A Novel Homozygous Missense Variant of PIGT Related to Multiple Congenital Anomalies-Hypotonia Seizures Syndrome 3 with Elevated of Serum ALP Level in a Thai Newborn Patient

被引:0
作者
Klangjorhor, Jeerawan [1 ,2 ,3 ]
Wiwattanadittakul, Natrujee [4 ]
Jaimalai, Thanapak [1 ]
Thongkumkoon, Patcharawadee [1 ]
Noisagul, Pitiporn [1 ]
Khiaomai, Ratchadaporn [1 ]
Sirikaew, Nutnicha [1 ]
Moonsan, Nonthanan [4 ]
Pasena, Arnat [1 ]
Suksakit, Pathacha [1 ]
Teeyakasem, Pimpisa [3 ]
Chaiyawat, Parunya [1 ,3 ]
Tengsujaritkul, Maliwan [4 ]
机构
[1] Chiang Mai Univ, Fac Med, Ctr Multidisciplinary Technol Adv Med CMUTEAM, Chiang Mai 50200, Thailand
[2] Chiang Mai Univ, Off Res Adm, Chiang Mai 50200, Thailand
[3] Chiang Mai Univ, Fac Med, Musculoskeletal Sci & Translat Res MSTR Ctr, Chiang Mai 50200, Thailand
[4] Chiang Mai Univ, Fac Med, Dept Pediat, Chiang Mai 50200, Thailand
关键词
neonatal hypotonia; multiple congenital anomalies-hypotonia seizures syndrome 3 (MCAHS3); PIGT; whole exome sequencing; GPI ANCHOR DEFICIENCY; MENTAL-RETARDATION; MUTATIONS; HYPERPHOSPHATASIA;
D O I
10.3390/ijms26062790
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Phosphatidylinositol glycan class T (PIGT) is part of the glycosylphosphatidylinositol transamidase (GPI-TA) complex, crucial for various cell functions. Biallelic pathogenic variants in PIGT are associated with Multiple Congenital Anomalies-Hypotonia Seizures Syndrome 3 (MCAHS3), a rare neonatal hypotonia syndrome characterized by dysmorphic features and seizures. Diagnosing neonatal hypotonia, which has diverse congenital and acquired causes, is challenging, particularly in syndromic monogenic cases. Next-generation sequencing is essential for accurate diagnosis. This study reports a term newborn with hypotonia, dysmorphic features, seizures, and severe skeletal issues, including a humeral fracture at birth, consistent with MCAHS3. Trio whole exome sequencing (WES) analysis revealed a novel homozygous missense variant in PIGT, expanding the clinical spectrum of MCAHS3 and marking the first such case in the Thai population. The identified c.257A>G (p.His86Arg) variant manifests a severe MCAHS3 phenotype, as evidenced by reduced CD59 expression in western blot analysis, indicating impaired GPI-AP synthesis. Computational predictions suggest this mutation causes protein instability, potentially affecting GPI anchor attachment. While alkaline phosphatase (ALP), a GPI-AP crucial for skeletal mineralization, was elevated in this case, suggesting a late-stage GPI synthesis defect. The His86Arg mutation in PIGT may disrupt GPI-TA function, hindering proper protein attachment and leading to cleaved protein secretion. Further functional studies are needed to elucidate the impact of this mutation on PIGT function and MCAHS3 phenotypes.
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共 29 条
  • [1] Andrews S., 2010, FastQC: a quality control tool for high throughput sequence data
  • [2] Deep-Phenotyping the Less Severe Spectrum of PIGT Deficiency and Linking the Gene to Myoclonic Atonic Seizures
    Bayat, Allan
    Pendziwiat, Manuela
    Obersztyn, Ewa
    Goldenberg, Paula
    Zacher, Pia
    Doering, Jan Henje
    Syrbe, Steffen
    Begtrup, Amber
    Borovikov, Artem
    Sharkov, Artem
    Karasinska, Aneta
    Gizewska, Maria
    Mitchell, Wendy
    Morava, Eva
    Moller, Rikke S.
    Rubboli, Guido
    [J]. FRONTIERS IN GENETICS, 2021, 12
  • [3] Lessons learned from 40 novel PIGA patients and a review of the literature
    Bayat, Allan
    Knaus, Alexej
    Pendziwiat, Manuela
    Afenjar, Alexandra
    Barakat, Tahsin Stefan
    Bosch, Friedrich
    Callewaert, Bert
    Calvas, Patrick
    Ceulemans, Berten
    Chassaing, Nicolas
    Depienne, Christel
    Endziniene, Milda
    Ferreira, Carlos R.
