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M S Moore

Publications and source records attributed to M S Moore.

At least 37 records · Page 2Linked to original sources

A T42A Ran mutation: differential interactions with effectors and regulators, and defect in nuclear protein import.

Ran, the small, predominantly nuclear GTPase, has been implicated in the regulation of a variety of cellular processes including cell cycle progression, nuclear-cytoplasmic trafficking of RNA and protein, nuclear structure, and DNA synthesis. It is not known whether Ran functions directly in each process or whether many of its roles may be secondary to a direct role in only one, for example, nuclear protein import. To identify biochemical links between Ran and its functional target(s), we have generated and examined the properties of a putative Ran effector mutation, T42A-Ran. T42A-Ran binds guanine nucleotides as well as wild-type Ran and responds as well as wild-type Ran to GTP or GDP exchange stimulated by the Ran-specific guanine nucleotide exchange factor, RCC1. T42A-Ran.GDP also retains the ability to bind p10/NTF2, a component of the nuclear import pathway. In contrast to wild-type Ran, T42A-Ran.GTP binds very weakly or not detectably to three proposed Ran effectors, Ran-binding protein 1 (RanBP1), Ran-binding protein 2 (RanBP2, a nucleoporin), and karyopherin beta (a component of the nuclear protein import pathway), and is not stimulated to hydrolyze bound GTP by Ran GTPase-activating protein, RanGAP1. Also in contrast to wild-type Ran, T42A-Ran does not stimulate nuclear protein import in a digitonin permeabilized cell assay and also inhibits wild-type Ran function in this system. However, the T42A mutation does not block the docking of karyophilic substrates at the nuclear pore. These properties of T42A-Ran are consistent with its classification as an effector mutant and define the exposed region of Ran containing the mutation as a probable effector loop.

Amino Acid Substitution↗

Transcranial doppler sonography to monitor cerebral vasculitis.

We describe a patient with cerebral vasculitis treated with prednisone and cyclophosphamide and followed by serial transcranial Doppler sonography and arteriography. Proximal cerebral angiographic abnormalities correlated with transcranial Doppler abnormalities. The abnormalities gradually normalized with treatment and correlated with the findings of followup arteriography, which also showed improvement in the vascular morphology. Transcranial Doppler sonography is useful in following proximal cerebral vascular abnormalities in some cases of cerebral vasculitis.

Angiography↗

The peptide repeat domain of nucleoporin Nup98 functions as a docking site in transport across the nuclear pore complex.

We report the cDNA deduced primary structure of a wheat germ agglutinin-reactive nuclear pore complex (NPC) protein of rat. The protein, termed Nup98 (for nucleoporin of 98 kDa), contains numerous GLFG and FG repeats and some FXFG repeats and is thus a vertebrate member of a family of GLFG nucleoporins that were previously discovered in yeast. Immunoelectron microscopy showed Nup98 to be asymmetrically located at the nucleoplasmic side of the NPC. Nup98 functions as one of several docking site nucleoporins in a cytosolic docking activity-mediated binding of a model transport substrate. The docking site of Nup98 was mapped to its N-terminal half, which contains all of the peptide repeats. A recombinant segment of this region depleted the docking activity of cytosol. We suggest that the peptide repeat domain of Nup98, together with peptide repeat domains of other nucleoporins, forms an array of sites for mediated docking of transport substrate, and that bidirectional transport across the NPC proceeds by repeated docking and undocking reactions.

Amino Acid Sequence↗

Identification of a protein complex that is required for nuclear protein import and mediates docking of import substrate to distinct nucleoporins.

We have identified and characterized a 9S protein complex from a Xenopus ovary cytosolic subfraction (fraction A) that constitutes this fraction's activity in recognizing a model nuclear import substrate and docking it at the nuclear pore complex. Because of its function, the complex is termed karyopherin. The 54- and 56-kDa subunits of the complex are termed alpha 1 and alpha 2, respectively, and the 97-kDa subunit is termed beta. In an alternative approach we have identified karyopherin beta from a rat liver cytosolic subfraction A by using immobilized rat nucleoporin Nup98 in a single, affinity-based enrichment step. We have molecularly cloned and sequenced rat karyopherin beta. Comparison with protein sequence data banks showed no significant similarity to other known proteins. Using nitrocellulose-immobilized rat liver nuclear envelope proteins and nuclear import substrate as a ligand, we found Xenopus fraction A-dependent binding to at least three bona fide nucleoporins (Nup214, Nup153, and Nup98) and to a candidate nucleoporin with an estimated molecular mass of 270 kDa. We propose that these nucleoporins function as docking proteins for karyopherin-mediated binding of substrate in a nuclear import/export pathway across the nuclear pore complex.

Amino Acid Sequence↗

Separate domains of the Ran GTPase interact with different factors to regulate nuclear protein import and RNA processing.

