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Biomedical subjects

M V Rao

Publications and source records attributed to M V Rao.

At least 19 recordsLinked to original sources

Neurofilament-dependent radial growth of motor axons and axonal organization of neurofilaments does not require the neurofilament heavy subunit (NF-H) or its phosphorylation.

Neurofilaments are essential for establishment and maintenance of axonal diameter of large myelinated axons, a property that determines the velocity of electrical signal conduction. One prominent model for how neurofilaments specify axonal growth is that the 660-amino acid, heavily phosphorylated tail domain of neurofilament heavy subunit (NF-H) is responsible for neurofilament-dependent structuring of axoplasm through intra-axonal crossbridging between adjacent neurofilaments or to other axonal structures. To test such a role, homologous recombination was used to generate NF-H-null mice. In peripheral motor and sensory axons, absence of NF-H does not significantly affect the number of neurofilaments or axonal elongation or targeting, but it does affect the efficiency of survival of motor and sensory axons. Loss of NF-H caused only a slight reduction in nearest neighbor spacing of neurofilaments and did not affect neurofilament distribution in either large- or small-diameter motor axons. Since postnatal growth of motor axon caliber continues largely unabated in the absence of NF-H, neither interactions mediated by NF-H nor the extensive phosphorylation of it within myelinated axonal segments are essential features of this growth.

Actin Cytoskeleton

Extragenital donovanosis of the foot.

An extremely rare case of primary extragenital donovanosis affecting the dorsa of right foot is reported. Clinical and histopathological features of the disease are described and the rarity, absence of genital lesions, and consequent difficulty in diagnosis are discussed.

Adult

Effect of medroxy progesterone acetate and testosterone enanthate on vas deferens of rats.

Effects of medroxy progesterone acetate (MPA; 5 mg/kg) and MPA + testosterone enanthate (TE) (3 mg + 2 mg/kg) were investigated in vas deferens and on fertility (along with reversibility study) for 60 days through histopathology, morphometric and certain biochemical parameters such as total proteins, sialic acid, ATPase, SDH and testosterone. The study revealed for altered histopathology and contratile pattern of vas deferens resulting in reduced fertility. The study also indicated androgen antagonistic effect. These effects were found to be reversible 4 and 3 months after withdrawal of MPA and MPA + TE injections respectively. Thus, both types generated functional sterility in the rat, but MPA affected histophysiology of vasal tissue.

Animals

Endocrine approach to male fertility control by steroid hormone combination in rat Rattus norvegicus L.

Effects of a combination of medoxy-progesterone acetate (MPA) and dihydrotestosterone (DHT) at a dose of 10 mg + 2 mg/kg, injected, in weekly to rats of proven fertility were investigated with respect to their fertility, sperm and organ functions. This hormonal regimen had no effect in body and organ weights except in the testis. A depletion in sperm reserves in testis and epididymis was noted in addition to a loss of their motility in the later. Alterations in cauda epididymal sperm viability and morphology and reduced levels of superoxide dismutase indicated changes in their plasma membrane permeability. Sperm acrosomal enzymes such as acrosin and hyaluronidase were also affected leading to a loss of their function. Consequently the fertility potential of these rats also impaired after 60 days of hormonal regimen. Testicular biochemical machinery revealed its altered metabolism and regressed spermatogenic activity accounting for its loss of weight. Similarly epididymal physiology also exhibited changes leading to impaired sperm maturation. However, toxicity studies showed no significant variations in liver and blood biochemical profiles indicating non-toxic nature of this combination. All these effects seemed to be transient and reversible upon withdrawal of treatment for 60 and 90 days gradually. Thus, this combination with aromatizable androgen is useful for induction of functional sterility.

Animals

Influence of salicylic acid on H2O2 production, oxidative stress, and H2O2-metabolizing enzymes. Salicylic acid-mediated oxidative damage requires H2O2.

We investigated how salicylic acid (SA) enhances H2O2 and the relative significance of SA-enhanced H2O2 in Arabidopsis thaliana. SA treatments enhanced H2O2 production, lipid peroxidation, and oxidative damage to proteins, and resulted in the formation of chlorophyll and carotene isomers. SA-enhanced H2O2 levels were related to increased activities of Cu,Zn-superoxide dismutase and were independent of changes in catalase and ascorbate peroxidase activities. Prolonging SA treatments inactivated catalase and ascorbate peroxidase and resulted in phytotoxic symptoms, suggesting that inactivation of H2O2-degrading enzymes serves as an indicator of hypersensitive cell death. Treatment of leaves with H2O2 alone failed to invoke SA-mediated events. Although leaves treated with H2O2 accumulated in vivo H2O2 by 2-fold compared with leaves treated with SA, the damage to membranes and proteins was significantly less, indicating that SA can cause greater damage than H2O2. However, pretreatment of leaves with dimethylthiourea, a trap for H2O2, reduced SA-induced lipid peroxidation, indicating that SA requires H2O2 to initiate oxidative damage. The relative significance of the interaction among SA, H2O2, and H2O2-metabolizing enzymes with oxidative damage and cell death is discussed.

