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Mapping of functional sites on the primary structure of the contractile tail sheath protein of bacteriophage T4 by mutation analysis.

In order to determine the functional roles of amino acid residues in gp18 (gp: gene product), the contractile tail sheath protein of bacteriophage T4, the mutation sites and amino acid replacements of available and newly created missense mutants with distinct phenotypes were determined. Amber mutants were also utilized for amino acid insertion by host amber suppressor cell strains. It was found that mutants that gave rise to a particular phenotype were mapped in a particular region along the polypeptide chain. Namely, all amino acid replacements in the cold-sensitive mutants (cs, which grows at 37 degrees C, but not at 25 degrees C) and the heat-sensitive mutant (hs, lose viability by incubation at 55 degrees C for 30 min) except for one hs mutant were mapped in a limited region in the C-terminal domain. On the other hand, all the temperature-sensitive mutants (ts, grow at 30 degrees C, but not at 42 degrees C) and carbowax mutants (CBW, can adsorb to the host bacterium in the presence of high concentrations of polyethylene glycol, where wild-type phage cannot) were mapped in the N-terminal protease-resistant domain, except for one ts mutant. The results suggested that the C-terminal region of gp18 is important for contraction and assembly, whereas the N-terminal protease-resistant domain constitutes the protruding part of the tail sheath.

Amino Acid Sequence↗

Direct interaction between the Lu/B-CAM adhesion glycoproteins and erythroid spectrin.

Lutheran (Lu) and Lu(v13), two glycoprotein (gp) isoforms belonging to the immunoglobulin superfamily, represent adhesion molecules that act as erythrocyte receptors for laminin 10/11. These two gps, which differ only by the length of their cytoplasmic tail, carry both Lu blood group and Basal Cell Adhesion Molecule (B-CAM) antigens. Here, analysis of the Triton extractability of recombinant Lu and Lu(v13) gps in K562 transfected cells showed that both gps were mainly associated with the detergent-insoluble material. Patching experiments using Cholera Toxin subunit B indicated that Lu gps were not localized in lipid rafts. Glutathione-S-transferase capture assays showed that the cytoplasmic domain of Lu and Lu(v13) bound to erythroid spectrin, present in a low ionic strength extract from red cell ghosts. Direct interaction with spectrin was confirmed by plasmon resonance assays. Site-directed mutagenesis mapped a major interaction site with spectrin to the RK573-574 motif, located on the cytoplasmic tail of Lu gp, in close vicinity to the inner leaflet of the membrane lipid bilayer. The two Lu adhesion gps represent the first example of a direct link between transmembrane proteins and spectrin in red blood cells. Since Lu gps are low abundant proteins, we speculate that their interaction with spectrin might be critical for signalling and receptor function rather than for participating in the linkage of the lipid bilayer to the red cell skeleton.

Blotting, Western↗

Overexpression of heat shock proteins in pallido-nigral axonal spheroids of nonhuman aged primates.

The occurrence of spheroids has been described in the globus pallidus (GP) and substantia nigra pars reticulata (SNr) of aged rhesus monkeys. Opinions vary as to the origin of spheroids. Ultrastructural and immunohistochemical analysis suggested that spheroids originate from degenerating axons or astroglia. In the present study, we have investigated the GP and SNr of aged monkeys (Macaca fascicularis and Macaca mulatta). Although immunoreactive for microtubule-associated protein (MAP) 1A, tau, amyloid precursor protein, synaptophysin and phosphorylated neurofilament, spheroids were not immunoreactive for MAP1B and MAP2. We confirmed the axonal nature of pallido-nigral spheroids in aged rhesus monkeys. Pallido-nigral spheroids have been reported to overexpress stress proteins, such as ubiquitin, alphaB-crystallin, and heat shock protein (Hsp) 27. We further evaluated the expression of Hsps in pallido-nigral spheroids. As well as being intensely immunoreactive for ubiquitin, alphaB-crystallin, Hsp27, and Hsp70, spheroids were immunoreactive for Hsp32 (heme oxygenase-1), Hsp40, Hsp60, and Hsp90. On the basis of these findings, we speculate that Hsp32-immunoreactive spheroids might be expressed as an oxidative stress response. Induction of other Hsps might play a role in protection of axons from the aggregation of neurofilament, MAPs and other proteins, and failure to protect degenerating axons might result in their proteolysis by the ubiquitin-proteasome system.

