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Nuclear domains involved in RNA synthesis, RNA processing, and replication.

Two main principles of nuclear organization have been outlined on the basis of contributions by many research groups in recent years. The first principle is that interphase chromosomes occupy discrete territories in the nucleus, with no intermingling of the DNA from different chromosomes. Within a chromosome territory the DNA is organized in chromatin fibers at several levels of folding, that meander through the territory. Transcription and replication take place at the surface of these higher order chromatin fibers, probably on locally unfolded DNA templates. The second principle is that different types of nuclear domains are associated with several specific gene loci. This holds for clusters of interchromatin granules, coiled bodies, RNA 3'-cleavage factor-containing nuclear bodies (cleavage bodies) and probably PML-containing nuclear bodies. These domains may play an important role in the spatial arrangement of genes in the interphase nucleus. Despite these new insights, our knowledge of the function of many nuclear compartments and the molecular interactions responsible for the dynamic organization of a compartmentalized nucleus is still in its infancy.

Animals↗

[Innate immune recognition of viral infection].

Toll-like receptors (TLRs) are key molecules of the innate immune systems, which detect conserved structures found in a broad range of pathogens and triggers innate immune responses. A subset of TLRs recognize viral components and induce antiviral responses by producing type I interferons. Whereas TLR2 and TLR4 recognize viral components at the cell surface, TLR3, TLR7, TLR8 and TLR9 are exclusively expressed in endosomal compartments. After phagocytes internalize viruses or virus-infected apoptotic cells, viral nucleic acids are released in phagolysosomes and are recognized by these TLRs. Recent reports have shown that hosts also have a mechanism to detect replicating viruses in the cytoplasm in a TLR-independent manner. In this review, we focus on the viral recognition by innate immunity and the signaling pathways.

Animals↗

Minichromosome maintenance proteins as biological markers of dysplasia and malignancy.

Dysplasia, an intermediate stage in the progression from normal tissue to neoplasia, is defined morphologically by a loss of normal orientation between epithelial cells, with changes in cellular and nuclear shape and size. However, little is known about the functional properties of dysplastic cells, including their replicative state, largely due to a lack of available biological markers. We have used novel antibodies against minichromosome maintenance (MCM) proteins to examine the proliferative status of a range of histological lesions and to characterize dysplastic cells in functional terms. Immunoperoxidase staining was used to localize the MCM proteins, components of the prereplicative complex that is essential for initiating eukaryotic DNA replication. These proteins are down-regulated in cells undergoing differentiation or quiescence and, thus, serve as specific markers for proliferating cells. In normal and some reactive tissues, MCM expression was present only in restricted proliferative compartments, consistent with our published findings in the uterine cervix. In dysplastic and malignant tissues, in contrast, MCM proteins were expressed in the majority of cells, extending to surface layers of dysplastic stratified epithelia. In carcinomas, the frequency of expression of MCM proteins showed an inverse correlation with the degree of tumor differentiation. Thus, we suggest that dysplastic cells may be characterized in functional terms as remaining in cell cycle, due to deregulation of normal controls over cell proliferation. Antibodies against MCM proteins have potential clinical applications, for example, in the assessment of tumor prognosis in histological sections and the identification of proliferating cells in clinical samples using biochemical or cytological assays.

Biomarkers, Tumor↗

[Detection of hepatic progenitor cells in patients with severe hepatitis and their distribution].

OBJECTIVES: To identify hepatic progenitor cells (HPCs) in patients with severe hepatitis (SH) by detecting their markers and investigate the features of their distribution and location. METHODS: Liver tissues taken from 59 SH patients were tested for the receptor of stem cell factor (c-kit), pi-class glutathione S-transferase (GST-pi), cluster of differentiation 34 (CD34), cytokeratin 19 (CK19), cytokeratin 18 (CK18) and alpha fetoprotein (AFP) by immunohistochemistry (IHC). Meanwhile, 58 patients with acute or chronic hepatitis were also detected to act as controls. RESULTS: Hepatic progenitor cells could be seen in SH patients. Most of them existed as ductular cells that had been called "typical ductular proliferation (ADP)" or "typical ductular reaction" in previous research. These ductular cells were mainly located at the portal areas, fibro septa, periportal parenchyma and the border of the pseudolobuli and inflammatory foci. Further, c-kit, GST-pi, CK19 and CK18, but not CD34 and AFP could be detected in these cells. Another kind of HPC was the small hepatocyte-like cell (SHLC), which could express c-kit, GST-pi, and CK18, but not CK19, CD34 and AFP. The semi-quantitative analysis showed that the scope of ADP in SH patients was significantly larger than that in acute and chronic hepatitis patients (chi2= 63.62, P<0.05), and the scope of ADP in subacute severe hepatitis and chronic severe hepatitis patients was also significantly larger than that in acute severe hepatitis patients. CONCLUSION: In the course of regeneration of viral hepatitis, different types of pathology have different features. In acute and chronic hepatitis (G1-2), the regeneration is mainly owing to the proliferation of mature hepatocytes, and in chronic hepatitis (G3-4), there is the participation of HPCs, although they are limited. In severe hepatitis, however, since the replicative capacity of normal hepatocytes is impaired or prohibited, liver regenerates and restores mainly by the means of hepatic stem cells activation and proliferation. But the hepatic stem cells don't differentiate into their mature functional compartments directly at all. There are several intermediary or transition populations. In human severe hepatitis, they are mainly ductular cells, and parts of them are small hepatocyte-like cells.

