CHROMOSOME 8 GGH 8q12.3 GENE VIEW GGH · 8q12.3 8q11 8q13 rs11786893 — ~70,000 base pairs in the gene — ~14,000 uncommon variants · <1% of humans have them — ~1,000 common variants · >1% carry the alternate allele ALLELE STATE rs11786893 C / T · GGH · 8q12.3 HOMOZYGOUS WILD TYPE (DOMINANT) 5′ 3′ C 5′ 3′ C HETEROZYGOUS 5′ 3′ C 5′ 3′ T HOMOZYGOUS ALTERNATE (RECESSIVE) 5′ 3′ T 5′ 3′ T C Cytosine — reference allele T Thymine — variant allele genetics.jdge.cc

rs11786893

Gene: GGH — Gamma-Glutamyl Hydrolase Chr 8:63035706 8q12.3 Synonymous Variant
NCBI ↗ Research Rabbit ↗ GeneCards ↗ Open Targets ↗ gnomAD ↗ OMIM ↗ ClinVar ↗ Varsome ↗ LOVD ↗

Population Frequencies10

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Total C 0.987493T 0.012507CC 0.975213CT/TC 0.024561TT 0.000227pop=326,618
African C 0.99718T 0.00282CC 0.994353CT/TC 0.005647TT 0pop=39,664
African American C 0.99706T 0.00294CC 0.994118CT/TC 0.005882TT 0pop=38,084
Asian C 0.9997T 0.0003CC 0.999425CT/TC 0.000575TT 0pop=6,960
East Asian C 0.9997T 0.0003CC 0.999307CT/TC 0.000693TT 0pop=5,776
European C 0.985192T 0.014808CC 0.970664CT/TC 0.029057TT 0.000279pop=257,702
Latin American 1 C 0.995T 0.005CC 0.989906CT/TC 0.010094TT 0pop=2,774
Latin American 2 C 0.9965T 0.0035CC 0.992935CT/TC 0.007065TT 0pop=6,228
Other C 0.99078T 0.00922CC 0.981707CT/TC 0.018136TT 0.000156pop=12,792
South Asian C 0.998T 0.002CC 0.995984CT/TC 0.004016TT 0pop=498