Age Factors↗

Characterization of the interaction of lassa fever virus with its cellular receptor alpha-dystroglycan.

The cellular receptor for the Old World arenaviruses Lassa fever virus (LFV) and lymphocytic choriomeningitis virus (LCMV) has recently been identified as alpha-dystroglycan (alpha-DG), a cell surface receptor that provides a molecular link between the extracellular matrix and the actin-based cytoskeleton. In the present study, we show that LFV binds to alpha-DG with high affinity in the low-nanomolar range. Recombinant vesicular stomatitis virus pseudotyped with LFV glycoprotein (GP) adopted the receptor binding characteristics of LFV and depended on alpha-DG for infection of cells. Mapping of the binding site of LFV on alpha-DG revealed that LFV binding required the same domains of alpha-DG that are involved in the binding of LCMV. Further, LFV was found to efficiently compete with laminin alpha1 and alpha2 chains for alpha-DG binding. Together with our previous studies on receptor binding of the prototypic immunosuppressive LCMV isolate LCMV clone 13, these findings indicate a high degree of conservation in the receptor binding characteristics between the highly human-pathogenic LFV and murine-immunosuppressive LCMV isolates.

Binding Sites↗

Structural and functional mapping of the thrombin domain involved in the binding to the platelet glycoprotein Ib.

The activation of human platelets by alpha-thrombin is mediated in part by cleavage of the protease-activated receptor (PAR) 1 and 4 and by the glycoprotein (Ib)alpha, (Gp(Ib)alpha), which binds with high affinity to alpha-thrombin. Recent studies have shown that the thrombin domain referred to as heparin binding site (HBS) is involved in the interaction with the platelet Gp(Ib)alpha. The HBS is rich in basic amino acids. To identify the key amino acid residues involved in the binding to Gp(Ib)alpha, we have performed alanine scanning mutagenesis of the basic HBS R93, R97, R101, R233, K236, K240, R233/K236/Q239, as well as of the neutral Q239 residues, located in different regions of the domain. For comparison, mutation at R67 within the fibrinogen recognition site (FRS) of thrombin was performed as well. Solid-phase binding experiments showed that the Kd of thrombin-GpIb interaction was reduced 22-fold for R93A, 8-fold for R97A, 13-fold for R101A, 29-fold for R233A, 21-fold for K236A, 5-fold for K240A, and 31-fold for the triple mutant R233A/K236A/Q239A, while the Q239A and R67A forms did not show any significant affinity change. The platelet activating capacity of these mutants was evaluated as well. Using gel-filtered platelets, the EC50 value of thrombin-induced aggregation was from 5- to 13-fold higher in the HBS mutants than in the WT form, and was linearly and positively correlated with the corresponding Kd values pertaining to thrombin binding to GpIb. Measurements of PAR-1 hydrolysis on the platelet membrane showed that the HBS mutants R233A, R101A, R93A, K236A, and R233/K236/Q239 forms had a reduction of the apparent kcat/Km value. These results are a consequence of a defective binding to GpIb, which is known to optimize the interaction with PAR-1 in situ. A confirm of this hypothesis came from the demonstration that the kcat/Km value pertaining to the hydrolysis by the HBS-mutated thrombins of the synthetic PAR-1 38-60 peptide in solution was similar to that one obtained with the WT form. In conclusion, these experiments provide a structural and functional mapping of the thrombin HBS subregions involved in the binding to the platelet Gp(Ib)alpha and in the cell activation.

Acetylation↗

Sequences of antigenic epitopes of streptokinase identified via random peptide libraries displayed on phage.

