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Authors:
Markvicheva, EA
Kuptsova, SV
Mareeva, TY
Vikhrov, AA
Dugina, TN
Strukova, SM
Belokon, YN
Kochetkov, KA
Baranova, EN
Zubov, VP
Poncelet, D
Parmar, VS
Kumar, R
Rumsh, LD
Citation: Ea. Markvicheva et al., Immobilized enzymes and cells in poly(N-vinyl caprolactam)-based hydrogels- Preparation, properties, and applications in biotechnology and medicine, APPL BIOC B, 88(1-3), 2000, pp. 145-157
Authors:
Shibanova, ED
Mikhailova, AG
Aleksandrov, SL
Rumsh, LD
Citation: Ed. Shibanova et al., Specific features of enteropeptidase hydrolysis of chimeric proteins at the specific linker (Asp)(4)Lys depending on the refolding conditions, BIOORG KHIM, 26(7), 2000, pp. 522-529
Authors:
Kashparov, IV
Popov, ME
Rumsh, LD
Popov, EM
Citation: Iv. Kashparov et al., Mechanism of action of aspartic proteases. V. Conformational characteristics of fragments of substrate-binding sites in rhizopuspepsin and HIV-1 protease, BIOORG KHIM, 25(8), 1999, pp. 597-602
Authors:
Popov, ME
Kashparov, IV
Rumsh, LD
Popov, EM
Citation: Me. Popov et al., Mechanism of action of aspartic proteases. III. Conformational characteristics of JG-365, an inhibitor of the HIV-1 protease, BIOORG KHIM, 25(6), 1999, pp. 418-422
Authors:
Popov, ME
Kashparov, IV
Rumsh, LD
Popov, EM
Citation: Me. Popov et al., Mechanism of action of aspartyl proteases. VII. Noncovalent complexes of HIV-1 aspartic protease with substrate and substrate-like inhibitor, BIOORG KHIM, 25(12), 1999, pp. 911-922
Authors:
Kashparov, IV
Popov, ME
Rumsh, LD
Popov, EM
Citation: Iv. Kashparov et al., Mechanism of action of aspartyl proteases. VI. Noncovalent enzyme-inhibitor and enzyme-substrate complexes of rhizopuspepsin, an aspartyl protease, BIOORG KHIM, 25(10), 1999, pp. 747-762
Citation: Ag. Mikhailova et Ld. Rumsh, Autolysis of bovine enteropeptidase heavy chain: evidence of fragment 118-465 involvement in trypsinogen activation, FEBS LETTER, 442(2-3), 1999, pp. 226-230