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Control analysis of biochemical pathways: a novel procedure for calculating control coefficients, and an additional theorem for branched pathways.

A novel method for calculating control coefficients of individual enzymes on fluxes and concentrations in metabolic pathways is presented. This method is derived by applying the theorem on implicit functions to the equations defining the steady state metabolite concentrations; it allows verification of the existing summation theorems and connectivity relations, and leads to a novel theorem for flux control coefficients in branched pathways. The method and the novel theorem are illustrated by several examples.

Mathematics↗

Evoked potential analysis of visual pathways in human albinism.

PURPOSE: To explore the abnormal crossing of the retinogeniculate pathways in human albinos with visual-evoked potentials (VEPs). METHODS: The authors studied the symmetry of the topographic distribution of pattern onset/offset VEPs over the posterior part of the scalp elicited by monocular stimulation of each eye in 31 consecutive patients with different types of albinism. RESULTS: Twenty-one patients had asymmetric responses, with the major amplitude recorded over the lateral part of the scalp contralaterally to the stimulated eye in 14 patients and ipsilaterally in 7 patients. In two patients, the responses had a symmetric topographic distribution. In eight patients, the amplitude was so low that studying the symmetry was not possible. CONCLUSIONS: These findings demonstrate a non-uniform pattern of asymmetry as a result of the miswiring of the visual pathways in human albinism. Moreover, the low amplitude of the VEP recorded in a consecutive series of patients shows the difficulty of the study of this phenomenon in a clinical setting.

Adolescent↗

pXen, a utility vector for the expression of GST-fusion proteins in Xenopus laevis oocytes and embryos.

We describe a plasmid, pXen, designed for the optimized expression of proteins fused to glutathione-S-transferase (GST) in Xenopus laevis oocytes and embryos. The Xenopus model system permits the biochemical analysis of signaling pathways and analysis of embryo phenotype in response to manipulation of proto-oncogene expression. pXen is a modified pSP64T vector which contains an SP6 RNA polymerase promoter followed by the translational initiation sequence of Xenopus beta-globin and the glutathione binding domain of GST. The Xenopus 3' beta-globin untranslated region and polyadenylation site immediately follow the multiple cloning site to permit the efficient translation of in vitro transcribed RNA in oocytes and embryos. The utility of pXen is demonstrated by cloning the catalytic domain of the serine/threonine kinase proto-oncogene Raf-1 into this vector and injecting the corresponding in vitro transcribed RNA into oocytes. Catalytically active GST-vRaf fusion protein was expressed in the injected oocytes and induced oocyte maturation. Moreover, the GST-vRaf fusion protein could be readily purified from Xenopus extracts using glutathione Sepharose. We demonstrate that the Raf-1 catalytic domain retains activity when fused with the N-terminal GST moiety and is subject to negative regulation by the cyclic AMP-dependent protein kinase (PKA). The pXen vector will be useful for an in vivo analysis of the physiological role and regulation of a wide variety of signaling molecules when expressed in Xenopus oocytes and embryos.

Amino Acid Sequence↗

Refining molecular analysis in the pathways of colorectal carcinogenesis.

BACKGROUND & AIMS: In the stepwise model, specific genetic and epigenetic changes accumulate as colorectal adenomas progress to carcinomas (CRCs). CRCs also acquire global phenotypes, particularly microsatellite instability (MSI) and aneuploidy/polyploidy (chromosomal instability, CIN). Few changes specific to MSI-low or CIN+ cancers have been established. METHODS: We investigated 100 CRCs for: mutations and loss of heterozygosity (LOH) where appropriate, of APC, K-ras, BRAF, SMAD4, and p53; deletion on 5q around APC and 18q around SMAD4; total chromosomal-scale losses and gains; MSI; and CIN. RESULTS: As expected, CIN- cancers had fewer chromosomal changes overall than CIN+ lesions, but after correcting for this, 5q deletions alone predicted CIN+ status. 5q deletions were not, however, significantly associated with APC mutations, which were equally frequent in CIN+ and CIN- tumors. We therefore found no evidence to show that mutant APC promotes CIN. p53 mutations/LOH were more common in CIN+ than CIN- lesions, and all chromosomal amplifications were in CIN+ tumors. CIN- cancers could be subdivided according to the total number of chromosomal-scale changes into CIN-low and CIN-stable groups; 18q deletion was the best predictor, being present in nearly all CIN-low lesions and almost no CIN-stable tumors. MSI-low was not associated with CIN, any specific mutation, a mutational signature, or clinicopathologic characteristic. CONCLUSIONS: Overall, the components of the stepwise model (APC, K-ras, and p53 mutations, plus 18q LOH) tended to co-occur randomly. We propose an updated version of this model comprising 4 pathways of CRC pathogenesis, on the basis of 5q/18q deletions, MSI (high/low), and CIN (high/low/stable).