Though streptokinase (SK) is widely used to treat humans with thrombotic disease, it is antigenic and anti-SK antibody causes allergic reactions and neutralizes SK's therapeutic effects. To pinpoint the fine structure of two immunodominant, continuous epitopes in SK, we used unconstrained 15 and 6-mer random peptide libraries displayed on phage (theoretical complexity of 3.2 x 10(19) and 0.64 x 10(8) unique sequences). The first epitope, recognized by both human Ab and murine monoclonal (m)Abs, was previously localized to the amino terminus of SK. Repeated panning and selection experiments against a 15-mer peptide phage library, using a representative mAb (A2.5) to this epitope, identified a dominant structural motif (GP[R/L]WL) corresponding to amino acids 3 to 7 of native SK, which was consistent with previous epitope mapping. These findings were further confirmed by: (1) the fact that a synthetic peptide spanning the epitope of A2.5 (AGPEWLL) specifically inhibited the binding of A2.5 to SK and (2) the finding that mAb 9D10, which competes with mAb A2.5 for binding to SK, independently selected, from a different random hexamer library, an epitope sequence spanning residues 4 to 9 that overlaps the A2.5 epitope. Similar studies of the second epitope in SK, which is immunodominant for murine but not human antibodies, identified a consensus sequence KS(K/L)P(F/Y) corresponding to amino acids 59 to 63 of SK; this was confirmed by epitope peptide binding experiments. This epitope is cleaved and destroyed when SK reacts with human but not murine plasminogen. Thus, pinpointing the sequences of antigenic epitopes of SK: (1) provides a potential explanation for species differences in SK's antigenicity, (2) demonstrates the overlapping fine structure of epitopes recognized by competitive mAbs, (3) confirms previous epitope mapping studies and (4) has the potential to identify antigenic sequences that lead to allergic reactions in patients treated with SK.

Amino Acid Sequence↗

Deoxyglucose analysis of the specific topographic functional interrelations between substantia nigra and globus pallidus.

The response of the ipsilateral globus pallidus (GP) to unilateral electrical stimulation of the substantia nigra reticulata (SNr) was studied in the rat, by the autoradiographic [14C]-deoxyglucose method. Different compartments within the GP were metabolically activated, depending on the localization of the electrically stimulated subregions within the SNr. Computer generated, quantified colour coded glucograms were used for the analysis of specific topographic organization of the pallido-nigral functional system. Stimulation of the medial or lateral segments within the SNr induced activation in the medial or lateral compartments of the GP, respectively. Stimulation of the dorsal or ventral subregions within the SNr elicited activation in the ventral or dorsal compartments of the GP, respectively. Activation of the medial or lateral GP compartments was independent of stimulation in the dorsal or ventral SNr segments and vice versa. These results suggest that the topographic interrelations between the substantia nigra and the globus pallidus are characterized by preservation of the mediolateral and inversion of the dorsoventral functional correspondence. The neuronal territory involved into this topographic organization is suggested to consist of the subthalamic and striatal nerve cells projecting collateral axons to both the SNr and the GP.

Animals↗

The tail fibre of bacteriophage T4 is sensitive to proteases at elevated temperatures.

Bacteriophage T4 wild-type is not sensitive to heating at 60 degrees C. Trypsin at this temperature quickly inactivates the bacteriophage, with first-order kinetics for about the first 60 min. The half-inactivation period is around 15 min. The characteristics of this inactivation reaction have been studied. Inactivation of T4 particles is paralleled by a loss in ability to adsorb to bacteria. SDS-PAGE reveals a 'clipping' of gp 37, the protein of the distal part of the long tail fibres, during the inactivation reaction. gp 37 is the only protein to be modified under these conditions. Mutants have been isolated which resist this modification, they map in gene 37.

Electrophoresis, Polyacrylamide Gel↗

Detection of sentinel lymph nodes in cervical cancer. A comparison of two protocols.

