Computational Studies of the Structural Basis of Human RPS19 Mutations Associated With Diamond-Blackfan Anemia

被引:3
|
作者
An, Ke [1 ]
Zhou, Jing-Bo [1 ]
Xiong, Yao [1 ]
Han, Wei [1 ]
Wang, Tao [2 ]
Ye, Zhi-Qiang [1 ,2 ]
Wu, Yun-Dong [1 ,2 ,3 ]
机构
[1] Peking Univ, Shenzhen Grad Sch, State Key Lab Chem Oncogenom, Shenzhen, Peoples R China
[2] Shenzhen Bay Lab, Shenzhen, Peoples R China
[3] Peking Univ, Coll Chem & Mol Engn, Beijing, Peoples R China
基金
中国国家自然科学基金;
关键词
Diamond-Blackfan Anemia; RPS19; missense mutation; structure stability; interaction; pathogenesis; ribosomopathy; RIBOSOMAL-PROTEIN S19; AMINO-ACID-RESIDUES; GENE; TOOL; VISUALIZATION; CONSERVATION; RECOGNITION; PREFERENCES; STABILITY; VARIANTS;
D O I
10.3389/fgene.2021.650897
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Diamond-Blackfan Anemia (DBA) is an inherited rare disease characterized with severe pure red cell aplasia, and it is caused by the defective ribosome biogenesis stemming from the impairment of ribosomal proteins. Among all DBA-associated ribosomal proteins, RPS19 affects most patients and carries most DBA mutations. Revealing how these mutations lead to the impairment of RPS19 is highly demanded for understanding the pathogenesis of DBA, but a systematic study is currently lacking. In this work, based on the complex structure of human ribosome, we comprehensively studied the structural basis of DBA mutations of RPS19 by using computational methods. Main structure elements and five conserved surface patches involved in RPS19-18S rRNA interaction were identified. We further revealed that DBA mutations would destabilize RPS19 through disrupting the hydrophobic core or breaking the helix, or perturb the RPS19-18S rRNA interaction through destroying hydrogen bonds, introducing steric hindrance effect, or altering surface electrostatic property at the interface. Moreover, we trained a machine-learning model to predict the pathogenicity of all possible RPS19 mutations. Our work has laid a foundation for revealing the pathogenesis of DBA from the structural perspective.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] Molecular basis of Diamond-Blackfan anemia: new findings from the Italian registry and a review of the literature
    Campagnoli, MF
    Garelli, E
    Quarello, P
    Carando, A
    Varotto, S
    Nobili, B
    Longoni, D
    Pecile, V
    Zecca, M
    Dufour, C
    Ramenghi, U
    Dianzani, I
    HAEMATOLOGICA, 2004, 89 (04) : 480 - 489
  • [42] Associated Congenital Abnormalities and Physical Phenotype in Patients with Diamond-Blackfan Anemia May Be Overlooked
    Soltanova, Gulare
    Oral, Nihan Avcu
    Gumruk, Fatma
    Kiper, Pelin Ozlem Simsek
    Unal, Sule
    TURKISH ARCHIVES OF PEDIATRICS, 2024, 59 (04): : 364 - 369
  • [43] Using induced human pluripotent stem cells to study Diamond-Blackfan anemia: an outlook on the clinical possibilities
    Mason, Philip J.
    Perdigones, Nieves
    Bessler, Monica
    EXPERT REVIEW OF HEMATOLOGY, 2013, 6 (06) : 627 - 629
  • [44] A new in-frame deletion in ribosomal protein S19 in a Chinese infant with Diamond-Blackfan anemia
    Zhang, Jing-Ying
    Jia, Ming
    Zhao, Hai-Zhao
    Luo, Ze-Bin
    Xu, Wei-qun
    Shen, He-ping
    Tang, Yong-Min
    BLOOD CELLS MOLECULES AND DISEASES, 2016, 62 : 1 - 5
  • [45] Critical Diamond-Blackfan anemia due to ribosomal protein S19 missense mutation
    Ozono, Shuichi
    Mitsuo, Miho
    Noguchi, Maiko
    Nakagawa, Shin-ichiro
    Ueda, Koichiro
    Inada, Hiroko
    Ohga, Shouichi
    Ito, Etsuro
    PEDIATRICS INTERNATIONAL, 2016, 58 (09) : 930 - 933
  • [46] Discrimination of Diamond-Blackfan anemia from parvovirus B19 infection by RBC glutathione
    Noguchi, Jun
    Kanno, Hitoshi
    Chiba, Yuta
    Ito, Etsuro
    Ishiguro, Akira
    PEDIATRICS INTERNATIONAL, 2017, 59 (07) : 838 - 840
  • [47] Recurring mutations in RPL15 are linked to hydrops fetalis and treatment independence in Diamond-Blackfan anemia
    Wlodarski, Marcin W.
    Da Costa, Lydie
    O'Donohue, Marie-Francoise
    Gastou, Marc
    Karboul, Narjesse
    Montel-Lehry, Nathalie
    Hainmann, Ina
    Danda, Dominika
    Szvetnik, Amina
    Pastor, Victor
    Paolini, Nahuel
    di Summa, Franca M.
    Tamary, Hannah
    Abu Quider, Abed
    Aspesi, Anna
    Houtkooper, Riekelt H.
    Leblanc, Thierry
    Niemeyer, Charlotte M.
    Gleizes, Pierre-Emmanuel
    MacInnes, Alyson W.
    HAEMATOLOGICA, 2018, 103 (06) : 949 - 958
  • [48] Unveiling the role of RPS17 and SLC4A1 in diamond-Blackfan Anemia: A zebrafish-based study
    Kim, Kyeongmin
    Lee, Hyerin
    Ahn, Soyul
    Kim, Yun Hak
    Oh, Chang-Kyu
    BLOOD CELLS MOLECULES AND DISEASES, 2025, 112
  • [49] Splice-site variant in the RPS7 5′-UTR leads to a decrease in the mRNA level and development of Diamond-Blackfan anemia
    Skorodumova, Liubov O.
    Davydenko, Ksenia A.
    Filatova, Alexandra Y.
    Skoblov, Mikhail Yu
    Kulemin, Nikolay A.
    Khadzhieva, Maryam B.
    Zakharova, Elena S.
    Gordeeva, Veronika D.
    Smetanina, Nataliya S.
    Fedyushkina, Irina, V
    Anastasevich, Lyudmila A.
    Larin, Sergey S.
    CLINICAL GENETICS, 2023, 103 (01) : 93 - 96
  • [50] Ribosomal protein S19 binds to its own mRNA with reduced affinity in Diamond-Blackfan anemia
    Schuster, Jens
    Frojmark, Anne-Sophie
    Nilsson, Per
    Badhai, Jitendra
    Virtanen, Anders
    Dahl, Niklas
    BLOOD CELLS MOLECULES AND DISEASES, 2010, 45 (01) : 23 - 28