Carcinoma↗

Protein fragments as models for events in protein folding pathways: protein engineering analysis of the association of two complementary fragments of the barley chymotrypsin inhibitor 2 (CI-2).

Two fragments of chymotrypsin inhibitor-2, CI-2(20-59) and CI-2(60-83), derived from cyanogen bromide cleavage at Met-59, associate to give a native-like structure. We analyze the kinetics and equilibria of association of mutant fragments derived from cleaving mutant proteins at the same methionine residue. The changes in free energy of association have been measured both from isothermal studies of the binding of fragments and from thermal denaturation of the complexes. In general, there is a good correlation between the changes on mutation of the free energy of association of fragments and the changes in free energy of folding of the uncleaved parent protein. The notable exceptions are for residues in regions of the fragments that form nonnative hydrophobic clusters in the isolated fragments; mutation of the hydrophobic residues involved in these clusters decreases the equilibrium constant for formation of the noncovalent complex less than it does the equilibrium constant for folding of intact protein. The dissociated fragments must be destabilized by mutation of those hydrophobic residues, but to a lesser extent than is the complex itself. These clusters are thus less important energetically in the denatured state of the intact protein. The second-order rate constants for the major phase of association change with mutation, similar results being obtained from fluorescence measurements of the regain of tertiary structure and from circular dichroism measurements of the regain of secondary structure. The rate constants for association correlate well, in general, with the rate constants of refolding of the respective uncleaved proteins.(ABSTRACT TRUNCATED AT 250 WORDS)

Circular Dichroism↗

Four pathways in the analysis of adult development and aging: comparing analyses of reasoning about personal-life dilemmas.

Four systems for analyzing thinking about 2 personal-life dilemmas, as discussed by 29 men and 35 women (ages 35-85), were compared. Kohlberg's (1976) moral judgment stages, Kegan's (1982) ego-development stages, Gilligan's (1982) moral orientation system, and Suedfeld and Tetlock's (1977) integrative complexity scoring were used. Subjects completed Kohlberg's (Colby & Kohlberg, 1987) standard moral judgment measure, a self-concept description, and several questionnaires. The Kohlberg, Kegan, and integrative complexity codings of the dilemmas were positively related to each other and to the standard Kohlberg moral stage scores. There were no age-group differences and few gender differences on the measures. However, education, role-taking skills, and greater sensitivity to age changes in the self positively predicted higher stage scores across maturity.

Adaptation, Psychological↗

Immunohistochemical analysis of peptide pathways possibly related to pain and analgesia: enkephalin and substance P.

The distribution of Met-enkephalin- and substance P-immunoreactive neurons was studied by indirect immunofluorescence in some areas related to pain and analgesia. Met-enkephalin- and substance P-positive cell bodies and nerve terminals were observed in the periaqueductal central gray, the nucleus raphe magnus, the marginal layers and substantia gelatinosa of the spinal trigeminal nucleus, and the dorsal horn of the spinal cord. Lesion experiments suggest that Met-enkephalin neurons in the dorsal horn and possibly in the spinal trigeminal nucleus are interneurons or propriospinal neurons with nerve terminals in the laminae I and II of the cord and in the superficial layers of the spinal trigeminal nucleus, respectively. These areas are also very rich in substance P-positive nerve terminals, mainly representing central branches of primary afferent neurons. The present immunohistochemical-anatomical findings support the hypothesis that stimulation-produced analgesia is related to activation of spinal and spinal trigeminal enkephalin interneurons forming axo-axonic synapses with (substance P?) pain afferents in the superficial laminae of the dorsal horn and the spinal trigeminal nucleus. These interneurons may be activated by sensory fibers and by descending fibers from medullary stimulation sites. Transmitter substances in these descending fibers may be 5-hydroxytryptamine and substance P.

Analgesia↗

Cinematographical Analysis of Movement Pathway Constraints in Rapid Target-Striking Tasks.