BACKGROUND: The aim of this study was lymphatic mapping to identify SLN in cervical cancer (CaCerv) with radioactive colloids, intraoperative detection with patent blue dye (PBD) and gamma probe (GP) and biopsy and comparison of two protocols. MATERIAL AND METHODS: In 54 patients with CaCerv before hysterectomy and lymph nodes dissection (LND) we performed preoperative lymphoscintigraphy utilizing 99mTc-colloid (Nanocoll, SentiScint or Nanocis), activity 40 MBq, on the operation day (30 women) or the day before operation (24 women). Gynaecologists injected 4 peritumoural injections of colloid into the cervix around the tumour. Scintigraphy followed 25-50 minutes (one-day protocol) or 12-19 hours (two-day protocol) after injection. Gynaecologists also injected 4 peritumoural injections of PBD into the cervix around the tumour. All women underwent SLN biopsy and LND (in average 35 lymph nodes were taken) and hysterectomy. SLNs (active and/or blue lymph nodes) were examined by a pathologist [histopathology and immunohistochemistry (IH) with detection of cytokeratine]. No SLN was examined without IH. RESULTS: The gynaecologists withdrew 123 SLNs (on average 2.27/1 patient) and in total 1898 lymph nodes (on average 35/1 patient). In 1 woman the tumour was inoperable. Two-day protocol, which involved scintigraphy, PBD and GP detected SLNs on both sides (45 SLNs) in 17 women (70.8%), SLNs on the one side (6 SLNs) in 3 patients (12.5%) and no SLNs were found in 4 women (16.7%). One-day protocol detected SLNs on both sides in 23 patients (74.1%)--63 SLNs, in 7 women on one side (25.9%)--9 SLNs. Metastases in SLNs (with or without metastases in other LN) were found in 21 patients (38.9%)--in 1 woman of stage FIGO IB1, in 1 woman of stage FIGO IB2, in 1 patient of stage FIGO IIIA and in all 18 patients of stage FIGO IIIB. False negative SLN detection was 0%. CONCLUSIONS: In SLN detection in patients with CaCerv, all 3 methods--scintigraphy, PBD and GP--should be used, and the success rate of SLN detection increases, although scintigraphy has lower significance than in SLN detection in malignant melanoma and breast cancer. One-day protocol had a better detection rate of SLN than two-day protocol. The method is promising but its results are not as unequivocal and optimistic as in breast cancer and malignant melanoma, and it is still experimental. Additional experience is necessary.

Adult↗

Mapping of globus pallidus and ventral pallidum lesions that produce hyperkinetic treading.

The purpose of this study was to identify sites where striatopallidal lesions produce two distinct sensory-triggered hyperkinetic syndromes: (1) exaggerated forelimb treading alone to oral taste infusions and (2) sensorimotor exaggerated treading plus enhanced aversive reactions to taste infusions. The behavioral characteristics of these syndromes have been described previously (Berridge, K.C. and Cromwell, H.C., Behav. Neurosci., 104 (1990) 778-795). Bilateral excitotoxin lesions were made using quinolinic acid (10 micrograms in 1 microliter) in the caudate/putamen, nucleus accumbens, globus pallidus or ventral pallidum/substantia innominata. In order to identify the precise center, borders, severity and size of lesion sites that caused these hyperkinetic treading syndromes, neuron counts (modified fractionator technique) and glial fibrillary acidic protein immunoreactivity (GFAP-IR) densitometry were used in a stereological mapping analysis. The site of lesions that produced the hyperkinetic treading syndrome without enhanced aversion was found to be restricted to the globus pallidus (GP). Damage exceeding 60% neuron loss bilaterally within a 0.8 x 1.0 x 1.0 mm subregion of the ventromedial GP produced this syndrome. The site of lesions that produced the combined syndrome of hyperkinetic treading and aversive enhancement was ventral to the globus pallidus, within the ventral pallidum/substantia innominata (VP/SI). Damage exceeding 70% neuron loss bilaterally within a 1.0 x 0.5 x 1.0 mm diameter subregion of the ventromedial ventral pallidum/substantia innominata produced this syndrome. This subterritory was located immediately lateral to the border of the lateral hypothalamus. Bilateral lesions to the caudate/putamen or nucleus accumbens did not produce either hyperkinetic treading syndrome. These results are discussed in terms of the connectivity of the ventral pallidal/substantia innominata and globus pallidus regions and in terms of neuropathological models of hyperkinetic disorders.

Animals↗

A second transport system for sn-glycerol-3-phosphate in Escherichia coli.