Antigens, CD34↗

Biological properties of a human urinary protein fraction with burst promoting activity.

Urinary proteins from patients with iron deficiency anemia and acquired aplastic anemia were fractionated by chromatography on QAE-Sephadex A-50 and Sephadex G-25. Fractions containing erythroid burst promoting activity (code named regulatory protein RP) were separated from erythropoietin. Mouse bone marrow cells were preincubated for one day in suspension culture, in the presence or absence of RP, transferred to a methylcellulose based system and incubated for six more days with erythropoietin (EPO). It was found that the presence of RP in the preincubation medium had a 2 to 4 fold enhancing effect on subsequent erythroid burst colony formation. However, when RP was added to methylcellulose based cultures simultaneously with EPO, the erythroid burst response was reduced or abolished. Addition of RP to marrow cell suspension cultures increased the number of self replicating, pluripotent (erythroid/granuloid, E/G ratio = 3) spleen colony forming units (CFU-S) found at the end of 2 days incubation 3-5 fold over their number in control cultures incubated without the factor. In marked contrast to this, addition of EPO to the cultures caused an increased persistence of CFU-S with a predominantly erythroid commitment (E/G ratio = 19) and a low self replicating ability, as measured by retransplantation of spleen cells into secondary recipients. These observations are compatible with the presence in RP of a factor, or factors, capable of maintaining the size of certain early precursor cell compartments.

Anemia, Aplastic↗

Induction of the tumor-suppressor p16(INK4a) within regenerative epithelial crypts in ulcerative colitis.

p16(INK4a) is a major tumor-suppressor protein, but its regulation and settings of fuction remain poorly understood. To explore the notion that p16 is induced in vivo in response to replicative stress, we examined p16 expression in tissues from human ulcerative colitis (UC; n = 25) and normal controls (n = 20). p16 was expressed strongly in UC-associated neoplasms (n = 17), as seen previously in sporadic colonic neoplasms. In non-neoplastic UC epithelium, p16 was expressed in 33% of crypts (the proliferative compartment) compared to < 1% of normal controls. p16 expression did not correlate with degree of inflammation but did correlate with the degree of crypt architecture distortion (P = .002)-a reflection of epithelial regeneration. In coimmunofluorescence studies with Ki67, p16 expression was associated with cell cycle arrest (P < .001). Both UC and normal crypts displayed evidence for the activation of the DNA damage checkpoint pathway, and p16 was induced in primary cultures of normal epithelial cells by ionizing irradiation (IR). However, induction by IR displayed delayed kinetics, implying that p16 is not an immediate target of the checkpoint pathway. These findings support a model in which p16 is induced as an "emergency brake" in cells experiencing sustained replicative stress.

Colitis, Ulcerative↗

Effects of packaging, equipment, and storage time on sensory characteristics of beef stew.

