Search PubMed⌕ Search

Biomedical subjects

F Yang

Publications and source records attributed to F Yang.

At least 343 records · Page 19Linked to original sources

Mapping the cleavage site in protein synthesis initiation factor eIF-4 gamma of the 2A proteases from human Coxsackievirus and rhinovirus.

The rate-limiting step of eukaryotic protein synthesis is the binding of mRNA to the 40 S ribosomal subunit, a step which is catalyzed by initiation factors of the eIF-4 (eukaryotic initiation factor 4) group: eIF-4A, eIF-4B, eIF-4E, and eIF-4 gamma. Infection of cells with picornaviruses of the rhino- and enterovirus groups causes a shut-off in translation of cellular mRNAs but permits viral RNA translation to proceed. This change in translational specificity is thought to be mediated by proteolytic cleavage of eIF-4 gamma, which is catalyzed, directly or indirectly, by the picornaviral 2A protease. In this report we have used highly purified recombinant 2A protease from either human Coxsackievirus serotype B4 or rhinovirus serotype 2 to cleave eIF-4 gamma in vitro in the eIF-4 complex purified from rabbit reticulocytes. Neither the rate of cleavage nor fragment sizes were affected by addition of eIF-3. The NH2- and COOH-terminal fragments of eIF-4 gamma were separated by reverse phase HPLC and identified with specific antibodies, and the NH2-terminal sequence of the COOH-terminal fragment was determined by automated Edman degradation. The cleavage site for both proteases is 479GRPALSSR decreases GPPRGGPG494 in rabbit eIF-4 gamma, corresponding to 478GRTTLSTR decreases GPPRGGPG493 in human eIF-4 gamma.

Amino Acid Sequence↗

Yang et al. reply.

Explore the source record for details and available documents.

Journal Article↗

IL-1 beta decreases expression of amyloid precursor protein gene in human glioma cells.

In Alzheimer's disease a small fragment of the amyloid protein precursor (APP), called beta 4, is a characteristic component of senile plaques in brains of affected patients. Efforts to intervene in Alzheimer's disease include approaches by which APP levels can be decreased in brain. The study described here demonstrates the expression of APP gene in four cell lines that originated from human brain glioblastomas. In one line, HTB 17, APP mRNA level was approximately 25% the APP mRNA found in human brain and 150% that found in human liver. To ascertain whether or not APP expression in HTB 17 cells could be modulated by a cytokine associated with the inflammatory response, cells were cultured in the presence of IL-1 beta. A significant decrease in APP mRNA accompanied treatment of glioma cells with IL-1 beta.

Amyloid beta-Protein Precursor↗

Complete structure of the human Gc gene: differences and similarities between members of the albumin gene family.

The sequence of the human Gc gene, including 4228 base pairs of the 5'-flanking region and 8514 base pairs of the 3' flanking region (55,136 in total), was determined from five overlapping lambda phage clones. The sequence spans 42,394 base pairs from the cap site to the polyadenylation site, and it reveals that the gene is composed of 13 exons, which are symmetrically placed within the three domains of the Gc protein. The first exon is partially untranslated, as is exon 12, which contains the termination codon TAG. Exon 13 is entirely untranslated, but contains the polyadenylation signal AATAAA. Ten central introns split the coding sequence between codon positions 2 and 3 and between codon positions 3 and 1 in an alternating pattern, exactly as has been observed in the structure of the albumin and alpha-fetoprotein genes. The Gc gene has several distinctive features which set it apart from the other members of the family. First, the gene is smaller by two exons, which results in a protein some 130 amino acids shorter than albumin or AFP. This decrease in size may result from the loss of two internal exons during the evolutionary history of the Gc gene. Second, exons 6, 8, 9, and 11 are smaller than their counterparts in albumin or AFP by a total of 8 codons (1, 4, 1, and 2, respectively). Although the mRNA and protein expressed from the Gc gene are significantly smaller, the gene itself is about 2.5 times larger than the other genes of the family.(ABSTRACT TRUNCATED AT 250 WORDS)

Albumins↗

Characterization of the mouse haptoglobin gene.

Plasmids containing mouse cDNA encoding haptoglobin, a major plasma protein that binds free hemoglobin, have been isolated and characterized. The amino acid sequence predicted by the mouse haptoglobin cDNA was 80% identical to human haptoglobin and 90% identical to rat haptoglobin sequence. The mouse haptoglobin probe was used to demonstrate a single haptoglobin gene in the genome of C57BL6 mice mapped to chromosome 8. Sequence analysis of the mouse Hp gene promoter revealed two unique features: the presence of a second TATA box with a 48-bp trinucleotide repeat immediately upstream. The enhancer element and the sequences shown to be required for cytokine and hormonal regulation of the rat Hp gene are highly conserved in mouse. Interestingly, the single nucleotide variation G to A, which completely inactivates the IL-6 responsive element A in the rat Hp gene, is identical in mouse. This suggests that the presence of an inactive IL-6-responsive element A in Hp genes is common in rodents.