Strains containing phage Mucts inserted into glpT were isolated as fosfomycin-resistant clones. These mutants did not transport sn-glycerol-3-phosphate, and they lacked GLPT, a protein previously shown to be a product of the glpT operon. By plating these mutants on sn-glycerol-3-phosphate at 43 degrees C, we isolated revertants that regained the capacity to grow on G3P. Most of these revertants did not map in glpT and did not regain GLPT. These revertants exhibited a highly efficient uptake system for sn-glycerol-3-phosphate within an apparent Km of 5 micron. In addition, three new proteins (GP 1, 2, and 3) appeared in the periplasm of these revertants. None of these proteins were antigentically related to GLPT. However, like GLPT, GP1 exhibits abnormal behavior on sodium dodecyl sulfate-polyacrylamide gels. GP 2 is an efficient binding protein. The new uptake system showed different characteristics than the system that is coded for by the glpT operon. It was inhibited neither by phosphate nor fosfomycin. So far, none of the systems that transport organic acids in Escherichia coli could be implicated in the new sn-glycerol-3-phosphate uptake activity. The mutation ugp+, which was responsible for the appearance of the new transport system and the appearance of GP 1, 2, and 3 in the periplasm was cotransducible with araD by phage P1 transduction and was recessive in merodiploids.

Bacterial Proteins↗

Glycophorin He(Sta) of the human red blood cell membrane is encoded by a complex hybrid gene resulting from two recombinational events.

A complex glycophorin (GP) variant of the human red blood cell membrane exhibiting both He and Sta antigens was characterized at the molecular level. Restriction mapping identified two novel Msp I fragments derived from the 5' and 3' portions of the GPHe(Sta) gene, respectively. Genomic DNA, including exons II-V and their splice junctions, was amplified by polymerase chain reaction, and the nucleotide sequences were determined. Comparison with the GPA and GPB sequences showed the presence in GPHe(Sta) of multiple recombinational breakpoints. In the 5' region of the variant gene, a sequence covering a portion of exon II to intron 2 had been transferred from GPA to GPB, resulting in a B-A-B hybrid structure. Such a gene conversion-like event introduced a number of templated and untemplated nucleotide replacements and was the direct cause for the expression of the He antigen. In the 3' region of the variant gene, an unequal crossover from GPB to GPA took place in the third intron at a recombination site apparently identical to that observed in the B-A hybrid GPSta type A gene. These results indicated that GPHe(Sta) occurs as a B-A-B-A hybrid gene, most likely originating from a two-step mechanism of homologous recombination. Transcript analysis showed the maturation from the GPHe(Sta) pre-mRNA of two shortened mRNAs of which the exon III-deleted species encodes both the He and Sta antigens.

Amino Acid Sequence↗

Structure and function of the von Willebrand factor A1 domain: analysis with monoclonal antibodies reveals distinct binding sites involved in recognition of the platelet membrane glycoprotein Ib-IX-V complex and ristocetin-dependent activation.

Binding of the adhesive glycoprotein, von Willebrand factor (vWf), to the platelet membrane glycoprotein (GP) Ib-IX-V complex initiates platelet adhesion and aggregation at high shear stress in hemostasis and thrombosis. In this study, the GP Ib-IX-V binding site within the vWf A1 domain was analyzed using a panel of murine monoclonal antibodies raised against a 39/34-kd vWf fragment (Leu-480/Val-481-Gly-718) encompassing the A1 domain. One antibody, 6G1, strongly inhibited ristocetin-dependent vWf binding to platelets, but had no effect on botrocetin- or jaracetin-dependent binding, or asialo-vWf-dependent platelet aggregation. The 6G1 epitope was mapped to Glu-700-Asp-709, confirming the importance of this region for modulation of vWf by ristocetin. Like ristocetin, 6G1 activated the vWf A1 domain, because it enhanced binding of the 39/34-kd fragment to platelets. In contrast, 5D2 and CR1 completely inhibited asialo-vWf-induced platelet aggregation and ristocetin-induced vWf binding to GP Ib-IX-V. However, only 5D2 blocked botrocetin- and jaracetin-induced vWf binding to platelets and binding of vWf to botrocetin- and jaracetin-coated beads. Epitopes for 5D2 and CR1 were conformationally dependent, but not congruent. Other antibodies mapped to epitopes within the A1 domain (CR2 and CR15, Leu-494-Leu-512; CR2, Phe-536-Ala-554; CR3, Arg-578-Glu-596; CR11 and CR15, Ala-564-Ser-582) were not functional, identifying regions of the vWf A1 domain not directly involved in vWf-GP Ib-IX-V interaction. The combined results provide evidence that the proline-rich sequence Glu-700-Asp-709 constitutes a regulatory site for ristocetin, and that ristocetin and botrocetin induce, at least in part, separate receptor-recognition sites on vWf. (Blood. 2000;95:164-172)

Amino Acid Sequence↗

Daphnetin induced differentiation of human renal carcinoma cells and its mediation by p38 mitogen-activated protein kinase.