OBJECTIVE: To determine the effects of form, heating equipment, and storage time on sensory characteristics of beef stew packaged in a plastic bag currently marketed for foodservice systems. DESIGN: A factorial design was used to consider differences in food quality related to (a) form for reheating, including bulk in bag, bulk out of bag, and portioned; (b) reheating in a compartment steamer; microwave, infrared, and convection ovens; and steam kettle; and (c) storage of 7 and 28 days. Food-quality characteristics were evaluated by a nine-member trained panel using Quantitative Descriptive Analysis in three replications of study. STATISTICAL ANALYSES PERFORMED: For each component characteristic and for overall quality of the components, analysis of variance was used to show significant differences related to equipment, form, and storage time. Tukey's test was used to show specific differences within the factors in the analysis. RESULTS: The majority of sample variations were not significantly different in overall quality from the fresh sample. For most of the 31 characteristics evaluated, the stew was scored significantly higher (P < .05) when heated in bulk in the bag or portioned. Stew reheated in the steam kettle was scored lower than stew heated in the other equipment options. Storage for up to 28 days had minimal effect on component quality. APPLICATIONS/CONCLUSIONS: Beef stew may be cooked, placed in a plastic bag, and stored at refrigerator temperature for up to 28 days with good maintenance of sensory quality. Reheating stew in bulk in the bag or portioned in equipment other than a steam kettle results in product quality advantages comparing with reheating stew in bulk out of a bag in a steam kettle.

Adult↗

Circadian variations of epithelial cell proliferation in human rectal crypts.

BACKGROUND/AIMS: Evidence (almost exclusively from animal studies) suggests that proliferation within the colorectal mucosa undergoes circadian variations. The epithelial cells that line the human colorectal crypt occupy definite positions along the longitudinal axis according to their proliferative potential and degree of differentiation. Thus, circadian rhythmicity was investigated in humans to locate the areas along the longitudinal crypt axis in which diurnal fluctuation might occur. METHODS: Rectal mucosal biopsy specimens were obtained every 4 hours for a 24-hour span from each of 23 subjects (8 healthy volunteers and 15 with histories of sporadic adenomatous polyps). [3H]thymidine histoautoradiography was used to determine ratios of S-phase to total cells (total labeling index) in the crypt. Glands were also divided into 5 equal compartments from base (compartment 1) to mouth (compartment 5), and labeling indices were calculated for each. RESULTS: Important temporal variations were confined to compartment 2 (F = 5.15, P = 0.0003) and total labeling indices (F = 3.57, P = 0.005). Despite individual variations, proliferation was generally higher at night and lower during afternoon. Upper-crypt proliferative rates (compartments 4 and 5) remained decidedly stable (F = 0.5, P = NS). Normal subjects and patients with polyps displayed similar circadian behaviors. CONCLUSIONS: Circadian fluctuation in proliferation is confined to the area of the crypt normally associated with replication. Upper-crypt indices, including those that were higher than normal (a colon-cancer risk marker) are stable over 24 hours. These findings should be useful in planning chemoprevention trials and chemotherapeutic regimens.

Adult↗

Defective hepatic regeneration after partial hepatectomy in leptin-deficient mice is not rescued by exogenous leptin.

Liver regeneration after partial hepatectomy (PH) is impaired in leptin-deficient ob/ob mice. Here, we tested whether exogenous leptin and/or correction of the obese phenotype (by food restriction or long-term leptin administration) would rescue hepatocyte proliferation and whether the hepatic progenitor cell compartment was activated in leptin-deficient ob/ob livers after PH. Because of the high mortality following 70% PH to ob/ob mice, we performed a less extensive (55%) resection. Compared to lean mice, liver regeneration after 55% PH was deeply impaired and delayed in ob/ob mice. Administration of exogenous leptin to ob/ob mice at doses that restored circulating leptin levels during the surgery and postsurgery period or for 3 weeks prior to the surgical procedure did not rescue defective liver regeneration. Moreover, correction of obesity, metabolic syndrome and hepatic steatosis by prolonged administration of leptin or food restriction (with or without leptin replacement at the time of PH) did not improve liver regeneration in ob/ob mice. The hepatic progenitor cell compartment was increased in ob/ob mice. However, after PH, the number of progenitor cells decreased and signs of proliferation were absent from this cell compartment. In this study, we have conclusively shown that neither leptin replacement nor amelioration of the metabolic syndrome, obese phenotype and hepatic steatosis, with or without restitution of normal circulating levels of leptin, was able to restore replicative competence to ob/ob livers after PH. Thus, leptin does not directly signal to liver cells to promote hepatocyte proliferation, and the obese phenotype is not solely responsible for impaired regeneration.

Animals↗

Metabolism of thymine nucleotides synthesized via the 'de novo' mechanism in normal, megaloblastic and methotrexate-treated human cells and in a lymphoblastoid cell line.