Amino Acid Sequence↗

A new method of RNA preparation for detection of hepatitis A virus in environmental samples by the polymerase chain reaction.

A new method based on RNA preparation from shellfish by polyethylene glycol (PEG) precipitation and trichloroacetic acid (TCA) extraction was developed for the detection of hepatitis A virus (HAV) by the polymerase chain reaction (PCR). The extraction provides high yield and the extracted RNA is undegraded. This method proved to be particularly useful for detection of RNA viruses from environmental samples by PCR.

Animals↗

[Effect of lithium applied iontophoretically on electrical activities of pain-related neurons in caudate-putamen nucleus of rat].

Multi-barrelled micro-electrode has been used to observe further the effect of Li+ applied iontophoretically on electrical activities of pain related neurons (PRN) of the rat caudate-putamen nucleus (CPN) and its mechanism of action was studied at the cellular level. It was found that PRN were homogeneously distributed throughout the head of CPN, but pain-excitation neurons (PEN) and pain-inhibition neurons (PIN) were heterogeneously distributed. The PIN were mainly distributed in the anterior part, while the PEN primarily in the central part of the head of CPN. The results may provide a clue to understand the complicacy in the pain regulation mechanism undergoing in the head of CPN. Li+ iontophoresis could inhibit the discharges of PEN, while the discharges of PIN were activated. The interference modes of pain discharge of PEN and PIN induced by Li+ iontophoresis were positively related to that induced by morphine. It was suggested that there existed some similarity in the mechanisms of analgesia induced by Li+ and morphine. This, in turn, appears to support the suggestion that endogenous opioid peptides and opioid receptors may be involved in the analgesic effect of Li+.

Analgesics↗

Further study on the magnesium-mediated change in physical state of phospholipid modulates mitochondrial F0-F1-ATPase activity.

We have postulated that magnesium may play a role in altering the lipid fluidity of the bilayers, which would induce a change of conformation of the F0-ATPase portion (buried in the lipid core) of mitochondrial F0-F1-ATPase. Such change could be transmitted to the soluble F1 portion, resulting in higher enzymatic activity. The assumption was further supported by the results presented in the following: (1) A conformational difference for the F0-ATPase-containing proteoliposomes induced by the magnesium effect could be detected using a fluorescent probe acrylodan; (2) H(+)-translocation activity of F0-ATPase-incorporated proteoliposomes with magnesium, monitoring by fluorescence quenching of 9-aminoacridine or the bulk phase pH change, was higher than that without magnesium; (3) The magnesium effect on the reconstituted F0-F1-ATPase activity was greatly enhanced when the reconstitution was carried out in the presence of oligomycin sensitivity conferring protein (OSCP, a main component of the connecting link between the F1 and F0 sector of F0-F1-ATPase).

2-Naphthylamine↗

The expression of transferrin mRNA in the salivary glands and other tissues of baboons.

In order to determine whether all the extrinsic salivary glands synthesize transferrin mRNA, the polyadenylated ribonucleic acids [poly(A)+ RNAs] from parotid, submandibular, and sublingual glands, liver, midbrain, testis, spleen, heart, kidney, and the mucosae of oesophagus and stomach from adult male baboons were analysed, using oligo(dT)-cellulose chromatography, agarose gel electrophoresis, followed by transfer of the mRNAs to nitrocellulose filters and identification with transferrin and tubulin cDNA probes. Transferrin and tubulin mRNAs were visualized by autoradiography and analysed by measuring specific activity from beta emitting nuclides following transfer to nitrocellulose filters and hybridizing with [alpha-32P]-labelled human transferrin and tubulin cDNA probes. The results indicate that transferrin mRNA is present in all the extrinsic salivary glands (submandibular, sublingual, parotid) of baboons.

Animals↗

Rapid purification yielding highly active 17 beta-hydroxysteroid dehydrogenase: application of hydrophobic interaction and affinity fast protein liquid chromatography.

Homogeneous human placental 17 beta-hydroxysteroid dehydrogenase was obtained by a procedure consisting of two fast protein liquid chromatographic (FPLC) steps using Phenyl-Sepharose hydrophobic interaction and Blue-Sepharose affinity columns. In the first chromatography, the enzyme eluted only when an additional decrease in ionic strength was inserted after the ammonium sulphate concentration had reached zero, thus enhancing the separation. In the affinity chromatography, separation of contaminating proteins occurred at different stages of loading and washing. The specific elution of the enzyme by the co-factor NADP+ is very efficient in obtaining a homogeneous preparation in high yield. The rapidity of FPLC was further increased by a maximum simplification of the intermediate steps, and the whole procedure lasted only two days. This preparation has a yield of more than 50% and a high specific activity, catalysing the formation of 7.9 mumol of estrone from estradiol per minute at pH 9.2 and 23 degrees C. It has an apparent molecular mass of 35,000. This provides an efficient candidate for the purification of other membrane-associated proteins.

