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Hypomethioninemia

MedGen UID:
336368
Concept ID:
C1848555
Finding
Synonym: Decreased serum methionine
 
HPO: HP:0003658

Definition

A decreased concentration of methionine in the blood. [from HPO]

Conditions with this feature

Methylmalonic aciduria and homocystinuria type cblD
MedGen UID:
341253
Concept ID:
C1848552
Disease or Syndrome
Disorders of intracellular cobalamin metabolism have a variable phenotype and age of onset that are influenced by the severity and location within the pathway of the defect. The prototype and best understood phenotype is cblC; it is also the most common of these disorders. The age of initial presentation of cblC spans a wide range: In utero with fetal presentation of nonimmune hydrops, cardiomyopathy, and intrauterine growth restriction. Newborns, who can have microcephaly, poor feeding, and encephalopathy. Infants, who can have poor feeding and slow growth, neurologic abnormality, and, rarely, hemolytic uremic syndrome (HUS). Toddlers, who can have poor growth, progressive microcephaly, cytopenias (including megaloblastic anemia), global developmental delay, encephalopathy, and neurologic signs such as hypotonia and seizures. Adolescents and adults, who can have neuropsychiatric symptoms, progressive cognitive decline, thromboembolic complications, and/or subacute combined degeneration of the spinal cord.
Cobalamin C disease
MedGen UID:
341256
Concept ID:
C1848561
Disease or Syndrome
Disorders of intracellular cobalamin metabolism have a variable phenotype and age of onset that are influenced by the severity and location within the pathway of the defect. The prototype and best understood phenotype is cblC; it is also the most common of these disorders. The age of initial presentation of cblC spans a wide range: In utero with fetal presentation of nonimmune hydrops, cardiomyopathy, and intrauterine growth restriction. Newborns, who can have microcephaly, poor feeding, and encephalopathy. Infants, who can have poor feeding and slow growth, neurologic abnormality, and, rarely, hemolytic uremic syndrome (HUS). Toddlers, who can have poor growth, progressive microcephaly, cytopenias (including megaloblastic anemia), global developmental delay, encephalopathy, and neurologic signs such as hypotonia and seizures. Adolescents and adults, who can have neuropsychiatric symptoms, progressive cognitive decline, thromboembolic complications, and/or subacute combined degeneration of the spinal cord.
Methylcobalamin deficiency type cblG
MedGen UID:
344426
Concept ID:
C1855128
Disease or Syndrome
Disorders of intracellular cobalamin metabolism have a variable phenotype and age of onset that are influenced by the severity and location within the pathway of the defect. The prototype and best understood phenotype is cblC; it is also the most common of these disorders. The age of initial presentation of cblC spans a wide range: In utero with fetal presentation of nonimmune hydrops, cardiomyopathy, and intrauterine growth restriction. Newborns, who can have microcephaly, poor feeding, and encephalopathy. Infants, who can have poor feeding and slow growth, neurologic abnormality, and, rarely, hemolytic uremic syndrome (HUS). Toddlers, who can have poor growth, progressive microcephaly, cytopenias (including megaloblastic anemia), global developmental delay, encephalopathy, and neurologic signs such as hypotonia and seizures. Adolescents and adults, who can have neuropsychiatric symptoms, progressive cognitive decline, thromboembolic complications, and/or subacute combined degeneration of the spinal cord.
Methylcobalamin deficiency type cblE
MedGen UID:
344640
Concept ID:
C1856057
Disease or Syndrome
Disorders of intracellular cobalamin metabolism have a variable phenotype and age of onset that are influenced by the severity and location within the pathway of the defect. The prototype and best understood phenotype is cblC; it is also the most common of these disorders. The age of initial presentation of cblC spans a wide range: In utero with fetal presentation of nonimmune hydrops, cardiomyopathy, and intrauterine growth restriction. Newborns, who can have microcephaly, poor feeding, and encephalopathy. Infants, who can have poor feeding and slow growth, neurologic abnormality, and, rarely, hemolytic uremic syndrome (HUS). Toddlers, who can have poor growth, progressive microcephaly, cytopenias (including megaloblastic anemia), global developmental delay, encephalopathy, and neurologic signs such as hypotonia and seizures. Adolescents and adults, who can have neuropsychiatric symptoms, progressive cognitive decline, thromboembolic complications, and/or subacute combined degeneration of the spinal cord.
Methylmalonic acidemia with homocystinuria, type cblJ
MedGen UID:
766829
Concept ID:
C3553915
Disease or Syndrome
Combined methylmalonic aciduria (MMA) and homocystinuria is a genetically heterogeneous metabolic disorder of cobalamin (cbl; vitamin B12) metabolism, which is essential for hematologic and neurologic function. Biochemically, the defect causes decreased levels of the coenzymes adenosylcobalamin (AdoCbl) and methylcobalamin (MeCbl), which results in decreased activity of the respective enzymes methylmalonyl-CoA mutase (MUT; 609058) and methyltetrahydrofolate:homocysteine methyltransferase, also known as methionine synthase (MTR; 156570). The cblJ type is phenotypically and biochemically similar to the cblF type (MAHCF; 277380) (summary by Coelho et al., 2012).

