Uncoordinated expression of alpha-granule proteins in human megakaryocytes.
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Biomedical subjects
Publications and source records attributed to E M Cramer.
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The origin of platelet alpha-granule fibrinogen (Fg), whether from endogeneous synthesis or exogeneous derivation, remains unknown. Although Fg biosynthesis by megakaryocytes (MK) has been suggested, recent studies have demonstrated that certain alpha-granular proteins originate primarily from plasma. To study the origin of alpha-granule Fg, platelet-associated Fg was measured by ELISA and Western blotting, and localized by immunofluorescence and immunoelectron microscopy in a patient with symptomatic congenital afibrinogenemia before and after replacement therapy with cryoprecipitate. alpha-Granule Fg was detected in the majority of platelets as early as 24 h postinfusion, suggesting that direct platelet uptake was occurring. Platelet Fg reached a maximum value of 42.5% of normal values at 3 d postinfusion and was localized in the alpha-granules, while plasma levels followed a typical half-life profile. Significant alpha-granule Fg was still detectable at 13 d postinfusion, with plasma Fg virtually absent. Studies on cultured CFU-MKs from the patient also confirmed that MKs can incorporate exogeneous Fg into alpha-granules. These results indicate that platelet alpha-granule Fg can be derived from the circulating plasma pool and that Fg uptake can occur in both platelets and MKs.
The authors have localized elastase in human blood and bone marrow neutrophils by immunoelectron microscopy using a monoclonal anti-human elastase antibody (NP 57) and compared its distribution with myeloperoxidase (MPO) and lactoferrin (LF), which mark primary and secondary neutrophil granule, respectively. Human bone marrow and blood polymorphonuclear leukocytes (PMN), either unstimulated or after phagocytosis of latex microbeads, were fixed in 4% paraformaldehyde. Ultrathin frozen sections were immunolabeled with NP 57, followed by an immunogold probe. In bone marrow granulocyte precursors elastase appeared simultaneously in the immature first granules of myeloblasts with MPO. As these granules became denser with maturation, labeling for both enzymes became weaker and sometimes negative (possibly due to masking of immunoreactivity). The ellipsoidal primary granules were strongly labeled by NP57. LF positive granules appeared later, at the myelocyte stage, and contained neither MPO nor elastase. In mature neutrophils, immunolabeling for elastase was found together with MPO in the large electron-dense primary granules and in a different granule population from the LF-positive secondary granules. Double labeling with two different-sized gold particles was used to compare the kinetics of degranulation of secondary and primary granules. The observation and the analysis of single phagosome content was made possible by this new technique. In conclusion, immunoelectron microscopy was used to show elastase in the primary granules of neutrophils, where it appears simultaneously with MPO. This technique has also allowed comparison of the kinetics of degranulation of both types of granules, and could be applied to different experimental and pathologic conditions.
The localization of three known alpha-granule proteins, thrombospondin (TSP), von Willebrand factor (vWF), and fibrinogen (Fg) has been studied in human megakaryocytes (MK) by immunofluorescence and immunoelectron microscopy. For this study, highly purified populations of MK were prepared from human bone marrow either by counterflow centrifugal elutriation or by cell culture from normal subjects and from two patients with megakaryoblastic leukemia. In normal bone marrow immature MK, TSP, and vWF were observed in the Golgi-associated vesicles and in small immature alpha-granules; in mature MK, they were found in the matrix of the mature large alpha-granules. Surprisingly, Fg was detected neither in the Golgi area, nor in the small precursors of alpha-granules; it was only found in the mature alpha-granules but this labeling was generally weaker than in blood platelets. In order to confirm these differences between the expression of Fg and vWF or TSP additional studies were performed on cultured maturing MK: immunofluorescent and ultrastructural immunogold labeling confirmed that vWF appeared early in the maturation while the same immature MK were negative for Fg. In the late maturation stage, the three proteins were detected in the alpha-granules. In order to know whether Fg was lately synthesized or endocytosed from the outside medium, normal MK were grown in the presence of either normal or afibrinogenemic plasma, and normal serum. Fg was detected only in the alpha-granules of MK grown in normal plasma. Similar results were observed with malignant MK, whose maturation was independent of the culture conditions. In conclusion, this study brings immunocytochemical evidence that vWF and TSP are synthesized by immature MK, whereas Fg appears later in the MK alpha-granules and its expression is dependent of the presence of an exogenous Fg source.
