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J E Haley

Publications and source records attributed to J E Haley.

At least 37 records · Page 2Linked to original sources

Two-dimensional electrophoresis of proteins from cultured human retinal-pigment epithelial cells: internal references, cataloging, and glycoproteins.

Two-dimensional gel electrophoresis of acidic and basic [35S]methionine-labeled polypeptides derived from primary cultures of human retinal-pigment epithelial cells revealed about 850 proteins. By co-electrophoresis with highly purified, evolutionally conserved proteins, alpha-actinin, calmodulin, cytosol retinal-binding protein, alpha- and beta-tubulin, and vinculin (mass: 130 000 Da) were tentatively identified in the fluorograms. Quantification of greater than 100 of the excised radioactive spots by liquid scintillation counting revealed an estimated overall gel/gel and donor/donor variation of 40% (SEM, 21%), the latter for data on three to four donors 57 to 81 years old. Therefore, for a difference from normal to be significant (p less than or equal to 0.01), it would, on average, have to exceed 88% of the control mean for that protein. Putative glycoproteins were independently radiolabeled, with tritiated sugars as precursors. Glucosamine was incorporated most rapidly and with the highest specific activity. It labeled about 170 polypeptides. Fucose and N-acetylmannosamine, respectively, labeled 74 and 27 polypeptides. The glycoprotein label was maximal in about 16 very acidic proteins with apparent molecular masses between 50 000 and 150 000 Da. Parallel use of both a sugar and an amino acid label facilitates identification of proteins in two-dimensional gels.

Acetylglucosamine↗

Axon-myelin transfer of glycerol-labeled lipids and inorganic phosphate during axonal transport.

Axon-to-myelin transfer of lipids precursors have been studied in the rabbit optic system by intraocular injection of [32P]orthophosphate, [14C]glycerol and [3H]glycerol. Choline and ethanolamine phosphoglycerides and myelin showed increasing [32P]-radioactivity between 7 and 21 days following injection, while [3H]- and [14C]-radioactivities remained relative constant. The latter radioactivities decreased, however, in all the axon- and axolemma-enriched fractions during the same period. These findings supported the concept that a portion of substances undergoing axonal transport enters the pool of myelin lipids by two mechanisms: transcellular transfer of intact lipid and axon-myelin transfer of precursors which are re-utilized for lipid biosynthesis by myelin-localized enzymes. The present study shows that inorganic phosphate, possibly generated by catabolic activity within the axon, is able to enter myelin and participate in the re-utilization mechanism as previously described for serine, choline and acyl chains. The relative invariance of the 3H:14C ratio suggested that the majority of glycerol is not re-utilized in this manner but probably enters myelin through transfer of intact lipid. These and earlier results suggest a possible form of metabolic dependence of myelin on tropine substances from the axon.

Animals↗

Proteins from human retinal pigment epithelial cells: evidence that a major protein is actin.

Two-dimensional gel electrophoresis coupled to fluorography was used to obtain the major 35S-methionine labeled protein patterns of cultured human retinal pigment epithelial cells (RPE) and fibroblasts. Comparisons of these profiles showed that: a) primary and subcultures of RPE were quite similar, each showing about 200 different proteins, b) the RPE protein patterns contained at least eight major acidic proteins (from 31 to 96 kilodaltons) not readily seen in fibroblasts; c) the fibroblast pattern showed three well-labeled, very acidic proteins, one of which (58 kilodaltons) appeared to be unique to fibroblasts; and d) a major complex of acidic protein of 43 kilodaltons with isoelectric points of 5.6 to 5.9 was a common protein in RPE and fibroblasts. These latter macromolecules were found to coelectrophorese with purified chicken muscle actin. Ultrastructural studies of cultured RPE supported the presence of actin microfilaments that were demonstrated specifically by labeling with fluorescent phallotoxin.

Actins↗

Study of myelin purity in relation to axonal contaminants.

Axonal remnants are considered a probable source of contamination of isolated myelin in view of the relatively tight axon-glial intercellular junction. Using the rabbit optic system to label specifically axonal components, we have found the levels of such contaminants to depend on the myelin isolation procedure, the tissue source, and the nature of the contaminant. A procedure employing repetitive treatments with EGTA was found to be highly effective in removing proline-labeled axonal proteins, the estimated upper limit of such contamination being approximately 0.6-1.2% of the myelin protein. The standard isolation procedure of Norton and Poduslo, supplemented with an additional discontinuous gradient step, proved equally effective in removing rapidly transported proteins from myelin isolated from the superior colliculus or lateral geniculate body. When the optic tract was the source, however, the EGTA procedure proved more effective in removing both rapidly and slowly transported proteins. Axonal gangliosides labeled with N-[3H] acetylmannosamine were efficiently removed by both procedures, adding support to the proposition that gangliosides detected in isolated myelin are intrinsic to that membrane.