Professional guidelines

PubMed

Barretta F, Uomo F, Fecarotta S, Albano L, Crisci D, Verde A, Fisco MG, Gallo G, Dottore Stagna D, Pricolo MR, Alagia M, Terrone G, Rossi A, Parenti G, Ruoppolo M, Mazzaccara C, Frisso G
Genes (Basel) 2023 Apr 26;14(5) doi: 10.3390/genes14050980. PMID: 37239340Free PMC Article
Kripps KA, Sremba L, Larson AA, Van Hove JLK, Nguyen H, Wright EL, Mirsky DM, Watkins D, Rosenblatt DS, Ketteridge D, Berry SA, McCandless SE, Baker PR 2nd
J Inherit Metab Dis 2022 Mar;45(2):157-168. Epub 2021 Oct 21 doi: 10.1002/jimd.12448. PMID: 34625984
Watkins D, Ru M, Hwang HY, Kim CD, Murray A, Philip NS, Kim W, Legakis H, Wai T, Hilton JF, Ge B, Doré C, Hosack A, Wilson A, Gravel RA, Shane B, Hudson TJ, Rosenblatt DS
Am J Hum Genet 2002 Jul;71(1):143-53. Epub 2002 May 30 doi: 10.1086/341354. PMID: 12068375Free PMC Article

Recent clinical studies

Etiology

Kripps KA, Sremba L, Larson AA, Van Hove JLK, Nguyen H, Wright EL, Mirsky DM, Watkins D, Rosenblatt DS, Ketteridge D, Berry SA, McCandless SE, Baker PR 2nd
J Inherit Metab Dis 2022 Mar;45(2):157-168. Epub 2021 Oct 21 doi: 10.1002/jimd.12448. PMID: 34625984
Philipponnet C, Desenclos J, Brailova M, Aniort J, Kemeny JL, Deville C, Fremeaux-Bacchi V, Souweine B, Heng AE
BMC Nephrol 2020 Mar 12;21(1):96. doi: 10.1186/s12882-020-01748-2. PMID: 32164588Free PMC Article
Manoli I, Myles JG, Sloan JL, Carrillo-Carrasco N, Morava E, Strauss KA, Morton H, Venditti CP
Genet Med 2016 Apr;18(4):396-404. Epub 2015 Aug 13 doi: 10.1038/gim.2015.107. PMID: 26270766Free PMC Article
Swanson DA, Liu ML, Baker PJ, Garrett L, Stitzel M, Wu J, Harris M, Banerjee R, Shane B, Brody LC
Mol Cell Biol 2001 Feb;21(4):1058-65. doi: 10.1128/MCB.21.4.1058-1065.2001. PMID: 11158293Free PMC Article
Goyette P, Christensen B, Rosenblatt DS, Rozen R
Am J Hum Genet 1996 Dec;59(6):1268-75. PMID: 8940272Free PMC Article

Diagnosis

Barretta F, Uomo F, Fecarotta S, Albano L, Crisci D, Verde A, Fisco MG, Gallo G, Dottore Stagna D, Pricolo MR, Alagia M, Terrone G, Rossi A, Parenti G, Ruoppolo M, Mazzaccara C, Frisso G
Genes (Basel) 2023 Apr 26;14(5) doi: 10.3390/genes14050980. PMID: 37239340Free PMC Article
Kripps KA, Sremba L, Larson AA, Van Hove JLK, Nguyen H, Wright EL, Mirsky DM, Watkins D, Rosenblatt DS, Ketteridge D, Berry SA, McCandless SE, Baker PR 2nd
J Inherit Metab Dis 2022 Mar;45(2):157-168. Epub 2021 Oct 21 doi: 10.1002/jimd.12448. PMID: 34625984
Philipponnet C, Desenclos J, Brailova M, Aniort J, Kemeny JL, Deville C, Fremeaux-Bacchi V, Souweine B, Heng AE
BMC Nephrol 2020 Mar 12;21(1):96. doi: 10.1186/s12882-020-01748-2. PMID: 32164588Free PMC Article
Watkins D, Rosenblatt DS
Am J Med Genet C Semin Med Genet 2011 Feb 15;157C(1):33-44. Epub 2011 Feb 10 doi: 10.1002/ajmg.c.30288. PMID: 21312325
Watkins D, Rosenblatt DS
Am J Med Genet 1989 Nov;34(3):427-34. doi: 10.1002/ajmg.1320340320. PMID: 2688421