Several features of the actual movement pathway in two rapid target-striking tasks were quantified by using high-speed cinematography, and whether the movement pathway is constrained as a function of the accuracy demands imposed by the size of the subtended angle was determined. Subjects (N = 16) first hit an 8-cm-diameter target located 10 cm to the left of a start position and then, depending on the condition, moved another 10 cm to hit either a 6-cm- or 1.5-cm-diameter target. Subtended angles were 17.1 and 4.3 degrees for the large and small second-target conditions, respectively. Fifty trials per condition were performed, the last 3 of which were filmed at 120 Hz. The vertical dimension of movement (peak height along the z-axis) was captured directly from the camera view, whereas the horizontal (y-axis) dimension, that is, the dimension orthogonal to the principal direction of motion, was captured through a mirror positioned above the target board. Reaction times and movement times were significantly longer in the small second-target condition, thus replicating the well-known response complexity effect. Kinematic analyses revealed that when the subtended angle was smaller, there was significantly less horizontal pathway deviation as well as significantly higher peak vertical displacement in the movement. Therefore, the accuracy demands imposed by a smaller subtended angle do constrain the actual movement pathway.

Journal Article↗

Analysis of the pathways of nitric oxide utilization in mitochondria.

The regulatory role that mitochondria play in cell dysfunction and cell-death pathways involves the concept of a complex and multisite regulation of cellular respiration and energy production signaled by cellular and intercellular messengers. Hence, the role of nitric oxide, as a physiological regulator acting directly on the mitochondrial respiratory chain acquires further relevance. This article provides a survey of the major regulatory roles of nitric oxide on mitochondrial functions as an expression of two major metabolic pathways for nitric oxide consumption: a reductive pathway, involving mitochondrial ubiquinol and yielding nitroxyl anion and an oxidative pathway involving superoxide anion and yielding peroxynitrite. The modulation of the decay pathways for nitrogen- and oxygen-centered radicals is further analyzed as a function of the redox transitions of mitochondrial ubiquinol. The interplay among these redox processes and its implications for mitochondrial function is discussed in terms of the mitochondrial steady-state levels (and gradients) of nitric oxide and superoxide anion.

Animals↗

Molecular analysis of the pathway for the synthesis of thiol tripeptides in the model legume Lotus japonicus.

The thiol tripeptides, glutathione (GSH) and homoglutathione (hGSH), perform multiple roles in legumes, including protection against toxicity of free radicals and heavy metals. The three genes involved in the synthesis of GSH and hGSH in the model legume, Lotus japonicus, have been fully characterized and appear to be present as single copies in the genome. The gamma-glutamylcysteine synthetase (gamma(ecs)) gene was mapped on the long arm of chromosome 4 (70.0 centimorgans [cM]) and consists of 15 exons, whereas the glutathione synthetase (gshs) and homoglutathione synthetase (hgshs) genes were mapped on the long arm of chromosome 1 (81.3 cM) and found to be arranged in tandem with a separation of approximately 8 kb. Both genes consist of 12 exons of exactly the same size (except exon 1, which is similar). Two types of transcripts were detected for the gshs gene, which putatively encode proteins localized in the plastids and cytosol. Promoter regions contain cis-acting regulatory elements that may be involved in the plant's response to light, hormones, and stress. Determination of transcript levels, enzyme activities, and thiol contents in nodules, roots, and leaves revealed that gamma(ecs) and hgshs are expressed in all three plant organs, whereas gshs is significantly functional only in nodules. This strongly suggests an important role of GSH in the rhizobia-legume symbiosis.

Base Sequence↗

Analysis of transmission pathways of Pseudomonas aeruginosa between patients and tap water outlets.