The small Ras-related GTP binding and hydrolyzing protein Ran has been implicated in a variety of processes, including cell cycle progression, DNA synthesis, RNA processing, and nuclear-cytosolic trafficking of both RNA and proteins. Like other small GTPases, Ran appears to function as a switch: Ran-GTP and Ran-GDP levels are regulated both by guanine nucleotide exchange factors and GTPase activating proteins, and Ran-GTP and Ran-GDP interact differentially with one or more effectors. One such putative effector, Ran-binding protein 1 (RanBP1), interacts selectively with Ran-GTP. Ran proteins contain a diagnostic short, acidic, carboxyl-terminal domain, DEDDDL, which, at least in the case of human Ran, is required for its role in cell cycle regulation. We show here that this domain is required for the interaction between Ran and RanBP1 but not for the interaction between Ran and a Ran guanine nucleotide exchange factor or between Ran and a Ran GTPase activating protein. In addition, Ran lacking this carboxyl-terminal domain functions normally in an in vitro nuclear protein import assay. We also show that RanBP1 interacts with the mammalian homolog of yeast protein RNA1, a protein involved in RNA transport and processing. These results are consistent with the hypothesis that Ran functions directly in at least two pathways, one, dependent on RanBP1, that affects cell cycle progression and RNA export, and another, independent of RanBP1, that affects nuclear protein import.

Amino Acid Sequence↗

Purification of a Ran-interacting protein that is required for protein import into the nucleus.

Previously we reported the isolation of two cytosolic fractions (A and B) from Xenopus ovary that are required sequentially to support protein import into the nuclei of digitonin-permeabilized cells. Fraction A is required for recognition of the nuclear localization sequence and targeting to the nuclear envelope, whereas fraction B is required for the subsequent translocation of the bound substrate into the nucleus. The first protein required for fraction B activity to be purified was the small GTPase Ran (ras-related nuclear protein). Here we report the purification of the second (and final) protein required for fraction B activity. By SDS/PAGE, the purified protein appeared as a single band with an apparent molecular mass of 10 kDa, but the native protein fractionated upon gel filtration chromatography with an apparent size of 30 kDa. Peptide sequence analysis indicated that the purified protein was highly homologous to a previously identified human protein of unknown function called placental protein 15 (pp15) and to the predicted protein product of a yeast open reading frame from Saccharomyces cerevisiae.

Amino Acid Sequence↗

A G protein involved in nucleocytoplasmic transport: the role of Ran.

Ran is the only known member of the Ras superfamily of small GTP-binding proteins to be localized primarily inside the nucleus. Recently, Ran was unexpectedly identified as one of the soluble factors required for nuclear import. As this protein has also been implicated in RNA export, nuclear import and export may be more closely related than previously thought, with Ran playing a key role in each.

Animals↗

A technique for cannulating the Cisterna magna and sampling cerebrospinal fluid from socially housed birds.

The measurement of central levels of neurochemicals is an important approach to the understanding of the neurophysiological basis of behavior patterns in animals. Previous studies have utilized central sampling techniques developed for individually housed animals. The purpose of this study was to develop a cannulation technique and a method for sampling cerebrospinal fluid (CSF) from socially housed birds to facilitate the study of the neurophysiological basis of social behaviors. The cannulation technique involved the surgical implantation of a 22-gauge concentric guide cannula into the cisterna magna of 16-wk-old, feed-restricted male broiler breeders (n = 6). Individual-specific coordinates and optimum angle and depth of implantation of the cannula were determined in order to place the cannula correctly in the designated site. Once implanted, the guide cannula proved to be unobtrusive and secure and did not attract aggressive pecking from other birds in the pen. Two methods of CSF sampling were then examined. The first method required the use of a push-pull perfusion pump to withdraw CSF at a rate of 1 to 2 microL/min. The second method (passive), which did not use a pump, involved simply removing a "dummy" cannula from the guide cannula to release the CSF, which was then collected with a glass Hamilton syringe. Samples ranging from 100 to 500 microL were collected using the passive method. The combination of the cannulation technique described and the passive sampling method proved to be the most simple, efficient, and reliable method for measuring central levels of neurochemicals in socially housed broiler breeder males.

Animals↗

The GTP-binding protein Ran/TC4 is required for protein import into the nucleus.

Two cytosolic fractions (A and B) from Xenopus oocytes are sufficient to support protein import into the nuclei of digitonin-permeabilized cells. Fraction A recognizes the nuclear localization sequence (NLS) and binds the import substrate to the nuclear envelope, whereas fraction B mediates the subsequent passage of the bound substrate into the nucleus. Here we report that two interacting components are required for full fraction-B activity, purify one of these components to homogeneity, and show that it is the highly abundant GTP-binding protein Ran (Ras-related nuclear protein)/TC4.