    Moura de Souza, Carolina Fischinger
    Freihuber, Cecile
    Ganesan, Shiva
    Gataullina, Svetlana
    Guerrini, Renzo
    Guerrot, Anne-Marie
    Hansen, Lars
    Jezela-Stanek, Aleksandra
    Karsenty, Caroline
    Kievit, Anneke
    Kooy, Frank R.
    Korff, Christian M.
    Hansen, Johanne Kragh
    Larsen, Martin
    Layet, Valerie
    Lesca, Gaetan
    McBride, Kim L.
    Meuwissen, Marije
    Mignot, Cyril
    Montomoli, Martino
    Moore, Hannah
    Naudion, Sophie
    Nava, Caroline
    Nougues, Marie-Christine
    Parrini, Elena
    Pastore, Matthew
    Schelhaas, Jurgen H.
    Skinner, Steven
    Szczaluba, Krzysztol
    Thomas, Ashley
    Thomassen, Mads
    Tranebjaerg, Lisbeth
    van Slegtenhorst, Marjon
    Wolfe, Lynne A.
    Lal, Dennis
    Gardella, Elena
    Ousager, Lilian Bomme
    [J]. EPILEPSIA, 2020, 61 (06) : 1142 - 1155
  • [4] Biovia D.S., 2021, Discovery Studio Visualizer v21. 1.0. 20298
  • [5] Glycosylphosphatidylinositol (GPI) anchor deficiency caused by mutations in PIGW is associated with West syndrome and hyperphosphatasia with mental retardation syndrome
    Chiyonobu, Tomohiro
    Inoue, Norimitsu
    Morimoto, Masafumi
    Kinoshita, Taroh
    Murakami, Yoshiko
    [J]. JOURNAL OF MEDICAL GENETICS, 2014, 51 (03) : 203 - 207
  • [6] Hypomorphic Mutations in PGAP2, Encoding a GPI-Anchor-Remodeling Protein, Cause Autosomal-Recessive Intellectual Disability
    Hansen, Lars
    Tawamie, Hasan
    Murakami, Yoshiko
    Mang, Yuan
    Rehman, Shoaib Ur
    Buchert, Rebecca
    Schaffer, Stefanie
    Muhammad, Safia
    Bak, Mads
    Noethen, Markus M.
    Bennett, Eric P.
    Maeda, Yusuke
    Aigner, Michael
    Reis, Andre
    Kinoshita, Taroh
    Tommerup, Niels
    Baig, Shahid Mahmood
    Abou Jamra, Rami
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2013, 92 (04) : 575 - 583
  • [7] Mutations in PGAP3 Impair GPI-Anchor Maturation, Causing a Subtype of Hyperphosphatasia with Mental Retardation
    Howard, Malcolm F.
    Murakami, Yoshiko
    Pagnamenta, Alistair T.
    Daumer-Haas, Cornelia
    Fischer, Bjoern
    Hecht, Jochen
    Keays, David A.
    Knight, Samantha J. L.
    Koelsch, Uwe
    Krueger, Ulrike
    Leiz, Steffen
    Maeda, Yusuke
    Mitchell, Daphne
    Mundlos, Stefan
    Phillips, John A., III
    Robinson, Peter N.
    Kini, Usha
    Taylor, Jenny C.
    Horn, Denise
    Kinoshita, Taroh
    Krawitz, Peter M.
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2014, 94 (02) : 278 - 287
  • [8] Hur YJ, 2021, ANN CLIN LAB SCI, V51, P422
  • [9] Defective glycosyl phosphatidylinositol anchor synthesis and paroxysmal nocturnal hemoglobinuria
    Kinoshita, T
    Inoue, N
    Takeda, J
    [J]. ADVANCES IN IMMUNOLOGY, VOL 60, 1995, 60 : 57 - 103
  • [10] Biosynthesis of GPI-anchored proteins: special emphasis on GPI lipid remodeling
    Kinoshita, Taroh
    Fujita, Morihisa
    [J]. JOURNAL OF LIPID RESEARCH, 2016, 57 (01) : 6 - 24