Therapy

Manoli I, Myles JG, Sloan JL, Carrillo-Carrasco N, Morava E, Strauss KA, Morton H, Venditti CP
Genet Med 2016 Apr;18(4):396-404. Epub 2015 Aug 13 doi: 10.1038/gim.2015.107. PMID: 26270766Free PMC Article
Ruiz-Mercado M, Vargas MT, de Soto IP, Pecellín CD, Sánchez MC, Delgado MA, Ruiz RB, Pérez-Simón JA, Díaz-Aguado AH
Hematology 2016 Apr;21(3):193-7. Epub 2015 May 15 doi: 10.1179/1607845415Y.0000000017. PMID: 25978498
Swanson DA, Liu ML, Baker PJ, Garrett L, Stitzel M, Wu J, Harris M, Banerjee R, Shane B, Brody LC
Mol Cell Biol 2001 Feb;21(4):1058-65. doi: 10.1128/MCB.21.4.1058-1065.2001. PMID: 11158293Free PMC Article
Fattal-Valevski A, Bassan H, Korman SH, Lerman-Sagie T, Gutman A, Harel S
J Child Neurol 2000 Aug;15(8):539-43. doi: 10.1177/088307380001500808. PMID: 10961793
Watkins D, Rosenblatt DS
Am J Med Genet 1989 Nov;34(3):427-34. doi: 10.1002/ajmg.1320340320. PMID: 2688421

Prognosis

Manoli I, Myles JG, Sloan JL, Carrillo-Carrasco N, Morava E, Strauss KA, Morton H, Venditti CP
Genet Med 2016 Apr;18(4):396-404. Epub 2015 Aug 13 doi: 10.1038/gim.2015.107. PMID: 26270766Free PMC Article
Naushad SM, Reddy CA, Kumaraswami K, Divyya S, Kotamraju S, Gottumukkala SR, Digumarti RR, Kutala VK
Cell Biochem Biophys 2014 Mar;68(2):397-406. doi: 10.1007/s12013-013-9720-7. PMID: 23934182
Fattal-Valevski A, Bassan H, Korman SH, Lerman-Sagie T, Gutman A, Harel S
J Child Neurol 2000 Aug;15(8):539-43. doi: 10.1177/088307380001500808. PMID: 10961793
Leclerc D, Wilson A, Dumas R, Gafuik C, Song D, Watkins D, Heng HH, Rommens JM, Scherer SW, Rosenblatt DS, Gravel RA
Proc Natl Acad Sci U S A 1998 Mar 17;95(6):3059-64. doi: 10.1073/pnas.95.6.3059. PMID: 9501215Free PMC Article

Clinical prediction guides

Manoli I, Myles JG, Sloan JL, Carrillo-Carrasco N, Morava E, Strauss KA, Morton H, Venditti CP
Genet Med 2016 Apr;18(4):396-404. Epub 2015 Aug 13 doi: 10.1038/gim.2015.107. PMID: 26270766Free PMC Article
Lossos A, Teltsh O, Milman T, Meiner V, Rozen R, Leclerc D, Schwahn BC, Karp N, Rosenblatt DS, Watkins D, Shaag A, Korman SH, Heyman SN, Gal A, Newman JP, Steiner-Birmanns B, Abramsky O, Kohn Y
JAMA Neurol 2014 Jul 1;71(7):901-4. doi: 10.1001/jamaneurol.2014.116. PMID: 24797679
Naushad SM, Reddy CA, Kumaraswami K, Divyya S, Kotamraju S, Gottumukkala SR, Digumarti RR, Kutala VK
Cell Biochem Biophys 2014 Mar;68(2):397-406. doi: 10.1007/s12013-013-9720-7. PMID: 23934182
Matthews RG, Elmore CL
Clin Chem Lab Med 2007;45(12):1700-3. doi: 10.1515/CCLM.2007.324. PMID: 17937607Free PMC Article
Goyette P, Christensen B, Rosenblatt DS, Rozen R
Am J Hum Genet 1996 Dec;59(6):1268-75. PMID: 8940272Free PMC Article

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