Literature DB >> 33734376

Genetic analysis of Pycr1 and Pycr2 in mice.

Morgane G Stum1, Abigail L D Tadenev1, Kevin L Seburn1, Kathy E Miers1, Pak P Poon2, Christopher R McMaster2, Carolyn Robinson3, Coleen Kane1, Kathleen A Silva1, Paul F Cliften4, John P Sundberg1, Laura G Reinholdt1, Simon W M John1,5,6, Robert W Burgess1.   

Abstract

The final step in proline biosynthesis is catalyzed by three pyrroline-5-carboxylate reductases, PYCR1, PYCR2, and PYCR3, which convert pyrroline-5-carboxylate (P5C) to proline. Mutations in human PYCR1 and ALDH18A1 (P5C Synthetase) cause Cutis Laxa (CL), whereas mutations in PYCR2 cause hypomyelinating leukodystrophy 10 (HLD10). Here, we investigated the genetics of Pycr1 and Pycr2 in mice. A null allele of Pycr1 did not show integument or CL-related phenotypes. We also studied a novel chemically-induced mutation in Pycr2. Mice with recessive loss-of-function mutations in Pycr2 showed phenotypes consistent with neurological and neuromuscular disorders, including weight loss, kyphosis, and hind-limb clasping. The peripheral nervous system was largely unaffected, with only mild axonal atrophy in peripheral nerves. A severe loss of subcutaneous fat in Pycr2 mutant mice is reminiscent of a CL-like phenotype, but primary features such as elastin abnormalities were not observed. Aged Pycr2 mutant mice had reduced white blood cell counts and altered lipid metabolism, suggesting a generalized metabolic disorder. PYCR1 and -2 have similar enzymatic and cellular activities, and consistent with previous studies, both were localized in the mitochondria in fibroblasts. Both PYCR1 and -2 were able to complement the loss of Pro3, the yeast enzyme that converts P5C to proline, confirming their activity as P5C reductases. In mice, Pycr1; Pycr2 double mutants were sub-viable and unhealthy compared to either single mutant, indicating the genes are largely functionally redundant. Proline levels were not reduced, and precursors were not increased in serum from Pycr2 mutant mice or in lysates from skin fibroblast cultures, but placing Pycr2 mutant mice on a proline-free diet worsened the phenotype. Thus, Pycr1 and -2 have redundant functions in proline biosynthesis, and their loss makes proline a semi-essential amino acid. These findings have implications for understanding the genetics of CL and HLD10, and for modeling these disorders in mice.
© The Author(s) 2021. Published by Oxford University Press on behalf of Genetics Society of America. All rights reserved. For permissions, please email: journals.permissions@oup.com.

Entities:  

Keywords:  adipocyte; cutis laxa; elastin; hypomyelinating leukodystrophy; metabolism; proline synthesis; skin

Mesh:

Substances:

Year:  2021        PMID: 33734376      PMCID: PMC8128379          DOI: 10.1093/genetics/iyab048

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  55 in total

1.  De Barsy Syndrome: a genetically heterogeneous autosomal recessive cutis laxa syndrome related to P5CS and PYCR1 dysfunction.

Authors:  Stefania Zampatti; Marco Castori; Bjoern Fischer; Paola Ferrari; Livia Garavelli; Carlo Dionisi-Vici; Emanuele Agolini; Anita Wischmeijer; Eva Morava; Giuseppe Novelli; Johannes Häberle; Uwe Kornak; Francesco Brancati
Journal:  Am J Med Genet A       Date:  2012-03-12       Impact factor: 2.802

2.  Altered TGFbeta signaling and cardiovascular manifestations in patients with autosomal recessive cutis laxa type I caused by fibulin-4 deficiency.

Authors:  Marjolijn Renard; Tammy Holm; Regan Veith; Bert L Callewaert; Lesley C Adès; Osman Baspinar; Angela Pickart; Majed Dasouki; Juliane Hoyer; Anita Rauch; Pamela Trapane; Michael G Earing; Paul J Coucke; Lynn Y Sakai; Harry C Dietz; Anne M De Paepe; Bart L Loeys
Journal:  Eur J Hum Genet       Date:  2010-04-14       Impact factor: 4.246

3.  Spectrum of ENU-induced mutations in phenotype-driven and gene-driven screens in the mouse.

Authors:  Ivana Barbaric; Sara Wells; Andreas Russ; T Neil Dear
Journal:  Environ Mol Mutagen       Date:  2007-03       Impact factor: 3.216

4.  Functional specialization in proline biosynthesis of melanoma.

Authors:  Jessica De Ingeniis; Boris Ratnikov; Adam D Richardson; David A Scott; Pedro Aza-Blanc; Surya K De; Marat Kazanov; Maurizio Pellecchia; Ze'ev Ronai; Andrei L Osterman; Jeffrey W Smith
Journal:  PLoS One       Date:  2012-09-14       Impact factor: 3.240

5.  Proline biosynthesis augments tumor cell growth and aerobic glycolysis: involvement of pyridine nucleotides.

Authors:  Wei Liu; Chad N Hancock; Joseph W Fischer; Meredith Harman; James M Phang
Journal:  Sci Rep       Date:  2015-11-24       Impact factor: 4.379

Review 6.  The Diverse Functions of Non-Essential Amino Acids in Cancer.

