suzuki; Kazunori Kanemaru; Takuya Kobayashi; Seiko Ohno; Minoru Horie; Masamitsu Iino; Takashi Sakurai
Journal:  J Gen Physiol       Date:  2022-04-21       Impact factor: 4.000

8.  Functional Characterization of C-terminal Ryanodine Receptor 1 Variants Associated with Central Core Disease or Malignant Hyperthermia.

Authors:  Remai Parker; Anja H Schiemann; Elaine Langton; Terasa Bulger; Neil Pollock; Andrew Bjorksten; Robyn Gillies; David Hutchinson; Richard Roxburgh; Kathryn M Stowell
Journal:  J Neuromuscul Dis       Date:  2017

9.  Extensive Ca2+ leak through K4750Q cardiac ryanodine receptors caused by cytosolic and luminal Ca2+ hypersensitivity.

Authors:  Akira Uehara; Takashi Murayama; Midori Yasukochi; Michael Fill; Minoru Horie; Toru Okamoto; Yoshiharu Matsuura; Kiyoko Uehara; Takahiro Fujimoto; Takashi Sakurai; Nagomi Kurebayashi
Journal:  J Gen Physiol       Date:  2017-01-12       Impact factor: 4.086

10.  A novel RyR1-selective inhibitor prevents and rescues sudden death in mouse models of malignant hyperthermia and heat stroke.

Authors:  Toshiko Yamazawa; Takuya Kobayashi; Nagomi Kurebayashi; Masato Konishi; Satoru Noguchi; Takayoshi Inoue; Yukiko U Inoue; Ichizo Nishino; Shuichi Mori; Hiroto Iinuma; Noriaki Manaka; Hiroyuki Kagechika; Arkady Uryash; Jose Adams; Jose R Lopez; Xiaochen Liu; Christine Diggle; Paul D Allen; Sho Kakizawa; Keigo Ikeda; Bangzhong Lin; Yui Ikemi; Kazuto Nunomura; Shinsaku Nakagawa; Takashi Sakurai; Takashi Murayama
Journal:  Nat Commun       Date:  2021-07-13       Impact factor: 14.919

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