TY - JOUR
T1 - A spontaneous missense mutation in branched chain keto acid dehydrogenase kinase in the rat affects both the central and peripheral nervous systems
AU - Zigler, J. Samuel
AU - Hodgkinson, Colin A.
AU - Wright, Megan
AU - Klise, Andrew
AU - Sundin, Olof
AU - Broman, Karl W.
AU - Hejtmancik, Fielding
AU - Huang, Hao
AU - Patek, Bonnie
AU - Sergeev, Yuri
AU - Hose, Stacey
AU - Brayton, Cory
AU - Xaiodong, Jiao
AU - Vasquez, David
AU - Maragakis, Nicholas
AU - Mori, Susumu
AU - Goldman, David
AU - Hoke, Ahmet
AU - Sinha, Debasish
N1 - Funding Information:
DS received support from National Institutes of Health, National Institutes of Child Health and Human Disease, R21HD059008, https://www. nichd.nih.gov/Pages/index.aspx. AH received support from Dr. Miriam and Sheldon G. Adelson Medical Research Foundation, http://www.adelsonfoundation. org/amrfphil.html. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript. The invaluable assistance of Drs. James Raber and Ginger Tansey, veterinarians at the National Eye Institute (NEI) and Dr. Martin Lizak at the Mouse Imaging Facility, NINDS, NIH with the husbandry and characterization of the frogleg animals when they first appeared in a colony at the NEI is gratefully acknowledged. The authors thank Drs. Morton F. Goldberg and Eric Wawrousek for critical reading and discussion of the manuscript. The authors would also like to thank Drs. Jiang Qian and Jianbo Pan for their help with the Supplemental videos.
Funding Information:
Funding: DS received support from National Institutes of Health, National Institutes of Child Health and Human Disease, R21HD059008, https://www.
Publisher Copyright:
Copyright: This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication.
PY - 2016/7
Y1 - 2016/7
N2 - A novel mutation, causing a phenotype we named frogleg because its most obvious characteristic is a severe splaying of the hind limbs, arose spontaneously in a colony of Sprague-Dawley rats. Frogleg is a complex phenotype that includes abnormalities in hind limb function, reduced brain weight with dilated ventricles and infertility. Using micro-satellite markers spanning the entire rat genome, the mutation was mapped to a region of rat chromosome 1 between D1Rat131 and D1Rat287. Analysis of whole genome sequencing data within the linkage interval, identified a missense mutation in the branched-chain alpha-keto dehydrogenase kinase (Bckdk) gene. The protein encoded by Bckdk is an integral part of an enzyme complex located in the mitochondrial matrix of many tissues which regulates the levels of the branched-chain amino acids (BCAAs), leucine, isoleucine and valine. BCAAs are essential amino acids (not synthesized by the body), and circulating levels must be tightly regulated; levels that are too high or too low are both deleterious. BCKDK phosphorylates Ser293 of the E1α subunit of the BCKDH protein, which catalyzes the rate-limiting step in the catabolism of the BCAAs, inhibiting BCKDH and thereby, limiting breakdown of the BCAAs. In contrast, when Ser293 is not phosphorylated, BCKDH activity is unchecked and the levels of the BCAAs will decrease dramatically. The mutation is located within the kinase domain of Bckdk and is predicted to be damaging. Consistent with this, we show that in rats homozygous for the mutation, phosphorylation of BCKDH in the brain is markedly decreased relative to wild type or heterozygous littermates. Further, circulating levels of the BCAAs are reduced by 70–80% in animals homozygous for the mutation. The frogleg phenotype shares important characteristics with a previously described Bckdk knockout mouse and with human subjects with Bckdk mutations. In addition, we report novel data regarding peripheral neuropathy of the hind limbs.
AB - A novel mutation, causing a phenotype we named frogleg because its most obvious characteristic is a severe splaying of the hind limbs, arose spontaneously in a colony of Sprague-Dawley rats. Frogleg is a complex phenotype that includes abnormalities in hind limb function, reduced brain weight with dilated ventricles and infertility. Using micro-satellite markers spanning the entire rat genome, the mutation was mapped to a region of rat chromosome 1 between D1Rat131 and D1Rat287. Analysis of whole genome sequencing data within the linkage interval, identified a missense mutation in the branched-chain alpha-keto dehydrogenase kinase (Bckdk) gene. The protein encoded by Bckdk is an integral part of an enzyme complex located in the mitochondrial matrix of many tissues which regulates the levels of the branched-chain amino acids (BCAAs), leucine, isoleucine and valine. BCAAs are essential amino acids (not synthesized by the body), and circulating levels must be tightly regulated; levels that are too high or too low are both deleterious. BCKDK phosphorylates Ser293 of the E1α subunit of the BCKDH protein, which catalyzes the rate-limiting step in the catabolism of the BCAAs, inhibiting BCKDH and thereby, limiting breakdown of the BCAAs. In contrast, when Ser293 is not phosphorylated, BCKDH activity is unchecked and the levels of the BCAAs will decrease dramatically. The mutation is located within the kinase domain of Bckdk and is predicted to be damaging. Consistent with this, we show that in rats homozygous for the mutation, phosphorylation of BCKDH in the brain is markedly decreased relative to wild type or heterozygous littermates. Further, circulating levels of the BCAAs are reduced by 70–80% in animals homozygous for the mutation. The frogleg phenotype shares important characteristics with a previously described Bckdk knockout mouse and with human subjects with Bckdk mutations. In addition, we report novel data regarding peripheral neuropathy of the hind limbs.
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U2 - 10.1371/journal.pone.0160447
DO - 10.1371/journal.pone.0160447
M3 - Article
C2 - 27472223
AN - SCOPUS:85027279460
SN - 1932-6203
VL - 11
JO - PLoS One
JF - PLoS One
IS - 7
M1 - e0160447
ER -