Amino Acid Sequence↗

The two steps of nuclear import, targeting to the nuclear envelope and translocation through the nuclear pore, require different cytosolic factors.

We have isolated two cytosolic fractions from Xenopus oocytes that contain all of the activity necessary to support both steps of nuclear import in digitonin-permeabilized mammalian cells: binding at the nuclear envelope and translocation through the nuclear pore. The first cytosolic fraction (fraction A) interacts with an import-competent, but not a mutant, nuclear localization sequence-bearing conjugate and stimulates its accumulation at the nuclear envelope in an ATP-independent fashion. The second cytosolic fraction (fraction B) gives no discernible effect when added alone; but when added either together with fraction A, or after fraction A, stimulates the passage of the conjugate from the outer nuclear envelope to the interior of the nucleus in an ATP-dependent fashion.

Amino Acid Sequence↗

Helping patients travel by air.

Although safe and rapid, air travel may present problems for people with certain medical conditions. Most medical emergencies that occur during a flight are preventable by judicious screening and preparation. We provide guidelines for physicians who are consulted about the wisdom of undertaking a journey by air. Potential stresses before, during and after the flight are outlined, including decreased atmospheric pressure, low humidity, turbulence, inactivity and time changes. We recommend precautionary measures for passengers with certain medical conditions, such as recent myocardial infarction, pulmonary disorders, pneumothorax, cerebrovascular accidents and diabetes and for those who have recently had surgery. The policy regarding air travel for pregnant women varies with each airline, but for certain conditions associated with pregnancy supplemental oxygen should be ordered before the trip. The special equipment and care that most airlines offer to ill or disabled people are described.

Aircraft↗

Reconstitution of clathrin-coated pit budding from plasma membranes.

Receptor-mediated endocytosis begins with the binding of ligand to receptors in clathrin-coated pits followed by the budding of the pits away from the membrane. We have successfully reconstituted this sequence in vitro. Highly purified plasma membranes labeled with gold were obtained by incubating cells in the presence of anti-LDL receptor IgG-gold at 4 degrees C, attaching the labeled cells to a poly-L-lysine-coated substratum at 4 degrees C and then gently sonicating them to remove everything except the adherent membrane. Initially the gold label was clustered over flat, clathrin-coated pits. After these membranes were warmed to 37 degrees C for 5-10 min in the presence of buffer that contained cytosol extract, Ca2+, and ATP, the coated pits rounded up and budded from the membrane, leaving behind a membrane that was devoid of LDL gold. Simultaneous with the loss of the ligand, the clathrin triskelion and the AP-2 subunits of the coated pit were also lost. These results suggest that the budding of a coated pit to form a coated vesicle occurs in two steps: (a) the spontaneous rounding of the flat lattice into a highly invaginated coated pit at 37 degrees C; (b) the ATP, 150 microM Ca2+, and cytosolic factors(s) dependent fusion of the adjoining membrane segments at the neck of the invaginated pit.

Adenine Nucleotides↗

Coat proteins isolated from clathrin coated vesicles can assemble into coated pits.

Isolated human fibroblast plasma membranes that were attached by their extracellular surface to a solid substratum contained numerous clathrin coated pits that could be removed with a high pH buffer (Moore, M.S., D.T. Mahaffey, F.M. Brodsky, and R.G.W. Anderson. 1987. Science [Wash. DC]. 236:558-563). When these membranes were incubated with coat proteins extracted from purified bovine coated vesicles, new coated pits formed that were indistinguishable from native coated pits. Assembly was dependent on the concentration of coat protein with half maximal assembly occurring at 7 micrograms/ml. Assembly was only slightly affected by the presence of divalent cations. Whereas normal appearing lattices formed in a low ionic strength buffer, when assembly was carried out in a low pH buffer, few coated pits were evident but numerous small clathrin cages decorated the membrane. Coated pits did not form randomly on the surface; instead, they assembled at differentiated regions of membrane that could be distinguished in carbon/platinum replicas of frozen and etched membranes by the presence of numerous particles clustered into patches the size and shape of a coated pit.

Cell Membrane↗

Towards an in vitro system for studying clathrin-coated pit function.

To elucidate the molecular basis of coated pit function, we are developing a method for reconstituting the endocytic cycle in a cell-free system. Using purified membranes attached to a solid substratum, we have successfully reconstituted coated pit assembly. We now show that the endogenous coated pits on these membranes spontaneously round up and leave the membrane at 37 degrees C. As measured by radioimmunoassay, clathrin loss is both pH- and temperature-dependent. The loss is also inhibited by pretreating the membranes with apyrase at 37 degrees C, which suggests that nucleotide triphosphates are required.

Cell Line, Transformed↗