Arabidopsis

Prediction of birth weights from body weights of newborns.

OBJECTIVE: To evaluate the accuracy of prediction of birth weights from body weights of newborns till six days after birth. DESIGN: Prospective follow-up. SETTING: Four villages near Hyderabad. METHODS: Weights of 47 newborns were recorded daily from the day of birth for seven days. The birth weights were regressed on the weights of the babies taken on the 2nd day to the 7th day. Specificity and sensitivity of the predicted birth weights to arrive at the prevalence of low birth weight (LBW) were computed. RESULTS: The co-efficient of determination (R-square) for between the days measurements decreased from 95% on the second day to 86% on seventh day with an increase in the standard error of the estimate from 84 g to 154 g. Based on the "predicted birth weights", the prevalence of LBW in the community was arrived at and compared with the actual observation. The sensitivity and specificity of these regression equations was high and ranged from 0.95 to 0.85 and 0.96 to 0.93, respectively. CONCLUSIONS: In situations where the birth weight cannot be recorded, weight of the baby taken within the first week after birth may be reliably utilized to assess the "birth weight", particularly in relation to categorization as LBW. This methodology can serve as a tool to monitor various developmental programs aimed at improving birth weights.

Anthropometry

Preparation of oligoribonucleotides containing 4-thiouridine using Fpmp chemistry. Photo-crosslinking to RNA binding proteins using 350 nm irradiation.

The preparation of a 4-thiouridine phosphoramidite suitable for RNA synthesis and its subsequent incorporation into oligoribonucleotides is described. The thiol group is protected with a 2-cyanoethyl group and the 2'-OH with a 1-(2-fluorophenyl)-4-methoxypiperidin-4-yl function. Thiouridine-containing oligoribonucleotides were used as 350 nm UV crosslinking probes for the photoaffinity labelling of RNA binding proteins. Specific crosslinking was demonstrated between the Rev protein of HIV-1 (as a glutathione S-transferase fusion protein) and its RNA target, the Rev-responsive element. It was not possible to generate crosslinks between the RNA bacteriophage MS2 coat protein and the initiator stem-loop of the replicase gene, to which it binds. These results are consistent with the structural data available on both systems.

Affinity Labels

Ultraviolet-B- and ozone-induced biochemical changes in antioxidant enzymes of Arabidopsis thaliana.

Earlier studies with Arabidopsis thaliana exposed to ultraviolet B (UV-B) and ozone (O3) have indicated the differential responses of superoxide dismutase and glutathione reductase. In this study, we have investigated whether A. thaliana genotype Landsberg erecta and its flavonoid-deficient mutant transparent testa (tt5) is capable of metabolizing UV-B- and O3-induced activated oxygen species by invoking similar antioxidant enzymes. UV-B exposure preferentially enhanced guaiacol-peroxidases, ascorbate peroxidase, and peroxidases specific to coniferyl alcohol and modified the substrate affinity of ascorbate peroxidase. O3 exposure enhanced superoxide dismutase, peroxidases, glutathione reductase, and ascorbate peroxidase to a similar degree and modified the substrate affinity of both glutathione reductase and ascorbate peroxidase. Both UV-B and O3 exposure enhanced similar Cu,Zn-superoxide dismutase isoforms. New isoforms of peroxidases and ascorbate peroxidase were synthesized in tt5 plants irradiated with UV-B. UV-B radiation, in contrast to O3, enhanced the activated oxygen species by increasing membrane-localized NADPH-oxidase activity and decreasing catalase activities. These results collectively suggest that (a) UV-B exposure preferentially induces peroxidase-related enzymes, whereas O3 exposure invokes the enzymes of superoxide dismutase/ascorbate-glutathione cycle, and (b) in contrast to O3, UV-B exposure generated activated oxygen species by increasing NADPH-oxidase activity.

Antioxidants

Distinct regulatory elements control muscle-specific, fiber-type-selective, and axially graded expression of a myosin light-chain gene in transgenic mice.

