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Biomedical subjects

J Klem

Publications and source records attributed to J Klem.

At least 19 recordsLinked to original sources

Inhibition of the death receptor pathway by cFLIP confers partial engraftment of MHC class I-deficient stem cells and reduces tumor clearance in perforin-deficient mice.

NK cells mediate acute rejection of MHC class I-deficient bone marrow cell (BMC) grafts. However, the exact cytotoxic mechanisms of NK cells during acute BMC graft rejection are not well defined. Although the granule exocytosis pathway plays a major role in NK cell-mediated rejection, alternative perforin-independent mechanisms also exist. By analyzing the anti-apoptotic effects of cellular Fas-associated death domain-like IL-1-converting enzyme-inhibitory protein (cFLIP) overexpression, we investigated the possible role of death receptor-induced apoptosis in NK cell-mediated cytotoxicity. In the absence of perforin, we found that cFLIP overexpression reduces lysis of tumor cells by NK cells in vitro and in vivo. In addition, perforin-deficient NK cells were impaired in their ability to acutely reject cFLIP-overexpressing TAP-1 knockout stem cells. These results emphasize the importance of NK cell death receptor-mediated killing during BMC grafts in the absence of perforin.

Animals↗

Differentiation of NK1.1+, Ly49+ NK cells from flt3+ multipotent marrow progenitor cells.

To delineate factors involved in NK cell development, we established an in vitro system in which lineage marker (Lin)-, c-kit+, Sca2+ bone marrow cells differentiate into lytic NK1.1+ but Ly49- cells upon culture in IL-7, stem cell factor (SCF), and flt3 ligand (flt3L), followed by IL-15 alone. A comparison of the ability of IL-7, SCF, and flt3L to generate IL-15-responsive precursors suggested that NK progenitors express the receptor for flt3L. In support of this, when Lin-, c-kit+, flt3+ or Lin-, c-kit+, flt3- progenitors were utilized, 3-fold more NK cells arose from the flt3+ than from the flt3- progenitors. Furthermore, NK cells that arose from flt3- progenitors showed an immature NK1.1dim, CD2-, c-kit+ phenotype as compared with the more mature NK1.1bright, CD2+/-, c-kit- phenotype displayed by NK cells derived from flt3+ progenitors. Both progenitors, however, gave rise to NK cells that were Ly49 negative. To test the hypothesis that additional marrow-derived signals are necessary for Ly49 expression on developing NK cells, flt3+ progenitors were grown in IL-7, SCF, and flt3L followed by culture with IL-15 and a marrow-derived stromal cell line. Expression of Ly49 molecules, including those of which the MHC class I ligands were expressed on the stromal or progenitor cells, as well as others of which the known ligands were absent, was induced within 6-13 days. Thus, we have established an in vitro system in which Ly49 expression on developing NK cells can be analyzed and possibly experimentally manipulated.

Animals↗

Induction and characterization of human glioma clones with different radiosensitivities.

To facilitate investigation of the molecular mechanisms of tumor cell radiosensitivities, we have generated a set of clones with different radiosensitivities from a human glioma cell line U-251 MG-Ho. Forty-four colonies were isolated by subjecting parent cells to the mutagen N-methylnitrosourea and then irradiating these cells with increasing doses of x-rays. About half of the clones displayed different radiosensitivities than the parent cells. We selected one of the most sensitive clones (X3i) and one of the most resistant clones (Y6) for further study. Isoeffective doses for these two clones differed by about a factor of 1.7; the relative radiosensitivities of both clones were stable for at least 30 cell culture passages. These two clones do not differ significantly in either the induction or repair of radiation-induced DNA double-strand breaks as measured by pulsed field gel electrophoresis. Radiation-induced apoptosis measured by terminal deoxynucleotide transferase-mediated dUTP nick end labeling assay and micronucleus formation were similar in both clones. However, potentially lethal damage repair was greater in the radioresistant Y6 clone than in the radiosensitive X3i clone as determined by colony-forming efficiency assay.

Alkylating Agents↗

Natural killer cell differentiation: insights from knockout and transgenic mouse models and in vitro systems.