We have used both the enzyme cytochemical method with lead nitrate as a capture agent and an immunological method at the electron microscope level to localize plasma membrane 5'-nucleotidase in rat peritoneal resident macrophages during the initial interactions of latex beads or heat-killed Escherichia coli with the cell during phagocytosis. In macrophages at rest, cytochemical reaction product was evenly distributed along the external surface of the plasma membrane. However, when the cells were phagocytosing latex beads or bacteria, reaction product covered the entire surface of the adhering particles. To determine whether the apparent redistribution of 5'-nucleotidase onto the adhering particle was fact or artifact, we localized 5'-nucleotidase using a monoclonal antibody and an immunogold labelling technique. In macrophages binding or beginning to ingest bacteria, gold particles were distributed along the plasma membrane, except at the sites of cell-bacterium internalization. More significantly, the adhering bacteria were free of gold particles and therefore had no 5'-nucleotidase on their surfaces. Latex beads proved to be unsuitable as a test particle because the gold particles stuck to them non-specifically. We conclude that the artifactual redistribution of lead-phosphate reaction product is a major drawback of enzyme cytochemical methods when used on cell surfaces and that the immunogold labelling technique is more reliable.
In this multivariate analysis of the irritable bowel syndrome (IBS) we describe the symptomatic and psychologic features of the condition and their possible contributions to health care seeking. We studied 72 IBS patients, 82 persons with IBS who had not sought medical treatment, and 84 normal subjects. All subjects received complete medical evaluation, diary card assessment of abdominal pain and stool habit, and standard psychologic tests of pain, personality, mood, stressful life events, illness behavior, and social support. Pain and diarrhea were the most important symptoms associated with patient status. When controlling for these symptoms we found that (a) IBS patients have a higher proportion of abnormal personality patterns, greater illness behaviors, and lower positive stressful life event scores than IBS nonpatients (p less than 0.001) and normals (p less than 0.001); (b) IBS nonpatients, although psychologically intermediate between patients and normals, are not different from normals (p less than 0.21); and (c) IBS nonpatients have higher coping capabilities, experience illness as less disruptive to life, and tend to exhibit less psychologic denial than patients. These factors may contribute to "wellness behaviors" among people with chronic bowel symptoms. We conclude that the psychologic factors previously attributed to the IBS are associated with patient status rather than to the disorder per se. These factors may interact with physiologic disturbances in the bowel to determine how the illness is experienced and acted upon.
The appearance of von Willebrand factor (vWF) in bone marrow megakaryocytes was studied by standard electron microscopy (EM) and immuno-EM using an original purification technique. Eighty percent pure megakaryocytes were isolated from porcine rib bone marrow using Percoll gradients followed by counterflow centrifugation. Activation was prevented by prostacyclin and prefixation with low concentrations of glutaraldehyde. In early megakaryoblasts, standard EM revealed the presence of tubular structures in the small vesicles located in the Golgi area, in the small immature alpha-granules and in the rare mature alpha-granules. Immunolabeling for vWF was simultaneously observed in small vesicles and small alpha-granules, mainly in the Golgi zone. In mature megakaryocytes, standard EM showed that tubular structures were numerous, regularly spaced, and aligned in parallel. Immunolabeling for vWF was intense, restricted to the alpha-granules, and distributed in a similar manner to porcine platelets. Gold particles were located eccentrically at one pole of the alpha-granule, labeling only its periphery or outlining one side of an elongated granule. Tubule profiles could be seen underlying the immunolabeling and were usually located at one side of the granule. In conclusion, this study demonstrates the presence of tubular structures in megakaryocyte alpha-granules, their association with vWF, and the appearance of both in the Golgi-associated vesicles.
The subcellular localization of lysozyme (LZ) has been investigated by immunogold electron microscopic cytochemistry in human neutrophils from bone marrow and blood. Intact cells or subcellular granule fractions were fixed in glutaraldehyde and embedded in glycol methacrylate. Thin sections were incubated with monospecific antibodies followed by antiglobulins coupled to colloidal gold. LZ was detected within both elliptical and spherical primary granules in bone marrow neutrophil promyelocytes. In myelocytes and more mature neutrophils immunolabeling for LZ was observed within the primary granules, although fainter than in promyelocytes. However secondary granules from bone marrow and blood neutrophils were not consistently labeled by gold particles. Immunogold staining was then performed on sections of subcellular fractions of secondary granules: immunogold staining of lactoferrin demonstrated 95% of secondary granules in this fraction. Labeling for LZ of this granule fraction was intense, and except that the few primary granules were also labeled, looked similar to that of lactoferrin. In conclusion, this study is the first to utilize electron microscopic cytochemistry to show that LZ is present in both the primary and secondary granules of blood and bone marrow neutrophils. This technique has the advantage of allowing LZ distribution to be studied within a single organelle and/or in relation to the rest of the cell structure.