The fast alkali myosin light chain 1f/3f (MLC1f/3f) gene is developmentally regulated, muscle specific, and preferentially expressed in fast-twitch fibers. A transgene containing an MLC1f promoter plus a downstream enhancer replicates this pattern of expression in transgenic mice. Unexpectedly, this transgene is also expressed in a striking (approximately 100-fold) rostrocaudal gradient in axial muscles (reviewed by J. R. Sanes, M. J. Donoghue, M. C. Wallace, and J. P. Merlie, Cold Spring Harbor Symp. Quant. Biol. 57:451-460, 1992). Here, we analyzed the expression of mutated transgenes to map sites necessary for muscle-specific, fiber-type-selective, and axially graded expression. We show that two E boxes (myogenic factor binding sites), a homeodomain (hox) protein binding site, and an MEF2 site, which are clustered in an approximately 170-bp core enhancer, are all necessary for maximal transgene activity in muscle but not for fiber-type- or position-dependent expression. A distinct region within the core enhancer promotes selective expression of the transgene in fast-twitch muscles. Sequences that flank the core enhancer are also necessary for high-level activity in transgenic mice but have little influence on activity in transfected cells, suggesting the presence of regions resembling matrix attachment sites. Truncations of the MLC1f promoter affected position-dependent expression of the transgene, revealing distinct regions that repress transgene activity in neck muscles and promote differential expression among intercostal muscles. Thus, the whole-body gradient of expression displayed by the complete transgene may reflect the integrated activities of discrete elements that regulate expression in subsets of muscles. Finally, we show that transgene activity is not significantly affected by deletion or overexpression of the myoD gene, suggesting that intermuscular differences in myogenic factor levels do not affect patterns of transgene expression. Together, our results provide evidence for at least nine distinct sites that exert major effects on the levels and patterns of MLC1f expression in adult muscles.

Animals

Effect of chronic treatment with atenolol and prazosin in streptozotocin induced diabetic rats.

Diabetes-mellitus was induced in rats by single intravenous injection of (45 mg/kg) streptozotocin (STZ). STZ diabetic rats showed hypertension, decreased cardiac functions, cardiomyopathy and hypercholesterolemia observed at the end of six weeks. Chronic treatment with atenolol (10 mg/kg) for six weeks in the diabetic rats reduced the elevated blood pressure, but failed to prevent STZ induced other complications. Chronic treatment with prazosin (1 mg/kg, po) in the diabetic rats, reduced the elevated blood pressure and also partially prevented hypercholesterolemia, cardiac dysfunctions and in particular the cardiomyopathy. The results suggest that prazosin may be a better option as compared to atenolol in hypertension when it is associated with diabetes mellitus.

Adrenergic alpha-Antagonists

Synthesis of oligonucleotides labelled with 2,4-dinitrophenyl groups at thymidine sites.

A phosphoramidite has been produced for labelling oligonucleotides with DNP groups at thymidine sites during solid-phase synthesis. The dinitrophenylamino group is attached via a caproamidopropargyl group to the 5-position of uracil. A related DNP-labelling phosphoramidite has been synthesised where the propargyl group is replaced by propyl. Both phosphoramidites have been used to synthesises DNP-labelled oligonucleotides. A related DNP-labelled deoxyuridine triphosphate has also been synthesised. DNP labelled oligonucleotide probes are valuable in diagnostic applications for the antibody-based detection of DNA and RNA.

Chromatography, High Pressure Liquid

Antibody-mediated detection and physical properties of oligonucleotides labelled with multiple internal and terminal 2,4-dinitrophenyl groups.

DNP-labelled phosphoramidites have been used to synthesis oligonucleotides with multiple DNP reporter groups. The antibody-mediated detection and the stability of duplexes formed by these labelled oligonucleotides have been studied. A DNP-labelled deoxyuridine triphosphate has also been used to enzymatically incorporate DNP-labels into DNA via the polymerase chain reaction. The use of DNP-labelled primers in the PCR has also been investigated.

Antibodies

Interaction of methylene blue with transfer RNA--a spectroscopic study.