Human bone-marrow cells and lymphocytes were incubated with [3H]deoxyuridine (dU) to study the metabolism of thymine nucleotides labelled via the thymidylate synthase (5,10-methylenetetrahydrofolate:dUMP C-methyltransferase, EC 2.1.1.45) step of the 'de novo' biosynthetic pathway. (1) Continuous labelling with [3H]dU was used to compare incorporation of label into DNA with the specific radioactivities of thymine nucleotides separated by paper chromatography. (2) Cells were also labelled with [3H]dU at 13 degrees C, and 'chased' in unlabelled medium at 37 degrees C in order to quantify the proportion of thymine nucleotides incorporated into DNA and the proportion degraded. Only 40% of labelled thymine nucleotides were incorporated into lymphocyte DNA during a 'chase', whereas 100% were incorporated by MOLT 4 cells (a lymphoblastoid cell line of thymic origin, Thy-ALL line). Unincorporated nucleotides were rapidly degraded in lymphocytes, but degradative activity was very low in MOLT 4 cells. The results described here reinforce our previous conclusions [Taheri, Wickremasinghe & Hoffbrand (1981) Biochem. J. 194, 451-461] that there is a single thymine nucleotide compartment in Thy-ALL cells, but at least two pools in lymphocytes and bone-marrow cells. This compartmentation of nucleotides in human cells is consistent with a model which proposes that deoxyribonucleotides are localized near replication forks by the activity of multienzyme complexes [Mathews, North & Reddy (1978) Adv. Enz. Regul. 17, 133-156]. Our results also suggest that thymine nucleotides derived by the 'de novo' mechanism may be more highly localized than those derived by salvage. In cells from patients with megaloblastic anaemia owing to deficiency of vitamin B12 or folate or in normal cells treated with methotrexate, there was a massive accumulation of labelled dUMP and decreased incorporation of label into DNA. There was no measurable incorporation of labelled deoxyuridine residues into DNA of megaloblastic cells, but deoxyuridine residues were detected in DNA of cells treated with methotrexate.

Bone Marrow↗

High level of coreceptor-independent HIV transfer induced by contacts between primary CD4 T cells.

Cell-to-cell virus transmission is one of the most efficient mechanisms of human immunodeficiency virus (HIV) spread, requires CD4 and coreceptor expression in target cells, and may also lead to syncytium formation and cell death. Here, we show that in addition to this classical coreceptor-mediated transmission, the contact between HIV-producing cells and primary CD4 T cells lacking the appropriate coreceptor induced the uptake of HIV particles by target cells in the absence of membrane fusion or productive HIV replication. HIV uptake by CD4 T cells required cellular contacts mediated by the binding of gp120 to CD4 and intact actin cytoskeleton. HIV antigens taken up by CD4 T cells were rapidly endocytosed to trypsin-resistant compartments inducing a partial disappearance of CD4 molecules from the cell surface. Once the cellular contact was stopped, captured HIV were released as infectious particles. Electron microscopy revealed that HIV particles attached to the surface of target cells and accumulated in large (0.5-1.0 microm) intracellular vesicles containing 1-14 virions, without any evidence for massive clathrin-mediated HIV endocytosis. The capture of HIV particles into trypsin-resistant compartments required the availability of the gp120 binding site of CD4 but was independent of the intracytoplasmic tail of CD4. In conclusion, we describe a novel mechanism of HIV transmission, activated by the contact of infected and uninfected primary CD4 T cells, by which HIV could exploit CD4 T cells lacking the appropriate coreceptor as an itinerant virus reservoir.

Actins↗

Rough surfaced smooth endoplasmic reticulum in rat and mouse cerebellar Purkinje cells visualized by quick-freezing techniques.

The in vivo structure of the smooth endoplasmic reticulum (ER) was visualized in rat and mouse cerebellar Purkinje cells by using quick-freezing techniques followed by freeze-substitution for ultrathin-sectioning or freeze-fracturing and deep-etching for replicas. High magnification electron microscopy of the ultrathin sections revealed a surprising finding that all the smooth ER are apparently rough surfaced, and heavily studded with a large number of small dense projections. In the soma the smooth ER appears to be similar to its rough counterpart, except that the projections are slightly smaller, less electron dense and less protrusive on the ER membranes than the ribosomes. The projections were short rectangles, 20 x 20 x 6 nm3 in size, covering the cytoplasmic surface of the smooth ER in a checker-board manner where closely packed. After freeze-etching and replication, they appeared to be composed of four subparticles, surrounding a central channel. Thus the projections are very similar to the foot structure (ryanodine receptor) of the sarcoplasmic reticulum. Furthermore, they were distributed exclusively in the ER compartment and were highly concentrated especially in the smooth ER. This localization of the projections coindides with the intracellular distribution of the inositol 1,4,5-trisphosphate (IP3) receptor determined by quantitative immunogold electron microscopy. These findings would suggest that the projections are tetramers of IP3 receptor molecules and could be used as a morphological marker for the smooth ER in Purkinje cells, which spreads from the soma to the axon and dendrite, up to the tips including the spines. In Purkinje cells tubular smooth ER runs freely in a serpentine fashion or are intertwined to make large membraneous tangles without forming cisternal stacks. It is highly probable that the ER cisternal stacks do not exist naturally in Purkinje cells but are formed artificially during the various procedures for chemical fixation.

