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1 ion by RBCs is catalyzed by mercaptopyruvate sulfurtransferase.
2 sequence homology to the rhodanese family of sulfurtransferases.
3 uinovose synthase, and beta-mercaptopyruvate sulfurtransferases.
4 oteins could be physiological substrates for sulfurtransferases.
5 ation in amino acid sequences present in the sulfurtransferases.
6 aliana, a Rhd domain-containing protein, the sulfurtransferase 18 (STR18), and a CD isoform referred
7 te for the enzyme 3-mercaptopyruvate/cyanide sulfurtransferase (3-MPST) that converts cyanide to the
9 the mitochondrial enzyme 3-mercaptopyruvate sulfurtransferase (3-MST) stimulated mitochondrial H(2)S
10 ine gamma lyase (CSE) and 3-mercaptopyruvate sulfurtransferase (3-MST), in comparison to adjacent lun
15 that the recombinant protein displayed tRNA sulfurtransferase activity equal to that of the native p
17 the active site differentially modulate the sulfurtransferase activity of human rhodanese to cyanide
18 Mutation of Cys-456 to alanine impairs this sulfurtransferase activity, and the C456A ThiI is incapa
22 project and which encode a putative sulfate sulfurtransferase, an antioxidant enzyme, and the L7/L12
24 of the sulfurtransferases (mercaptopyruvate sulfurtransferase and thiosulfate sulfurtransferase) rul
25 Mg-ATP, l-cysteine, and one of the NifS-like sulfurtransferases, and the addition of precursor Z to t
26 er noted the presence of a motif shared with sulfurtransferases, and we reported that the cysteine re
31 hia coli has eight genes predicted to encode sulfurtransferases having the active site consensus sequ
32 o the biological functions of the ubiquitous sulfurtransferase in Arabidopsis embryogenesis and seed
33 athionine gamma-lyase, or 3-mercaptopyruvate sulfurtransferase in Bacillus anthracis, Pseudomonas aer
34 e-S clusters, was recently shown to act as a sulfurtransferase in the biosynthesis of 4-thiouridine (
35 he crystal structures of wild-type PRF and a sulfurtransferase-inactivated C314S mutant with and with
36 revealed that purified beta-mercaptopyruvate sulfurtransferase is able to form thiosulfate from sulfi
38 TUM1), also designated as 3-mercaptopyruvate sulfurtransferase (MPST), has been implicated in a wide
40 The widely distributed 3-mercaptopyruvate sulfurtransferases (MSTs) are implicated in the generati
41 he 41 proteins in COG0607 (rhodanese-related sulfurtransferases) of the database Clusters of Ortholog
42 rhodanese domain is unlikely to be an active sulfurtransferase or phosphatase, despite containing a p
43 athionine beta-synthase and mercaptopyruvate sulfurtransferase) or indirectly (cysteine aminotransfer
46 Thus, ybbB is not required for the initial sulfurtransferase reaction but rather encodes a 2-seleno
49 coli and Salmonella enterica, ThiI acts as a sulfurtransferase, receiving the sulfur donated from the
50 [Copper-sensing operon repressor (CsoR)-like sulfurtransferase repressor] represses the expression of
52 topyruvate sulfurtransferase and thiosulfate sulfurtransferase) rule out their involvement in SQOR ac
54 y in the presence of a persulfide-containing sulfurtransferase such as IscS, cysteine sulfinate desul
56 A comparison of the ability of the three sulfurtransferases to provide the sulfur for MPT formati
59 tions, to identify mitochondrial thiosulfate sulfurtransferase (Tst; also known as rhodanese) as a ca
60 ercaptopyruvate (3-MP), and mercaptopyruvate sulfurtransferase (TvMST), which transfers the sulfur of