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1 staminergic neurons using immunostaining for histidine decarboxylase.
2 te dehydrogenase, asparagine synthetase, and histidine decarboxylase.
3 n melanoma tissues were brightly stained for histidine decarboxylase.
4 roximately 54 kDa corresponding to monomeric histidine decarboxylase.
5 an increase in mRNA for the synthetic enzyme histidine decarboxylase.
6 s produce varying amounts of histamine using histidine decarboxylase.
7 t mice for the histamine-synthesizing enzyme histidine decarboxylase.
8 rviving children inherited the dysfunctional histidine decarboxylase allele (W327X) from the father.
10 ormed from histidine by action of the enzyme histidine decarboxylase and can be toxic at high intakes
11 tions in markers of ECL cell function, e.g., histidine decarboxylase and chromogranin A messenger RNA
12 (+)-K(+)-ATPase inhibitor omeprazole, VMAT2, histidine decarboxylase and chromogranin A mRNA abundanc
14 iodontitis patients express higher levels of histidine decarboxylase and ECP than those from healthy
15 Here, we show that cholangiocytes express histidine decarboxylase and its inhibition reduces CCA g
16 chicken antibody was developed against human histidine decarboxylase and protein expression was confi
17 ein 43, glutamate acid decarboxylases 65/67, histidine decarboxylase, and a sleep-related transcript
18 te dehydrogenase, asparagine synthetase, and histidine decarboxylase; and (3) proteins with unknown f
23 ase the probability of an awakening event in histidine decarboxylase-deficient knock-out animals.
25 lhistidine (a-FMHis), a suicide inhibitor of histidine decarboxylase, displayed impaired IA memory wh
27 e similar to those of the pyruvoyl-dependent histidine decarboxylase enzyme, and its subunits form a
28 ss-related arousal states, is synthesized in histidine decarboxylase-expressing hypothalamic neurons
29 nic mouse line expressing cre recombinase in histidine decarboxylase-expressing neurons (Hdc-Cre) fol
31 nohistochemical studies showed much stronger histidine decarboxylase expression in melanoma cells.
38 e assessed whether 12-month-old mice lacking histidine decarboxylase (Hdc(-)/(-)), the enzyme require
43 of tumours on dietary histidine and also on histidine decarboxylase (Hdc) depends upon their growth
46 ction within one integrated device to detect histidine decarboxylase (HDC) gene directly from human w
47 od FCER1A, carboxypeptidase A3 (CPA3), and L-histidine decarboxylase (HDC) gene expression; and serum
48 A premature termination codon in the human histidine decarboxylase (Hdc) gene has been identified i
49 astrin stimulates transcription of the human histidine decarboxylase (HDC) gene through binding to th
53 xpression of histamine H1 receptor (HIR) and histidine decarboxylase (HDC) mRNA in the hypothalamus.
55 HA using an anti-HA antibody and a probe for histidine decarboxylase (HDC), a synthetic enzyme for HA
57 tochrome P450 family 1 subfamily A member 2, histidine decarboxylase (HDC), bactericidal/permeability
58 ; the released histamine, made by the enzyme histidine decarboxylase (HDC), enhances wakefulness.
59 cessing of the histamine-producing enzyme, L-histidine decarboxylase (HDC), leads to the formation of
60 ng factor (CRF), arginine-vasopressin (AVP), histidine decarboxylase (HDC), melanin-concentrating hor
61 rin receptor and regulates the activity of L-histidine decarboxylase (HDC), the enzyme that produces
64 ession has been targeted to cells expressing histidine decarboxylase (HDC), which catalyzes the rate-
65 n human skin, and the mast cell related gene histidine decarboxylase (HDC), which regulates the produ
68 ficient in the histamine-synthesizing enzyme histidine decarboxylase (HDC-KO) or acutely depleted of
69 etabolism, CCR3 (chemokine receptor 3), HDC (histidine decarboxylase, i.e. the histamine synthesis en
70 thyltransferase, tryptophan hydroxylase, and histidine decarboxylase immunoreactivity within neurons
72 athymic mice treated with saline, histamine, histidine decarboxylase inhibitor, or cromolyn sodium.
78 l histaminergic system, causing increases in histidine decarboxylase mRNA expression in neurons or gl
80 e genetic form of Tourette syndrome due to L-histidine-decarboxylase mutation, with similar features
83 eotide supression test coupled with assay of histidine decarboxylase or chromogranin A gene expressio
85 ermed CCK2, receptors on ECL cells activates histidine decarboxylase, releases histamine, and induces
86 s the parietal cell indirectly by activating histidine decarboxylase, releasing histamine, and induci
87 xal phosphate is the cofactor for the enzyme histidine decarboxylase required for histamine synthesis
88 In vitro, cultured MCs were transfected with histidine decarboxylase short hairpin RNA to decrease hi
90 nctional mutation in the HDC gene encoding L-histidine decarboxylase, the rate-limiting enzyme in his
91 phils and strongly upregulated mRNA encoding histidine decarboxylase, the rate-limiting enzyme in his
92 y function analogously to pyruvoyl-dependent histidine decarboxylase; the cells are proposed to impor
95 er B family member 2 knockout mice lacking l-histidine decarboxylase were injected with vehicle or PK
96 and mRNAs encoding gastrin, somatostatin and histidine decarboxylase were measured by Northern blot.