OBJECTIVE: To study the association between infection and faucet contamination in a surgical intensive care unit (SICU). DESIGN: Prospective cohort study. SETTING: One SICU and 12 peripheral wards. PATIENTS: From 45 patients colonized or infected with P. aeruginosa, 87 positive isolates were collected. INTERVENTIONS: P. aeruginosa also was found in 150 of 259 (58%) tap water samples taken from patient rooms. MEASUREMENTS AND MAIN RESULTS: Clonal relationships between patient and tap water isolates were established by random amplification of polymorphic DNA-polymerase chain reaction. A long-time contamination (144 wks) with a single specific genotype for each of the faucets in our SICU was observed. Additional genotypes found in tap water from these faucets were only isolated over short periods of time. P. aeruginosa was shown to reside in single faucets and did not originate from the supplying mains. In 15 of 45 patients (33%), P. aeruginosa genotypes were identical to those from the faucets in the patient rooms. In six other patients, the same genotype was found in faucets from neighboring rooms. Faucets served as the source of infection for patients in 35% of cases, and on the other hand a retrograde contamination of faucets by patients was observed in 15% of cases. CONCLUSIONS: Tap water from faucets contaminated with P. aeruginosa plays an important role in the propagation of this pathogen among patients. A high number of transmissions were shown to occur both from faucet to patient and from patient to faucet. Our SICU served as an epicenter for the spread of P. aeruginosa to peripheral wards. It appears prudent to follow strict hygienic precautions such as wearing gloves and performing thorough alcoholic rub disinfection of hands after patient care and after hand washing at locations known to harbor.

Adolescent↗

Serous borderline ovarian tumor with functioning stroma in a postmenopausal woman: immunohistochemical analysis of steroidogenic pathway.

An epithelial ovarian tumor with estrogenic manifestations (vaginal bleeding, vaginal softening) was encountered in a 70-year-old woman. The preoperative serum levels of estrone, estradiol, and testosterone were elevated. A right ovarian serous papillary tumor of borderline malignancy was removed and found to have a cellular, focally luteinized stroma. Steroidogenic enzymes, including 3beta-hydroxysteroid dehydrogenase and P450 cytochromes specific for cholesterol side-chain cleavage (P450scc), 17alpha-hydroxylation (P45017alpha), and aromatization (P450arom), were immunohistochemically demonstrated in the stromal cells. Immunohistochemical evaluation of these enzymes suggest significant functional differences among the enzymatically-activated stromal cells. That only rare stromal cells were immunoreactive for P450arom suggests that most of the testosterone synthesized in the tumor is extragonadally converted to estrogen, resulting in tumor-associated estrinism.

3-Hydroxysteroid Dehydrogenases↗

Vestibular surgical access to the palatine root of the superior first molar: "low-dose cone-beam" CT analysis of the pathway and its anatomic variations.

Apicoectomy of the superior first molar palatine root until recently involved relatively destructive and laborious surgery because of the palatal access route, which not only necessitates an extensive flap, but also the readying of procedures required to deal with a possible hemorrhage from the palatine artery. With the advent of operative microscopy, endodontic surgery has become more precise and less invasive and its technical potential has increased; a possible innovative surgical technique may entail vestibular root access. The possibility of using low-dose, low-cost computed tomography (CT) dedicated to the jaw to obtain anatomic information to plan apicoectomy via the vestibular approach was evaluated; 31 patients were referred to CT with the NewTom apparatus. In 43 superior first molars, the mean distance of the palatine root from the external vestibular cortex was measured, and the frequency that the maxillary sinus lateral recess lay between the roots was determined. The mean root apex-vestibular cortex distance was 9.73 mm. In 25% of cases the maxillary sinus recessus lay between vestibular and palatine roots. CT may play an important role in optimizing palatine root apicoectomy through vestibular access, with regard to precision and preventing complications, with relatively low biological and economic cost, also possibly contributing to the affirmation of this new surgical procedure.

Adolescent↗

Simulation of the activation of alpha-chymotrypsin: analysis of the pathway and role of the propeptide.

Alpha-chymotrypsin undergoes a reversible conformational change from an inactive chymotrypsinogen-like structure at high pH to an active conformation at neutral pH. In order to gain insight into this process on a structural level, we applied molecular dynamics and targeted molecular dynamics simulations in aqueous environment on the activation and inactivation processes of three different types of chymotrypsin. These are the wild-type bovine chymotrypsin containing the propeptide and the bovine and rat chymotrypsin lacking the propeptide. From these simulations, the importance of the propeptide and of the sequence differences between the rat and bovine variants from the viewpoint of activation could be evaluated and compared with previous fluorescence stopped flow results. The obtained results show the unambiguous influence of the propeptide on the explored conformational space, whereas the sequence differences between bovine and rat chymotrypsin play a minor role. The main features of activation are present in both the wild type and the variant lacking the propeptide, despite the fact that different parts of the conformational space were explored. The comparison of all trajectories shows that particular amino acid residues, such as 17, 18, 19, 187, 217, 218, and 223, undergo large dihedral transitions during the activation process, suggesting a role as hinge residues during the conformational change.

Amino Acid Sequence↗