Daphnetin has been shown to be a potent in vitro anti-proliferative agent to the human renal cell carcinoma (RCC) cell line, A-498. In the present study, we investigated its effects on mitogen-activated protein kinase (MAPK) signalling along with cell cycle events and cellular differentiation. Daphnetin-activated p38, however, higher concentrations were required to inhibit ERK1/ERK2. In addition, it did not activate SAPK or induce apoptosis, but instead inhibited S phase cell cycle transition of A-498 cells at low concentrations and time of exposure. In addition, a late G(1), early S phase inhibition was observed at higher concentrations and time of exposure, indicating that the mechanism of daphnetin-induced differentiation was concentration dependent. Increased expression of the epithelial differentiation markers cytokeratins 8 and 18, correlated with increasing concentrations of daphnetin, while pre-treatment with a specific p38-inhibitor, served to limit this effect. There was no evidence that P-glycoprotein (P-gp) mediated multi-drug resistance (MDR) played a role in the anti-proliferative activity of daphnetin. Consequently, we concluded that p38 MAP kinase is intrinsically involved in mediating the effect of daphnetin in A-498 cells, suggesting that this drug may act by promotion of cellular maturation, and consequently may represent a novel low toxic approach for the treatment of poorly differentiated RCCs.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Cloning and characterization of the guinea pig cytomegalovirus glycoprotein B gene.

Unlike other small animals, cytomegalovirus (CMV) infection of the guinea pig results in transplacental passage and intrauterine infection of the fetus. These features make the guinea pig model ideal for studying vaccine strategies designed to prevent congenital infection. Unfortunately, little is known about immunogenic guinea pig CMV gene products. In other animal cytomegaloviruses, a major target of the host immune response is the glycoprotein B (gB, gp UL 55) gene product. Using DNA probes containing human CMV gB sequences, the gB gene homolog of the guinea pig cytomegalovirus was identified, cloned, and sequenced. The gpCMV gB gene maps to a region spanning portions of the HindIII K, Q, and P fragments of the gpCMV genome. DNA sequence analysis identified an open reading frame of 2706 nucleotides capable of encoding a protein of 901 amino acids. Extensive similarity to the human and murine gB proteins was noted with 42% identity at the amino acid level. The predominant gpCMV gB mRNA is a 6.8-kb transcript with the expression kinetics of an early gene. RNase protection and primer extension analyses indicated that gB mRNAs were transcribed from two different initiation sites corresponding to distinct TATA elements. Polyclonal antisera prepared against a synthetic peptide derived from amino acid sequences within the ORF identified a 58-kDa virion-associated protein representing the cleaved COOH-terminus (gp 58) of the gpCMV gB molecule. The molecular characterization of gpCMV gB should facilitate studies of vaccine strategies in the guinea pig model of congenital CMV infection.

Amino Acid Sequence↗

Transmembrane organization of mouse P-glycoprotein determined by epitope insertion and immunofluorescence.

