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1 ynthesis of cysteine and glutathione through transsulfuration.
2 mediated increase in serine biosynthesis and transsulfuration.
3 mitment of methionine cycle intermediates to transsulfuration.
4 ete AMC of H. pylori in a process of reverse transsulfuration.
5 ry position between the methionine cycle and transsulfuration.
6 ry position between the methionine cycle and transsulfuration.
8 .1.22] catalyzes the first committed step of transsulfuration and is the enzyme deficient in classica
9 ine other than serving as an intermediate in transsulfuration and to date, the possible contribution
10 in homocysteine remethylation or methionine transsulfuration and transmethylation between the groups
11 e the kinetics of methionine and its rate of transsulfuration and transmethylation in healthy women w
12 , associated with slower rates of methionine transsulfuration and transmethylation or homocysteine re
13 regulates the flux through remethylation and transsulfuration, and glycine N-methyltransferase regula
14 ethionine flux, its transmethylation and its transsulfuration, and homocysteine remethylation in chil
15 ering its flux through the transmethylation, transsulfuration, and transamination metabolic pathways.
16 betaine homocysteine methyl transferase and transsulfuration catalyzed by cystathionine beta-synthas
17 e kynurenine pathway, one-carbon metabolism, transsulfuration (cystathionine), and glycine decarboxyl
18 n humans is associated with a higher rate of transsulfuration early in gestation and a higher rate of
19 rt to a 38% increase in the abundance of the transsulfuration enzyme cystathionine beta-synthase; tre
20 euromodulator that can be synthesized by the transsulfuration enzymes cystathionine beta-synthase (CB
21 r than Cys-SSH is the primary product of the transsulfuration enzymes with CSE being the dominant pro
22 biogenesis of H(2)S involves the cytoplasmic transsulfuration enzymes, cystathionine beta-synthase an
24 ve plasma concentrations of transmethylation/transsulfuration metabolites and glutathione redox statu
27 etic or nutrient-related disturbances in the transsulfuration or remethylation pathways for homocyste
28 SAA) restriction increased expression of the transsulfuration pathway (TSP) enzyme cystathionine gamm
30 mocysteine (SAH) is product of methionine in transsulfuration pathway and a potent competitive inhibi
31 es of the methionine cycle regulate both the transsulfuration pathway and As methylation; c) GSH serv
32 catalyzes the first irreversible step in the transsulfuration pathway and commits the toxic metabolit
33 study establishes the presence of an intact transsulfuration pathway and demonstrates its contributi
34 r cysteine and glutathione synthesis via the transsulfuration pathway as a defense against oxidative
35 thionine is formed as an intermediate of the transsulfuration pathway by the condensation of serine a
40 the diversity of reactions catalyzed by the transsulfuration pathway enzymes, cystathionine beta-syn
41 of H(2)S in mammals and is catalyzed by the transsulfuration pathway enzymes, cystathionine beta-syn
42 capacity for Cys-SSH production by the human transsulfuration pathway enzymes, cystathionine beta-syn
43 he increase in homocysteine flux through the transsulfuration pathway exhibited a linear dose depende
45 ontrol design, we measured biomarkers of the transsulfuration pathway in a population-based sample of
46 the importance of the homocysteine-dependent transsulfuration pathway in the maintenance of the intra
47 cultured human astrocytes, flux through the transsulfuration pathway increased under oxidative stres
48 thionase, has led to the suggestion that the transsulfuration pathway is incomplete in the brain.
50 and/or pathway inhibitors indicates that the transsulfuration pathway plays a significant role in pro
52 l 5'-phosphate (PLP)-dependent enzyme of the transsulfuration pathway that condenses serine with homo
53 disease patients suggest impairments in the transsulfuration pathway that connects these metabolites
54 LP)-dependent enzyme, which functions in the transsulfuration pathway that converts homocysteine to c
55 CBS) catalyzes the first of two steps in the transsulfuration pathway that converts homocysteine to c
56 gical confounders the combined assessment of transsulfuration pathway thiols shows that glutamylcyste
57 e investigated combined associations between transsulfuration pathway thiols, including homocysteine,
59 omarkers of oxidative stress involved in the transsulfuration pathway were significantly higher in wo
60 H was proposed as the primary product of the transsulfuration pathway with H2S representing a decompo
62 several ways: a) GSH is synthesized via the transsulfuration pathway, and Cys is the rate-limiting s
63 stathionine beta-synthase, a key gene in the transsulfuration pathway, and various glutathione produc
66 tween the integrated stress response and the transsulfuration pathway, we used homocysteine (Hcy) as
67 ne beta-synthase are critical enzymes in the transsulfuration pathway, which also regulate cellular r
68 that HMTBA is preferentially diverted to the transsulfuration pathway, which gives antioxidant metabo
69 is the first and rate-limiting enzyme in the transsulfuration pathway, which is critical for the synt
74 lites in the methionine transmethylation and transsulfuration pathways in children diagnosed with aut
75 nsamination, and not the transmethylation or transsulfuration pathways, contributed to methionine-ind
82 (or betaine in an alternative reaction); and transsulfuration to cystathionine, which requires pyrido
85 accumulation of Hcy, which is channeled via transsulfuration to increase glutathione and enhance ars
86 re in which the flux of homocysteine through transsulfuration under normoxic and oxidative conditions
87 for independent modulation of the canonical transsulfuration versus H(2)S-generating reactions catal
88 smethylation via methionine synthase (MS) or transsulfuration via cystathionine beta-synthase (CBS).
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