Animals↗

Extra-axonal diffusion in the rabbit optic system: a caution in axonal transport studies.

The hazards of using optic nerve (as opposed to optic tract and more distal components of the optic system) to study axonal transport were highlighted by observing the fate of [14C]serine and [3H]glycerol injected into the rabbit eye. Despite prior blockage of axonal transport with colchicine, appreciable radioactivity rapidly appeared in the optic nerve adjacent to the injected eye. Radioactivity decreased exponentially along the entire optic chiasm. Counts were distributed among the lipid, protein, and acid-soluble fractions. Separation of optic nerve lipids revealed appreciable labeling of most lipid classes including those characteristic of myelin; a markedly different labeling pattern was observed for axonally transported lipids. The data are consistent with a mechanism involving extra-axonal diffusion of precursor into the surrounding glia followed by incorporation into lipids and proteins of those cells and ultimately myelin. The phenomenon is discussed in relation to possible errors that were made in interpreting earlier experiments.

Animals↗

Transplantation of murine bone marrow without prior host irradiation.

The experiments presented test the hypothesis that pluripotential stem cells (assayed in the mouse as CFU-S) are normally not in cycle and that the failure of normal marrow transfusions to take in normal recipients is due to the absence of a stimulus to turn CFU-S into cycle. Following marrow transfusion from male donors into female isogeneic recipients, spleen, liver, and various parts of the skeleton were shielded to protect transfused donor cells from lethal doses of radiation gives to the rest of the body. Percentages of hemopoietic donor and host cells were subsequently determined by karyotyping C banded marrow and spleen metaphases and identifying of Y chromosome. The results support the notion that the failure of normal marrow to take in normal recipients is not due to inadequate numbers of transfused cells. Permanent colonization by donor cells, however, requires not only triggering CFU-S into cycle, but also emptying of 'niches' normally occupied by endogenous CFU-S. Partial body radiation meets both requirements. In addition, the results indicate that recently arrived donor cells, protected in the shielded portion of the body, seed more readily into the irradiated areas of the skeleton than do similarly protected host cells.

Animals↗

Correlation between acidic phospholipids and serotonin and between lysolecithin and dopamine in ganglia of the marine mussel, Mytilus edulis.

These studies have demonstrated a positive correlation between the acidic phospholipids and the serotonin content and between the lysolecithin and the dopamine content in the cerebral, pedal and visceral ganglia of Mytilus edulis. These relationships were further supported by experiments utilizing 6-hydroxydopamine and 5,6-dihydroxytryptamine.

5,6-Dihydroxytryptamine↗

Marrow regeneration after mechanical depletion.

The origin of marrow regeneration after mechanical depletion was reinvestigated in mouse chimeras. The results were compatible with the local origin of stem cells from remnants of incompletely removed marrow, but not with their origin from a common precursor of both bone and hemopoietic cell lines. In transplanted femurs depleted by a modified technique of in vivo evacuation of marrow, hemopoietic regeneration failed to occur. The presence of hemopoietic stem cells in the Haversian canals was thus excluded. The demonstration of ample hemopoiesis with minimal bone formation in nondepleted controls in which bone marrow initially became necrotic provided new evidence that osteogenesis was not a prerequisite of hemopoietic regeneration.

Animals↗

Hematopoietic differentiative properties of murine spleen implanted in the omenta of irradiated and nonirradiated hosts.

Whole body irradiation of the recipients of syngeneic splenic implants into the omentum greatly enchances hematopoiesis and permits survial of and repopulation by stem cells of donor origin. Donor hematopioetic stem cells do not survive in spleen implants of the nonirradiated host; irradiated hosts were therfore used in the bulk of the experiments. Differentiation in the implants of splenic fragments is predominantly erythrocytic at 10 days and shifts to predominantly granulocytic differentiation at 21 days. Suspensions of spleen cells injected into the ometntum are predominantly granulocytopioetic at 10 days. The differntiation in fragments of spleen depleted of stem cells by irradtion, seeded with bone marrow cells and implanted into the omentum results in mixed erythocytic and granulocytic hematopoiesis, with granulocytic predominance. Lymphocytic cells appeared late in the implants of irrdiated recipients even at a time of prolific lymphocytopoiesis in the host's own spleens. The cause of the delay in the implants is not clear. The data are consisent with the concept that differntiation of hematopioetic stem cells is influenced by the stromal cells of the parent organ. The erythrocytic inductive capacity of the stromal cells may be lost by mechanical disruption or modified by irraidation or a prolonged period of implantation.

Animals↗