The binding of methylene blue (MB) with tRNA was studied using absorption, fluorescence and circular dichroic spectroscopy. In the spectral titration of MB with tRNA, hypochromism was observed in the absorption maximum of the dye in the visible region till P/D = 4 and thereafter the intensity increased with a red shift at P/D > 9, indicating electrostatic and intercalative binding at low and high P/D ratios, respectively. Analysis of absorption data, following Schwarz's procedure, showed that the electrostatic binding is cooperative in nature (cooperatively parameter q = 50) with a binding constant K = 7.77 x 10(3) M-1. A non-linear Scatchard plot was observed for the intercalative binding (at P/D > 4), probably due to a difference in the spectral characteristics of the dye intercalated between the base pairs and that between the bases in the single stranded domains. Quenching of fluorescence was observed for both the binding processes. In the circular dichroism spectra of tRNA-MB complexes at high P/D (approximately 30), nonconservative positive ICD bands were seen at 620 and 680 nm while at low P/D (approximately 2), two conservative negative CD bands at 300 and 660 nm and two bisignate bands with cross overs at 565 and 605 nm were observed. The short wavelength component of the bisignate band at 565 nm is negative while that of the 605-nm band is positive, indicating that the former arises from left handed and the latter from the right handed helical disposition of dye molecules along the tRNA backbone. The changes in the CD spectrum of tRNA on dye binding could be due to a conformational change of the nucleic acid or a negative CD being induced at that region.

Circular Dichroism

Characterization of a negative cis-acting DNA element regulating the transcription of CYP2B1/B2 gene in rat liver.

The region -160 to -127 nt of the upstream of CYP2B1/B2 gene has been found to function as a negative cis-acting element on the basis of DNase-I footprint and gel mobility shift assays as well as cell-free transcriptional assays using Bal-31 mutants. A reciprocal relationship in the interaction of the negative and the recently characterized positive elements with their respective protein factors has been found under repressed and induced conditions of the gene. The negative element also harbors the core glucocorticoid responsive sequence, TGTCCT. It is concluded that the negative element mediates the repressed state of the gene under the uninduced condition and also mediates the repressive effect of dexamethasone, when given along with the inducer phenobarbitone in rats. Dexamethasone is able to antagonize the effects of phenobarbitone at as low a concentration as 100 micrograms/kg body wt in these animals.

Animals

Ozone exposure decreases UVB sensitivity in a UVB-sensitive flavonoid mutant of Arabidopsis.

The impact of sequential exposure to ozone (O3) and UVB (290-320 nm) was studied using two genotypes of Arabidopsis thaliana differing in UVB sensitivity. The negative impact of UVB on dry matter production and photosynthetic pigments was absent in the ecotype Landsberg erecta (LER), while the negative impact of UVB was more pronounced when LER plants pre-exposed to O3 were irradiated with UVB. However, the growth of tt5 plants (a mutant virtually incapable of synthesizing flavonoids) was significantly affected by the UVB exposures, while the impact of UVB was significantly counteracted when tt5 plants pre-exposed to O3 were irradiated with UVB. These results suggest that pre-exposure to O3 decreased sensitivity of tt5 but increased sensitivity of LER to UVB. Concentrations of UV-absorptive compounds were almost the same in plants exposed to UVB alone or sequentially to O3 and UVB. Exposures of LER and tt5 to UVB enhanced both ascorbic acid and glutathione as well as their redox state compared to control plants. Pre-exposure to O3 enhanced the total ascorbic acid and glutathione as well as the redox state of ascorbate and glutathione in tt5 but decreased the redox state in LER. Irradiation of plants pre-exposed to O3 with UVB enhanced the redox state of ascorbate and glutathione slightly in tt5 but decreased it further in LER. The high redox state of ascorbate and glutathione in tt5 pre-exposed to O3 would have protected plants from UVB and decreased their sensitivity to UVB in spite of their inability to synthesize flavonoids.(ABSTRACT TRUNCATED AT 250 WORDS)

Arabidopsis

Spectroscopic studies on the binding of methylene blue to poly(riboadenylic acid).

The binding of methylene blue (MB) to poly(rA) was studied using UV and CD spectroscopy at neutral and acidic pH, in which poly(rA) exists as a single strand and a duplex respectively. UV spectroscopic studies and analysis of equilibrium binding data show that salt increases the cooperativity parameter but reduces the binding between the cationic dye and the negatively charged phosphate groups. The binding constant for the single strand-MB complex decreased from 1.15 x 10(5) M-1 to 7.62 x 10(3) M-1 while the cooperativity parameter increased from 9 to 71, when salt concentration was increased from 1 mM to 200 mM. At neutral pH, changes in the induced circular dichroism of MB-poly(rA) complex with ionic strength show predominance of electrostatic binding to the phosphate group externally on the poly(rA) chain; a partial intercalation between the adenine bases is also indicated. A red shift in the visible absorption band and the ICD profile of the double stranded poly (rA)-MB complex suggest an electronically coupled intercalation mode for the dye binding at pH 4.2.

Circular Dichroism