Animals↗

Effects of stress on immune cell distribution. Dynamics and hormonal mechanisms.

Immune cell trafficking is crucial to the performance of the surveillance as well as effector functions of the immune system. Because immune cells travel between tissues through the bloodstream, the numbers and proportions of leukocytes in the circulation provide an important representation of the state of leukocyte distribution in the body. The studies described here examine significant and selective changes in numbers and percentages of peripheral blood leukocyte subpopulations in the rat. These changes were rapidly induced under conditions of mild acute stress. Stress-induced increases in plasma corticosterone were accompanied by a significant decrease in numbers and percentages of lymphocytes, and by an increase in numbers and percentages of neutrophils. flow cytometric analysis revealed that B cell, NK cell, and monocyte numbers showed a greater stress-induced decrease than did T cells. All stress-induced changes were observed during the light (inactive) as well as the dark (active) period of the animal's diurnal cycle. Importantly, the stress-induced changes in leukocyte numbers and percentages were rapidly reversed upon the cessation of stress. Furthermore, the effects of stress were largely dependent on adrenal hormones, because the magnitude of the stress-induced changes was significantly reduced in adrenalectomized animals. Moreover, administration of corticosterone to adrenalectomized animals resulted in a close replication of stress-induced changes observed in adrenal-intact animals. These results suggest that endocrine factors released during stress modulate leukocyte trafficking and result in the redistribution of leukocytes between the blood and other immune compartments. Such a redistribution may significantly affect the ability of the immune system to respond to potential or ongoing immune challenge.

Adrenal Glands↗

The DNA-binding subunit p140 of replication factor C is upregulated in cycling cells and associates with G1 phase cell cycle regulatory proteins.

The DNA-binding subunit of replication factor C (RFCp140) plays an important role in both DNA replication and DNA repair. The mechanisms regulating activation of RFCp140 thereby controlling replication and cellular proliferation are largely unknown. We analyzed protein expression of RFCp140 during cell cycle progression and investigated the association of RFCp140 with cell cycle regulatory proteins in cell lines of various tissue origin and in primary hematopoietic cells. Western and Northern blot analyses of RFCp140 from synchronized cells showed downregulation of RFCp140 when cells enter a G0-like quiescent state and upregulation of RFCp140 in cycling cells. Translocation from the cytoplasmic compartment to the nucleus did not account for the significant increase in RFCp140 protein levels observed in cycling cells. To investigate a potential association of RFCp140 with cell cycle regulatory proteins coimmunoprecipitation assays were performed. These studies demonstrated specific binding of RFCp140 to cdk4-kinase in hematopoietic and fibroblast cell lines. Additional coimmunoprecipitation studies revealed specific association of RFCp140 with cyclin D1, p21, proliferating cell nuclear antigen, and retinoblastoma protein. These findings link DNA replication and repair factor RFCp140 to G1 phase cell cycle regulatory elements critically involved in cell cycle control.

3T3 Cells↗

Phosphorylation of human cytomegalovirus glycoprotein B (gB) at the acidic cluster casein kinase 2 site (Ser900) is required for localization of gB to the trans-Golgi network and efficient virus replication.