17-Hydroxysteroid Dehydrogenases↗

Expression of a human chimeric transferrin gene in senescent transgenic mice reflects the decrease of transferrin levels in aging humans.

Transgenic mice provide a means to study human gene expression in vivo throughout the aging process. A DNA sequence containing 668 bp of the 5' regulatory region of the human transferrin gene was fused to the bacterial reporter gene chloramphenicol acetyl transferase (TF-CAT) and introduced into the mouse genome. Expression of the human chimeric transferrin gene was similar to the tissue patterns of mouse and human transferrin. In aging transgenic mice, expression of the human chimeric transferrin gene was found to diminish 40% in livers between 18 and 26 months of age. Transferrin levels and serum iron levels in aging humans also diminish, as observed from measurements of total iron binding capacity and percent iron saturation in sera from 701 individuals ranging from 0 to 99 years of age. In contrast, in transgenic mice and nontransgenic mice, the mouse endogenous plasma transferrin and endogenous Tf mRNA increase significantly during aging. Neither the decrease of human TF-CAT nor the increase of mouse transferrin during aging appears to be part of a typical inflammatory reaction. Although the 5' regions of the human transferrin and mouse transferrin genes are homologous, sequence diversities exist which could account for the different responses to inflammation and aging observed.

Adolescent↗

Production of human serum transferrin in Escherichia coli.

Transferrin (Tf) crystals diffract to only medium resolution. The mediocre quality of the crystals may be due to two factors: (1) the genetic variations naturally present in the primary sequence of Tf, and (2) the glycosylation of the protein. To control genetic variations and glycosylation of samples of Tf, it would be desirable to express the Tf gene from a recombinant clone. Additionally, expression of Tf from a clone would allow for manipulation of the structure of Tf. The cDNA encoding Tf has been cloned into the pL-based expression vector, pRE1, and the T7-based expression vectors, pRSETA and pET11A. The Tf expression plasmids, pTF-SSn and pTF-ESn, based on the T7 expression vectors, efficiently produce a 76-kDa protein that is approximately the same size as deglycosylated Tf, cross reacts with anti-Tf antibodies, and matches the deduced N-terminal amino acid sequence. Expression of Tf in Escherichia coli will allow the production of genetically pure, unglycosylated protein.

Amino Acid Sequence↗

Subunit identity of the dimeric 17 beta-hydroxysteroid dehydrogenase from human placenta.

Human placental 17 beta-hydroxysteroid dehydrogenase has been purified with a new rapid procedure based on fast protein liquid chromatography, yielding quantitatively a homogeneous preparation with high specific activity catalyzing the oxidation of 7.2 mumol of estradiol/min/mg of enzyme protein at 23 degrees C, pH 9.2. This preparation was shown to have a subunit mass of 34.5 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis while having a molecular mass of 68 kDa by both Superose-12 gel-filtration and native pore gradient gel electrophoresis. When 17 beta-hydroxysteroid dehydrogenase was expressed in HeLa cells or overproduced in insect cells using the baculovirus expression system, both from its cDNA encoding a protein of 34 kDa, the enzyme had the same migration in native and sodium dodecyl sulfate-gel electrophoresis as the purified one from human placenta and eluted from the Superose-12 column at the same elution volume. Moreover, all the above forms of this enzyme have similar specific activity. These results clearly demonstrate the identity of the three enzyme forms. The enzyme produced from the cDNA is expressed as a dimer, and its two subunits are identical. 17 beta-Hydroxysteroid dehydrogenase subunit identity is thus proved. The NH2-terminal analysis revealed a unique sequence of Ala-Arg-Thr-Val-Val-Leu-Ile for the purified enzyme from placenta, further confirming the above conclusion.

17-Hydroxysteroid Dehydrogenases↗

Human alpha 2-HS-glycoprotein/bovine fetuin homologue in mice: identification and developmental regulation of the gene.

Human alpha 2-HS-glycoprotein (AHSG) is a plasma protein synthesized in liver and selectively concentrated in bone matrix. It has been reported to be involved in bone formation and resorption as well as immune responses. Recently, AHSG was found to be the species equivalent protein of fetuin, the major fetal serum protein in cattle and sheep. The function and regulation of AHSG/fetuin in different species are not understood. We have isolated a liver cDNA clone that encodes the human AHSG/bovine fetuin homologue in the mouse. The AHSG/fetuin gene may have a role in differentiation since it is expressed in mouse limb buds and brain only at certain stages during development. Mouse liver AHSG/fetuin mRNA was present at low level at 12 days gestation but its level increased during the late part of gestation and peaked between 1 to 3 months after birth. The regulation of mouse AHSG/fetuin synthesis during development was found to be significantly different from that of sheep and bovine fetuin. Compared to fetuin, which is reduced in adult to 1 to 2% of the fetal level, mouse AHSG synthesis subsides only 50% 4 months after birth.

Amino Acid Sequence↗