Studies4

Unread Studies4
1
PID
The enzymes folylpolyglutamate synthase (FPGS) and gamma-glutamyl hydrolase (GGH) are essential for determining intracellular folate availability for one-carbon metabolism (OCM) pathways. FPGS adds glutamyl groups to the folate molecule, thereby converting folate into the preferred substrate for several enzymes in OCM pathways. GGH removes glutamyl groups, allowing folate metabolites to leave the cell. The purpose of this study was to evaluate whether single nucleotide polymorphisms (SNPs) in the FPGS and GGH genes influence measured plasma homocysteine levels. Study participants were a sub-cohort (n = 482) from the Singapore Chinese Health Study. SNPs were selected using HapMap tagSNPs and SNPs previously reported in the scientific literature. Multiple linear regression was used to evaluate the association between individual SNPs and plasma homocysteine levels. Two FPGS (rs10106, rs1098774) and 9 GGH (rs719235, rs1031552, rs1800909, rs3758149, rs3780126, rs3824333, rs4617146, rs11545076, rs11545078) SNPs were included in the final analysis. Neither of the FPGS SNPs, but three GGH SNPs were associated with plasma homocysteine levels: rs11545076 (p = 0.001), rs1800909 (p = 0.02), and rs3758149 (p = 0.006). Only one (rs11545076) remained statistically significant after adjusting for multiple comparisons. This study suggests that GGH SNPs, rs11545076, rs1800909, and rs3758149, may have functional relevance and result in alterations in plasma homocysteine levels. Since this is one of the first studies to assess FPGS and GGH genetic variants in relation to plasma homocysteine, further research is needed to confirm these findings and characterize the functional effects of these variants.
2
PID
Folate has widespread importance to health due to its role in one-carbon metabolism. Folate status and genetic variants in the folate uptake and metabolism pathways have been assessed in relation to numerous disease processes, especially colon cancer and cardiovascular disease. The enzymes folylpolyglutamate synthase (FPGS) and gamma-glutamyl hydrolase (GGH) are essential for maintaining intracellular folate homeostasis. FPGS adds glutamyl groups to the folate molecule, which is essential for cellular retention of folate. The polyglutamted form of folate metabolites is the preferred substrate for many one-carbon metabolism enzymes. GGH removes glutamyl groups, which allows folate to leave the cell. Objective: The purpose of this study was to evaluate whether single nucleotide polymorphisms (SNPs) in the FPGS and GGH genes influence plasma folate and homocysteine levels. Methods: Study participants were a sub-cohort (n = 484) from the Singapore Chinese Health Study. SNPs were selected using a literature review, HapMap, and SNPPer. Multiple linear regression was used to evaluate the association between the SNPs and plasma folate and homocysteine levels. Results: Two FPGS (rs10106, rs1098774) and 9 GGH (rs1031552, rs11545076, rs1800909, rs3758149, rs3780126, rs3824333, rs4617146, rs11545078, rs719235) SNPs were included in the final analysis. None of the FPGS or GGH SNPs were associated with plasma folate levels. Similarly, none of the FPGS SNPs were associated with plasma homocysteine, but three GGH SNPs were associated with plasma homocysteine levels: rs11545076 (p = 0.02), rs1800909 (p = 0.03), and rs3758149 (p = 0.04). In all three, the homozygous variant alleles were associated with lower plasma homocysteine values. Conclusions: It appears that genetic variation in GGH may be influential in determining circulating homocysteine levels, and thus, may influence intracellular folate homeostasis rather than circulating folate levels. Since this is one of the first studies to assess these genetic variants in relation to plasma folate and homocysteine, further research is needed to explore these variants and to better characterize the role of genetic variation in intracellular folate homeostasis.
3
PID
We found a significant inverse relationship between γ-glutamyl hydrolase (GGH) activity and the accumulation of long-chain methotrexate polyglutamates (MTXPG4–7) in non-hyperdiploid B-lineage acute lymphoblastic leukaemia (ALL) cells after uniform treatment with high-dose methotrexate (HDMTX) (1 g/m2 i.v.). To identify genetic polymorphisms that alter the function of human GGH, we sequenced the GGH exons of genomic DNA from children with ALL, who had a 7.8-fold range of GGH activity in their ALL cells at diagnosis. A single nucleotide polymorphism (452C>T, T127I) was found among patients with low GGH activity, but not found in patients with high GGH activity. Computational modelling indicated that the T127I substitution alters the molecular surface conformation at the catalytic cleft-tail on GGH, which is predicted to alter binding affinity with long chain but not short-chain methotrexate polyglutamates. Enzyme kinetic analysis of heterologously expressed GGH revealed a significantly higher Km (2.7-fold) and lower catalytic efficiency (Vmax/Km reduced 67%) of the T127I variant compared to wild-type GGH using long-chain MTXPG5 as substrate, but not a significant change with short-chain MTXPG2. The 452C>T single nucleotide polymorphism (SNP) was also associated with lower GGH activity in hyperdiploid B-lineage and T lineage ALL cells. Caucasians [10.0%; 95% confidence interval (CI) 6.7–13.3%; n = 155] were found to have a significantly higher frequency of the Ile127 allele than African-Americans (4.4%; 95% CI 1.2–7.5%; n = 80) (P = 0.033). These studies demonstrate a substrate specific functional SNP (452C>T) in the human GGH gene that is associated with lower catalytic activity and higher accumulation of long-chain MTX-PG in leukaemia cells of patients treated with HDMTX.
4
High-dose methotrexate (MTX) forms a cornerstone in the treatment of several pediatric malignancies including acute lymphoblastic leukemia (ALL) and osteosarcoma. Delayed MTX elimination necessitates increased leucovorin rescue which may potentially annihilate the desired antitumor effect. We investigated if genetic variations in genes coding for enzymes in the MTX processing pathway are associated with delayed MTX elimination.
Curated Studies0

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Unused Studies0

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