Authors:  Bo-Hyun Choi; Jonathan L Coloff
Journal:  Cancers (Basel)       Date:  2019-05-15       Impact factor: 6.639

7.  Mutations in PYCR1 cause cutis laxa with progeroid features.

Authors:  Bruno Reversade; Nathalie Escande-Beillard; Aikaterini Dimopoulou; Björn Fischer; Serene C Chng; Yun Li; Mohammad Shboul; Puay-Yoke Tham; Hülya Kayserili; Lihadh Al-Gazali; Monzer Shahwan; Francesco Brancati; Hane Lee; Brian D O'Connor; Mareen Schmidt-von Kegler; Barry Merriman; Stanley F Nelson; Amira Masri; Fawaz Alkazaleh; Deanna Guerra; Paola Ferrari; Arti Nanda; Anna Rajab; David Markie; Mary Gray; John Nelson; Arthur Grix; Annemarie Sommer; Ravi Savarirayan; Andreas R Janecke; Elisabeth Steichen; David Sillence; Ingrid Hausser; Birgit Budde; Gudrun Nürnberg; Peter Nürnberg; Petra Seemann; Désirée Kunkel; Giovanna Zambruno; Bruno Dallapiccola; Markus Schuelke; Stephen Robertson; Hanan Hamamy; Bernd Wollnik; Lionel Van Maldergem; Stefan Mundlos; Uwe Kornak
Journal:  Nat Genet       Date:  2009-08-02       Impact factor: 38.330

8.  ALDH18A1 gene mutations cause dominant spastic paraplegia SPG9: loss of function effect and plausibility of a dominant negative mechanism.

Authors:  Emanuele Panza; Juan M Escamilla-Honrubia; Clara Marco-Marín; Nadine Gougeard; Giuseppe De Michele; Vincenzo Brescia Morra; Rocco Liguori; Leonardo Salviati; Maria Alice Donati; Roberto Cusano; Tommaso Pippucci; Roberto Ravazzolo; Andrea H Németh; Sarah Smithson; Sally Davies; Jane A Hurst; Domenico Bordo; Vicente Rubio; Marco Seri
Journal:  Brain       Date:  2015-08-21       Impact factor: 13.501

9.  PYCR2 Mutations cause a lethal syndrome of microcephaly and failure to thrive.

Authors:  Maha S Zaki; Gifty Bhat; Tipu Sultan; Mahmoud Issa; Hea-Jin Jung; Esra Dikoglu; Laila Selim; Imam G Mahmoud; Mohamed S Abdel-Hamid; Ghada Abdel-Salam; Isaac Marin-Valencia; Joseph G Gleeson
Journal:  Ann Neurol       Date:  2016-06-01       Impact factor: 10.422

10.  High-throughput discovery of novel developmental phenotypes.

Authors:  Mary E Dickinson; Ann M Flenniken; Xiao Ji; Lydia Teboul; Michael D Wong; Jacqueline K White; Terrence F Meehan; Wolfgang J Weninger; Henrik Westerberg; Hibret Adissu; Candice N Baker; Lynette Bower; James M Brown; L Brianna Caddle; Francesco Chiani; Dave Clary; James Cleak; Mark J Daly; James M Denegre; Brendan Doe; Mary E Dolan; Sarah M Edie; Helmut Fuchs; Valerie Gailus-Durner; Antonella Galli; Alessia Gambadoro; Juan Gallegos; Shiying Guo; Neil R Horner; Chih-Wei Hsu; Sara J Johnson; Sowmya Kalaga; Lance C Keith; Louise Lanoue; Thomas N Lawson; Monkol Lek; Manuel Mark; Susan Marschall; Jeremy Mason; Melissa L McElwee; Susan Newbigging; Lauryl M J Nutter; Kevin A Peterson; Ramiro Ramirez-Solis; Douglas J Rowland; Edward Ryder; Kaitlin E Samocha; John R Seavitt; Mohammed Selloum; Zsombor Szoke-Kovacs; Masaru Tamura; Amanda G Trainor; Ilinca Tudose; Shigeharu Wakana; Jonathan Warren; Olivia Wendling; David B West; Leeyean Wong; Atsushi Yoshiki; Daniel G MacArthur; Glauco P Tocchini-Valentini; Xiang Gao; Paul Flicek; Allan Bradley; William C Skarnes; Monica J Justice; Helen E Parkinson; Mark Moore; Sara Wells; Robert E Braun; Karen L Svenson; Martin Hrabe de Angelis; Yann Herault; Tim Mohun; Ann-Marie Mallon; R Mark Henkelman; Steve D M Brown; David J Adams; K C Kent Lloyd; Colin McKerlie; Arthur L Beaudet; Maja Bućan; Stephen A Murray
Journal:  Nature       Date:  2016-09-14       Impact factor: 49.962

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  1 in total

1.  Pyrroline-5-Carboxylate Reductase 1 Directs the Cartilage Protective and Regenerative Potential of Murphy Roths Large Mouse Mesenchymal Stem Cells.

Authors:  Gautier Tejedor; Rafael Contreras-Lopez; Audrey Barthelaix; Maxime Ruiz; Danièle Noël; Frédéric De Ceuninck; Philippe Pastoureau; Patricia Luz-Crawford; Christian Jorgensen; Farida Djouad
Journal:  Front Cell Dev Biol       Date:  2021-07-02
  1 in total

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