In the last few years, the routine development of knockout and transgenic mice and the ease with which rare progenitor populations can be isolated from hematopoietic organs and cultured in vitro has facilitated significant advances in understanding the lineage and development of natural killer (NK) cells. Fluorescence-activated cell sorter analyses have identified a common lymphoid progenitor capable of giving rise to NK, T, and B cells, confirming the lymphoid origin of NK cells. Knockout and transgenic mouse models have pointed to an absolutely critical role for signals sent through the interleukin (IL)-2/15 receptor beta (CD122) chain and common gamma (gamma c) chain for NK development. Such signals are likely relayed inside the cell by the tyrosine kinase Jak3, which associates with gamma c. Recently developed IL-15 and IL-15 receptor alpha knockout mice have pinpointed IL-15 as the mediator of this signal. Other mouse models have indicated an unexpected role for flt3 ligand in early NK-cell development as well as minor roles for stem cell factor and IL-7 in expanding NK-cell progenitor numbers. Finally, in vitro culture systems have proven useful in identifying the point in NK development at which each of these signals is critical.

Animals↗

5'-nucleotidase and adenosine deaminase activities in blood of patients with unstable angina pectoris.

During ischaemia and hypoxia adenosine is released from cardiac cells. Adenosine is the end product of 5'-nucleotidase activity. We were interested in how this enzyme activity in plasma of patients with unstable angina pectoris, causes short-term ischaemia. 5'-Nucleotidase activity in plasma was determined using a standard diagnostic kit from Sigma. Furthermore, we studied the activity of adenosine deaminase in plasma, granulocytes, lymphocytes and erythrocytes by the methods of Hopkinson [1]. It was found that 5'-nucleotidase activity was increased by about 43% in plasma. The activity of adenosine deaminase (ADA) in plasma increased by 6%, but in granulocytes, lymphocytes and erythrocytes decreased by about 24, 19 and 10.6%, respectively. We concluded that a large increase in 5'-nucleotidase activity may be caused by activation of 5'-ectonucleotidase in blood cells by ischaemia. However, the decrease in ADA activity in blood cells may be associate with the adenosine metabolism.

5'-Nucleotidase↗

Effect of dipyridamole on inosine triphosphate pyrophosphohydrolase activity and inosine triphosphate content in fresh human erythrocytes incubated with adenosine.

The activity of inosine triphosphate pyrophosphohydrolase (ITPH) in human erythrocytes was found to be 1.50 +/- 0.39 mumol of inosine triphosphate (ITP) hydrolysed x min-1 per g Hb, and no measurable amount of ITP was detected. When dipyridamole was added to the medium composed of adenosine, pyruvate and inorganic phosphate, ITPH activity was 1.18 +/- 0.41, and at the same time ITP accumulation was 0.61 +/- 0.31 mumol/g Hb. The negative correlation between ITPH activity and accumulation of ITP was r = -0.87 at P less than 0.001.

Adenosine↗

Relationship between adenosine deaminase activity (ADA) and inosinemonophosphate (IMP) accumulation in fresh erythrocytes incubated with adenosine and dipyridamole.

Fresh human erythrocytes were incubated in two media: a) adenosine (10 mM), pyruvate (10 mM), phosphate (50 mM) (APP medium); b) APP medium enriched with 100 mumol/l dipyridamole (APPD) medium. The amount of IMP in fresh erythrocytes was 0.18 +/- 0.09 mumol/g Hb, after incubation in APP medium it was 1.52 +/- 0.78 mumol/g Hb, and after incubation in APP medium it was 1.52 +/- 0.78 mumol/g Hb, and after incubation in APPD the amount was 5.28 +/- 0.94 mumol/g Hb. ADA activity was measured simultaneously. The mean activity (+/- SD) of ADA fresh red cells was 1.29 +/- 0.36 U/g Hb, after 2 h incubation in APP medium it was 1.71 +/- 0.38 U/g Hb, and after 2 h incubation in APPD medium an activity of 2.68 +/- 0.95 U/g Hb was found. A highly significant correlation between the accumulation of IMP and the activity of ADA in fresh erythrocytes (r = 0.93; p = less than 0.001) and in erythrocytes incubated in APPD medium (r = 0.97; p = less than 0.001) was found.

Adenosine↗