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排序方式: 共有279条查询结果,搜索用时 15 毫秒
1.
2.
Molecular cloning and sequence analysis of cDNA for human hepatocyte growth factor 总被引:62,自引:0,他引:62
K Miyazawa H Tsubouchi D Naka K Takahashi M Okigaki N Arakaki H Nakayama S Hirono O Sakiyama K Takahashi 《Biochemical and biophysical research communications》1989,163(2):967-973
Amino acid sequences of four peptide fragments of human hepatocyte growth factor purified from the plasma of patients with fulminant hepatic failure were determined. Based on the amino acid sequence of one of the fragments, two oligodeoxyribonucleotide mixtures were synthesized and used to screen a human placenta cDNA library. On the screening, two overlapping cDNA clones for human hepatocyte growth factor were isolated and the nucleotide sequence of the cDNA was determined. The entire primary structure of the protein was deduced from the sequence. The protein consists of 728 amino acid residues, including a possible signal peptide at the N-terminus. The sequence revealed that the heavy and light chains which comprise the protein are encoded by the same mRNA and are produced from a common translation product by proteolytic processing. 相似文献
3.
Amino-acid sequence of ribonuclease T2 from Aspergillus oryzae 总被引:12,自引:0,他引:12
The amino acid sequence of ribonuclease T2 (RNase T2) from Aspergillus oryzae has been determined. This has been achieved by analyzing peptides obtained by digestions with Achromobacter lyticus protease I, Staphylococcus aureus V8 protease, and alpha-chymotrypsin of two large cyanogen bromide peptides derived from the reduced and S-carboxymethylated or S-aminoethylated protein. Digestion with A. lyticus protease I was successfully used to degrade the N-terminal half of the S-aminoethylated protein at cysteine residues. RNase T2 is a glycoprotein consisting of 239 amino acid residues with a relative molecular mass of 29,155. The sugar content is 7.9% (by mass). Three glycosylation sites were determined at Asns 15, 76 and 239. Apparently RNase T2 has a very low degree of sequence similarity with RNase T1, but a considerable similarity is observed around the amino acid residues involved in substrate recognition and binding in RNase T1. These similar residues may be important for the catalytic activity of RNase T2. 相似文献
4.
Inhibition of cathepsin L-induced degradation of epidermal growth factor receptors by c-Ha-ras gene products 总被引:1,自引:0,他引:1
T Hiwasa S Sakiyama S Yokoyama J M Ha J Fujita S Noguchi Y Bando E Kominami N Katunuma 《Biochemical and biophysical research communications》1988,151(1):78-85
The inhibitory activities of c-Ha-ras gene products (p21s) toward several cysteine proteinases have been investigated. The activity of cathepsin L was inhibited by p21s most effectively while those of cathepsin B and papain were slightly inhibited by p21s. p21s did not show any inhibitory activity toward cathepsin H. In order to connect the protease-inhibitor activity of p21s with cell growth, the degradation of epidermal growth factor receptors (EGF-receptors) was investigated. EGF-receptors were preferentially cleaved by cathepsin L but not by cathepsin B or H. The cleavage of EGF-receptors by cathepsin L was inhibited by p21s dose-dependently. These results raise the possibility that p21s can suppress the degradation of growth-related proteins such as EGF-receptors and thereby affect cell growth. 相似文献
5.
F Sakiyama 《Trends in biotechnology》1990,8(10):282-288
Analysis of protein sequence is an important tool in studies of both native and recombinant proteins. Novel techniques and instrumentation which facilitate determination of protein primary structure have recently been developed. 相似文献
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Summary A novel cultivation method using a microporous membrane (membrane-surface liquid culture) was developed, in which moulds are grown on the membrane surface with its opposite side being in contact with a liquid medium. The amount of neutral protease from Aspergillus oryzae produced was more than 10 times higher than that produced by the conventional liquid culture. 相似文献
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9.
The Nucleotide Sequence of Human Acylamino Acid-Releasing Enzyme 总被引:3,自引:0,他引:3
Mitta Masanori; Ohnogi Hiroshi; Mizutani Shigetoshi; Sakiyama Fumio; Kato Ikunoshin; Tsunasawa Susumu 《DNA research》1996,3(1):31-35
The nucleotide sequence of a cDNA coding for the human acylaminoacid-releasing enzyme (AARE, also known as acylpeptide hydrolase)[EC 3.4.19.1] subunit has been determined. The amino acid sequenceof human AARE subunit deduced from its cDNA nucleotide sequenceshowed a high degree of identity (91.5%) with both the correspondingproteins from the pig and the rat. The AARE cDNA shows 99.2%identity with a 3.3 kb cDNA transcribed from a locus (DNF15S2)on the short arm of human chromosome 3, whose deletion is associatedwith small cell lung cancer, taking into consideration thatthe sequence of the 3.3-kb cDNA previously reported was causedby misreading. 相似文献
10.
The previously reported method for the preparation of Kyn 59-RNase T1 and NFK 59-RNase T1 has been improved, and these two proteins have been obtained in high purity. Kyn 59-RNase T1, fully active for the hydrolysis of GpA and GpC, emitted a 35-fold-enhanced fluorescence of kynurenine relative to acetylnurenine amide with an emission maximum at 455 nm upon excitation at 380 nm. The polarity of the environment of Kyn 59 estimated from the emission maximum corresponded to a dielectric constant of 6. Upon excitation at 325 nm, NFK 59-RNase T1, less active than Kyn 59-RNase T1, exhibited a quenched N'-formylkynurenine fluorescence with an emission maximum at 423 nm, from which the value of 12 was obtained as the dielectric constant of the surroundings of residue 59. In both modified proteins, distinct tyrosine fluorescence appeared on excitation at 280 nm. The detection of an energy transfer from tyrosine to residue 59 suggests that the tertiary structure is very similar in Kyn 59-RNase T1 and native RNase T1. With guanidine hydrochloride, Kyn 59-RNase T1 was less stable than the native protein. Carboxymethylation at Glu 58 was shown to stabilize the active site of the modified enzyme. Based on the information collected for Kyn 59-RNase T1, the local environment and possible roles of the sole tryptophan residue in RNase T1 are discussed. 相似文献