Human cytomegalovirus (HCMV) glycoprotein B (gB), encoded by the UL55 open reading frame, is an essential envelope glycoprotein involved in cell attachment and entry. Previously, we identified residue serine 900 (Ser900) as a unique site of reversible casein kinase 2 phosphorylation in the cytoplasmic domain of HCMV gB. We have also recently shown that gB is localized to the trans-Golgi network (TGN) in HCMV-permissive cells, thereby identifying the TGN as a possible site of virus envelopment. The aim of the current study was to determine the role of Ser900 phosphorylation in transport of gB to the TGN and in HCMV biogenesis. Recombinant HCMV strains were constructed that expressed gB molecules containing either an aspartic acid (gBAsp900) or alanine residue (gBAla900) substitution at Ser900 to mimic the phosphorylated or nonphosphorylated form, respectively. Immunofluorescence analysis of the trafficking of gB mutant molecules in fibroblasts infected with the HCMV recombinants revealed that gBAsp900 was localized to the TGN. In contrast, gBAla900 was partially mislocalized from the TGN, indicating that phosphorylation of gB at Ser900 was necessary for TGN localization. The increased TGN localization of gBAsp900 was due to a decreased transport of the molecule to post-TGN compartments. Remarkably, the substitution of an aspartic acid residue for Ser900 also resulted in an increase in levels of progeny virus production during HCMV infection of fibroblasts. Together, these results demonstrate that phosphorylation of gB at Ser900 is necessary for gB localization to the TGN, as well as for efficient viral replication, and further support the TGN as a site of HCMV envelopment.

Amino Acid Substitution↗

Response of a replicated human heart system to dynamic loading.

The response of the human heart and attached major vasculature to rapid acceleration loading was studied by means of a non-pulsatile replica consisting of leotard fabric components. The system was designed to prevent leakage of water intended to simulate the blood present. This model was emplaced inside a rigid thorax and mounted on a moving cart, with sudden arrest produced by barrier impact. Large displacements of the ventricles and other attached vessels and pressures in the heart compartments were measured. Twelve impacts to the front, side, rear and at oblique incidence for a condition corresponding to the end of diastole were executed. The tests indicated that the strains in the right ventricle and the interchamber pressure were significant. Strains in the inferior vena cava were relatively high with lower values for the superior vena cava. Significant extensions were also observed in the brachiocephalic, left common carotid and left subclavian arteries. These findings qualitatively substantiate clinical experience for humans subjected to rapid non-invasive loading. A simple spring-mass system was used to model the dynamic response of the replicated heart unit. Predicted values were found to be in fair agreement with test data.

Biomechanical Phenomena↗

Study of the infection of human blood derived monocyte/macrophages with hepatitis C virus in vitro.

Hepatitis C virus (HCV) is essentially hepatotropic, but clinical observations based on quasispecies composition in different compartments or on viral RNA detection in cells suggest that the virus is able to infect and persist in cells other than liver cells. It was shown previously that peripheral blood mononuclear cells (PBMCs) are permissive to HCV replication in vitro but at a very low rate. Since different viruses associated with chronic infections are known to persist in monocyte/macrophages, it is important to determine whether these mononuclear blood cells are susceptible preferentially to HCV. In order to study HCV interaction with monocytes/macrophages, these cells were isolated from the blood of healthy donors and incubated with HCV genotype 1b positive sera. The detection by RT-PCR of the positive- and negative-strand RNA in the cells at different times and the increase in the amount of intracellular viral RNA measured by the branched DNA assay suggest that monocyte/macrophages can support HCV RNA replication. The rate, however, is very low. The analysis of hypervariable region 1 (HVR-1) nucleotide sequences indicated that some minor variant present in the inoculum might display a specific tropism for the monocytes/macrophages. These results provide evidence that human monocytes/macrophages might represent a reservoir for HCV. This cell tropism may be a crucial factor in the pathogenesis of hepatitis C.

Base Sequence↗

Mobilization of hematopoietic stem cells during homeostasis and after cytokine exposure.

We created parabiotic mice, joining ROSA26 and PeP3b animals, to study the trafficking of hematopoietic stem cells (HSCs) from marrow to blood and their return to marrow. The transfer of HSCs was assayed by secondary marrow transplantation and was 1.0% to 2.5% after 3, 6, 8, and 12 weeks. Thus, HSC homeostasis is primarily maintained by the retention of stem cells derived from replication events within the marrow, not the homing and engraftment of HSCs from the circulation. Of interest, the phenotypes of marrow progenitors and granulocytes were similar to those for HSCs, implying that the marrow functions as an intact compartment where differentiating cells derive from endogenous HSC. In contrast, 50% of splenic granulocytes and progenitor cells derived from the parabiotic partner, suggesting splenic progenitor cells were in constant equilibrium with progenitors in blood. In additional studies, animals were exposed to granulocyte-colony-stimulating factor (G-CSF) and stem cell factor at days 17 to 20 of parabiosis and were studied 3 weeks later; 10.1% of marrow HSCs derived from the parabiotic partner. These data imply that HSCs, mobilized to the blood in response to cytokine exposure, are destined to later return to marrow, an observation that supports the concept that the mobilized peripheral blood stem cells used in clinical transplantation function physiologically.

Animals↗