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1 ontain high levels of ricin, a highly toxic, ribosome-inactivating protein.
2 he plant cytotoxin saporin (SAP) is a potent ribosome-inactivating protein.
3 minimize the global health threat caused by ribosome-inactivating proteins.
4 is protein against the cytotoxic activity of ribosome-inactivating proteins.
5 t to adenine as a substrate or inhibitor for ribosome-inactivating proteins.
6 ntitative assessment of the activity of most ribosome-inactivating proteins.
7 y of medically important plant and bacterial ribosome-inactivating proteins.
8 more, the toxicity of one of these proteins, ribosome-inactivating protein 2 (RIP2), was assessed and
9 in (Stx), a category B biothreat agent, is a ribosome inactivating protein and toxic to human and ani
10 omal protein provides a receptor site for an ribosome-inactivating protein and allows depurination of
11 o domains: an NH2-terminal domain related to ribosome-inactivating proteins and a COOH-terminal domai
12 toxin is a heterodimer consisting of RTA, a ribosome-inactivating protein, and RTB, a lectin that fa
13 e-amino acid motif that is shared by toxins, ribosome-inactivating proteins, and interleukin-2, all o
15 protein, and ricin, previously described as ribosome-inactivating proteins, are shown to damage sing
16 itaceae family) produces at least two type I ribosome-inactivating proteins, bryodin 1 (BD1) and bryo
17 Pokeweed antiviral protein (PAP), a 29-kDa ribosome-inactivating protein, catalytically removes an
18 The potent toxins ricin, abrin, and other ribosome-inactivating proteins deadenylate a specific ba
19 BH coupled by a disulfide bond to saporin (a ribosome inactivating protein), has been shown to be sel
23 e toxic to glia, we hypothesized that SAP, a ribosome-inactivating protein, might target glia whose l
24 ed antiviral protein (PAP) is a single-chain ribosome inactivating protein (RIP) that binds to riboso
27 protein (PAP) from Phytolacca americana is a ribosome-inactivating protein (RIP) and an RNA N-glycosi
28 it of Shiga toxin (StxA1) is a member of the ribosome-inactivating protein (RIP) family, which includ
29 weed antiviral protein (PAP), a single chain ribosome-inactivating protein (RIP) isolated from pokewe
30 Here, we show that Spiroplasma encodes a ribosome-inactivating protein (RIP) related to Shiga-lik
32 y pokeweed plants is a single-chain (type I) ribosome-inactivating protein (RIP) that depurinates rib
35 cture of mistletoe lectin I (MLI), a type-II ribosome-inactivating protein (RIP), cocrystallized with
47 f ricin (RTA) are two members of a family of ribosome-inactivating proteins (RIPS) that are character
52 32,652), RIP1, with homology to single-chain ribosome inactivating proteins (rRNA N-glycosidases).
53 neurotoxic conjugates of SPR ligands and the ribosome inactivating protein saporin that specifically
56 f mouse monoclonal antibody to CD11b and the ribosome-inactivating protein saporin, resulted in reduc
57 he effects of recombinant FGF2 linked to the ribosome-inactivating protein saporin-6 (rFGF2-SAP) on v
59 milk did not affect the activity of another ribosome inactivating protein, Shiga toxin type 2 (Stx2)
63 tein (PAP) is a plant-derived, highly potent ribosome inactivating protein that causes inhibition of
66 D40 and consists of bryodin 1 (BD1), a plant ribosome-inactivating protein that is 20-30-fold less to
67 rgic neurons by conjugating saporin (SAP), a ribosome-inactivating protein, to a rat monoclonal antib
68 SPR) was used to monitor binding of ricin, a ribosome-inactivating protein, to the plasma membranes o
69 was constructed by conjugating saporin, the ribosome-inactivating protein toxin, to an antibody agai
70 delivery of targeted toxins based on type I ribosome inactivating protein toxins such as gelonin.
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