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T Kaidoh S Natsuume-Sakai M Takahashi 《Journal of immunology (Baltimore, Md. : 1950)》1981,126(2):463-467
A simple, 3-step method was described for purification of murine C4 binding protein (C4-bp), a recently recognized serum protein that functions as one of the regulatory proteins of the complement system. The method consists of 1) affinity chromatography using TNBS-BGG-conjugated Sepharose beads, 2) gel filtration on a Sepharose 6B column, and 3) heparin-Sepharose chromatography. By this method, milligram quantities of C4-bp can be easily purified by more than 500-fold from EDTA-serum of various mouse strains, and the whole purification process can be completed within 1 wk. The overall yield of C4-bp is about 15%. The C4-bp thus prepared is homogeneous as judged by SDS-polyacrylamide gel electrophoresis and immunelectrophoresis. The purified mouse C4-bp showed physicochemical properties very similar to those described for human C4-bp. Like human C4-bp, mouse C4-bp is composed of several apparently identical subunits of the m.w. of 80,000. However unlike the human counterpart, the subunits of mouse C4-bp are not linked by disulfide bonds but are connected by non-covalent forces that can be disrupted by SDS. The purified mouse C4-bp retained binding affinity for C4 and showed unaltered antigenicity. Immunization of rabbits with the purified mouse C4-bp resulted in the production of potent and monospecific antisera. 相似文献
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beta 2-Glycoprotein I (beta 2 GPI), a plasma protein that binds to anionic phospholipids, is composed of five repeating units called a short consensus repeat (SCR), which is found mostly in the regulatory proteins of the complement system. Recently the human beta 2 GPI gene has been assigned to chromosome 17, not to chromosome 1 where most of the genes of the SCR-containing proteins are clustered. In this report, we have isolated a full-length cDNA clone of mouse beta 2 GPI and determined the chromosomal localization of the gene. The amino acid sequence deduced from the nucleotide sequence of mouse beta 2 GPI revealed 76.1% identity with that of human beta 2 GPI. A genetic mapping by in situ hybridization and linkage analysis using 50 backcross mice has shown that the mouse beta 2 GPI gene (designated B2gp1) is located on the terminal portion of the D region of chromosome 11, closely linked to Gfap, and is 18 cM distal to Acrb, extending a conserved linkage group between mouse chromosome 11 and human chromosome 17. On the basis of these results, the evolutionary relationships among the SCR-containing proteins are discussed. 相似文献
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Undegraded polysomes were isolated successfully from aged peaepicotyls by grinding frozen tissue in at least 10 volumes ofbuffer A (0.2 M Tris-HCl, pH 8.5; 0.2 M sucrose; 60 mM KCl;30 mM MgCl2), taking care to prevent the tissue from thawingprior to homogenization. Supposedly pure polysomes, derivedfrom the membrane-bound polysome fraction, were apparently contaminatedwith membranes, and contained polysomes clumped together vianascent chains. Problems with contaminants and artefacts werepartially alleviated by the use of polyoxyethylene tridecylether as a detergent replacing Triton X-100; further alleviatedby the use of large volumes of detergent-containing buffer toresuspend the membrane-bound polysome; and almost completelyeliminated by brief treatment of resuspended polysomes withprotease K. Optimal conditions for isolating polysomes fromaged tissue are given.
1 Present address: Institute of Agricultural Environment Control,College of Agriculture, Ehime University, 3-5-7 Tarumi, Matsuyama790, Japan. (Received April 24, 1985; Accepted September 2, 1985) 相似文献
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Takeda Junko; Abe Shunnosuke; Morikawa Hiromichi; Senda Mitsugi 《Plant & cell physiology》1983,24(4):667-676
The electrophysiological properties of the membrane of Nicotianatabacum var. Sarnsun cultured cells were determined using amicroelectrode technique in standard medium containing 1 mMKC1, 1 mM NaCl and 1 mu CaCl2 at pH 7. Tobacco callus was derivedfrom the pith (Em=104.4%16.2 mV). The membrane potentialsof the callus cells did not show a symmetrical Gaussian distributionbut were scattered over a wide range. The percentage of highmembrane potential cells increased as the subculture was continueduntil about 11 months and then decreased. The response of themembrane potential to electric stimulus, ionic composition,metabolic inhibitors, sugars and amino acids was characteristicof high (Em={small tilde}160 220 mV; H-cells)and low (Em=80{small tilde}90 mV; L-cells) membranepotential cells. The membrane potential of H-cells was largelydepolarized by addition of CN, carbonium cyanide m-chlorophenylhydrazone,decyclohexylcarbodiimide, and triphenyltin chloride and transientlydepolarized by addition of glucose, galactose, mannose or sucrose,and D-alanine, L-alanine or Llysine, but the membrane potentialof L-cells was not. (Received December 3, 1982; Accepted March 16, 1983) 相似文献
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S Pattanakitsakul J H Zheng S Natsuume-Sakai M Takahashi M Nonaka 《The Journal of biological chemistry》1992,267(11):7814-7820
The serum level of the fourth component of complement (C4) in mice bearing the H-2k haplotype is only 1/10 to 1/20 of that of non-H-2k mice. We have analyzed C4 cDNA clones from B10.BR(H-2k) mouse liver and found aberrant C4 cDNA which contained a 200-base pair (bp) insertion between the exon 13 and exon 14 encoded sequences in addition to the normal C4 cDNA. The 5' 148 bp and the 3' 52 bp of this insert were derived from the B2 sequence, the short interspersed repeats of mouse genome, and the central part of intron 13, respectively. Sequence analysis of intron 13 of the C4k gene showed the presence of a complete copy of a B2 consensus sequence. The structure of aberrant C4 mRNA indicated that the possible 3' splice site in the B2 sequence and the cryptic 5' splice site in intron 13 were used. Both the insertion of the B2 sequence into intron 13 and the presence of aberrant mRNA in the liver were specific to H-2k-bearing mice, suggesting that the aberrant splicing due to the B2 insertion is the basis for low C4 expression in H-2k mice. 相似文献
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Abe S Chamnan C Miyamoto K Minamino Y Nouda M 《Marine biotechnology (New York, N.Y.)》2004,6(6):527-540