P-glycoprotein (P-gp) is an integral membrane protein that causes multidrug resistance when overexpressed in tumor cells. Efforts to identify the position and polarity of its 12 putative transmembrane (TM) domains have so far failed to yield a consistent topological model. Recently, we have described a method for topology mapping based on the insertion of a small antigenic peptide epitope (YPYDVPDYA) in predicted intra- or extracellular loops of the protein. The tagged proteins are then functionally expressed in Chinese hamster ovary cells, and the polarity of the inserted tag with respect to plasma membrane is deduced by immunofluorescence in intact or permeabilized cells. We previously localized segments between TM1 and TM2, and TM5 and TM6 as extracellular and segments between TM2 and TM3 and downstream of TM6 as intracellular (Kast, C., Canfield, V., Levenson, R., and Gros, P. (1995) Biochemistry 34, 4402-4411). We have now inserted single epitope tags at positions 207, 235, 276, 741, 782, 797, 815, 849, 887, 961, and 1024; double epitope tags at positions 736, 849, and 961; and a triple epitope tag at position 849. Insertions of epitopes at positions 235, 736, 741, 849, 887, 961, and 1024 resulted in functional proteins, whereas insertions at positions 207, 276, 782, 797, and 815 abrogated the capacity of P-gp to confer multidrug resistance. The epitope tags inserted at positions 736, 849, and 961 were localized extracellularly, whereas tags at positions 235, 887, and 1024 mapped intracellularly. These results indicate that the intervening segments separated by TM4-TM5, TM10-TM11, and downstream of TM12 are cytoplasmic; segments delineated by TM7-TM8, TM9-TM10, and TM11-TM12 are extracellular. Our combined analysis of the amino- and carboxyl-terminal halves of P-gp supports a 12-TM domain topology with intracellular amino and carboxyl termini and ATP binding sites and an extracellular glycosylated loop (TM1-TM2) in agreement with hydropathy prediction. These results are clearly distinct from those obtained by the analysis of truncated P-gps in vitro and in heterologous expression systems.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Renal micropuncture study of normotensive and Milan hypertensive rats before and after development of hypertension.

Earlier studies of renal transplantation and of sodium metabolism indicated that the cause of high blood pressure in the Milan strain of genetically hypertensive rats (MHS) was altered renal function. To pinpoint the active factors, we used micropuncture to study several indices of renal function in normal (NR) and MHS rats at three different ages: A) 26 to 30 days, before development of hypertension (pre-MHS); B) 35 to 40 days; and C) 75 to 90 days, after the development of hypertension. The indices studied and the important differences found between the two strains were: 1) Single nephron filtration rate (SNFR) and late proximal tubular fluid delivery to the distal nephron (LPF). In group A, the pre-MHS rats had significantly lower values than did the NR (SNFR = 6.3 +/- 0.8 nl/min [MHS] vs. 8.3 +/- 1.2 [NR], P less than 0.01; LPF = 3.14 +/- 0.25 nl/min [MHS] vs. 4.1 +/- 0.35 [NR], p less than 0.05). In group C, the values in the MHS rats were significantly higher than those of the NR (SNFR = 17.3 +/- 1.4 nl/min [MHS] vs. 12.1 +/- 0.8 [NR], P less than 0.05; LPF - 7.4 +/- 0.5 nl/min [MHS] vs. 5.3 +/- 0.3 [NR], P less than 0.01). 2) Number of glomeruli. In group C only, the MHS rats had significantly fewer than did the NR rats (MHS = 55, 253 +/- 2,821 vs. NR = 64,527 +/- 2,900, P less than 0.05). 3) Glomerular filtration rate (GFR) and SNFR as a function of the mean blood pressure (MAP). In group A, the GFR of the MHS rats was lower than that of the NR rats (GFR = 0.38 +/- 0.03 ml/min . 100 g of body wt [MHS], 0.50 +/- 0.03 [NR] P less than 0.05). In group C, there was no longer any significant difference. At equal MAP, SNFR was equal in all the groups, except group A, where SNFR was significantly lower in MHS. 4) Pressure differences: Glomerular capillary pressure (gP). GP was significantly higher in MHS rats than in NR rats (group A, + 5.2 mm Hg; group C, + 6.7 mm Hg). In the pre-MHS rats, anesthesia significantly increased (P less than 0.001) the blood pressure difference between the two strains. This effect was not seen in the adult MHS rats. This may increase the differences in GP between pre-MHS and NR. 5) Afferent effective filtration pressure (EFPA). EFPA values were also higher in MHS rats (+ 2.9 mm Hg in group A, + 6.8 mm Hg in group C), but once again the effects of anesthesia probably account for the differences in magnitude seen between pre-MHS and NR. Only 22% of the absolute differences in systemic arterial pressure in the adult MHS and NR rats was transmitted to the glomerular capillary, while 33% of the difference was transmitted in the younger rats. These values suggest a reduced glomerular hydraulic conductivity, even though other explanations could not be excluded, and they are consistent with the hypothesis that the primary cause of development of hypertension in the MHS rats may be a decrease in SNFR.

Animals↗