We examined retrospectively premorbid factors that might relate to the development of irritable bowel syndrome (IBS). We administered a semistructural interview to adult IBS patients, adults with symptoms of IBS who had not visited a doctor (nonpatients), and asymptomatic normals. Patients with IBS differed from nonpatients by reporting more severe bowel problems, more frequent doctor visits in childhood, and more pain associated with current bowel symptoms. These factors may contribute to the tendency of people with bowel symptoms to seek medical care. More patients, and in most cases nonpatients with IBS, reported poorer general health and headaches, stomachaches, and bowel complaints during childhood. They also showed evidence for greater parental attention to illness with more frequent school absences and doctor visits than normal subjects. Loss and separation during childhood, and in the current family, and conflicted or dependent maternal relationships were also more frequently reported among patients and nonpatients. These factors may contribute to the development of IBS.
The electron microscopic localization of von Willebrand factor (vWF) was studied in platelets from normal and von Willebrand disease (vWD) pigs. In normal pig platelets, immunolabeling for vWF was far more intense and extensive than in human platelets and was either localized at one pole of the alpha-granule or all along its periphery or long axis. As in human platelets, this immunolabeling coincided with the presence of tubules about 200 nm in diameter. These structures were more numerous than in human platelets, with up to 30 tubules per alpha-granule. They were easily identified either in transverse sections, usually grouped in a less electron-dense part of the matrix at one pole of the alpha-granule, or in longitudinal sections parallel to the long axis of the elongated granules, or coiled around the alpha-granule core. They closely resemble those structures found in Weibel-Palade bodies. In platelets from pigs with severe vWD, these structures were absent, as was the immunolabeling for vWF; however, cytoplasmic microtubules were normally present in these platelets. Thus, the granule-associated tubules can be distinguished from the microtubules, which are larger in diameter (250 nm), are present in both normal and vWD platelets, and do not stain for vWF. These results strongly suggest that the tubular structures present in the alpha-granules of normal porcine platelets correspond to the vWF molecule itself.
Immunogold staining was used to study the ultrastructural distribution of von Willebrand factor (vWF) in unstimulated platelets. vWF was detected in the alpha-granules with a specific eccentric distribution pattern opposite the nucleoids. Similar findings were obtained with a polyclonal antibody or a pool of monoclonal antibodies to human vWF. This labeling coincided with the presence of tubular structures located at the periphery of the alpha-granules. These structures were better visualized on platelets treated for standard electron microscopy: they formed a group of one to four tubules ranging from 200 A to 250 A in diameter. They closely resembled the internal tubular structures found in Weibel-Palade bodies, which are the storage organelles of vWF in endothelial cells.
An immunogold method was used for investigating the subcellular localization of von Willebrand factor (vWF) and fibrinogen (Fg) in platelets and cultured megakaryocytes from normal subjects and from three patients with the gray platelet syndrome (GPS), a rare congenital disorder characterized by the absence of alpha-granules. In normal platelets at rest, vWF was detected exclusively in alpha-granules, with a characteristic distribution: gold particles were localized at one pole of each labeled granule, outlining the inner face of its membrane. vWF was distributed similarly in the alpha-granules of megakaryocytes at day 12 of culture, where it was also found in small vesicles near the Golgi complex. In contrast, Fg was observed in the whole matrix of all platelet alpha-granules but not in the nucleoids. In platelets from three patients with GPS, vWF and Fg were distributed homogeneously in the rare normal alpha-granules, which could be recognized by their size, and also in small granules identified as abnormal alpha-granules, which were similar in size to the small, possibly immature granules present in normal megakaryocytes. In addition, in some unstimulated platelets, Fg labeling was associated with dense material in the lumen of the surface-connected canalicular system (SCCS). At day 12 of culture, megakaryocytes from the patients with GPS contained some small alpha-granules labeled for Fg and vWF identical to those found in mature platelets. The majority of alpha-granules of normal size appeared partially or completely empty. Thus, we conclude that vWF is distributed differently from Fg in normal alpha-granules, and that unstimulated platelets from patients with GPS contain Fg and vWF in a population of small granules identifiable as abnormal alpha-granules only by immunoelectron microscopy. In addition, the presence of Fg in the SCCS of gray platelets suggests a spontaneous release of the alpha-granule content.
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