PubMed HealthSearch

PubMed · 304082

Human lymphocyte subpopulations defined by double surface markers.

Abstract

Subpopulations of human peripheral blood lymphocytes were studied with single and double surface marker assays. The markers employed were as follows: (1) Fc receptor, using EA, mean 21.4%; (2) C3 receptor, using Zy-C3, mean 14.6%; (3) Slg, using a fluoresceinated F(ab')2 anti-F(ab')2 mean 8.9%; and (4) T lymphocytes forming E-rosette, mean 69.3%. The proportions of lymphocytes with any given surface marker which also have another surface marker were as follows: (1) EA + Slg/EA = 0.14, (2) EA + Zy-C3/EA = 0.22, (3) Slg + Zy-C3/Slg = 0.83, (4) Zy-C3 + E-rosette/E-rosette = 0.02, (5) EA + E-rosette/E-rosette = 0.06, (6) Slg + E-rosette/E-rosette = 0. The relative percentages of cells which were Slg+EA-, EA+Slg-, and EA+Zy-C3- were confirmed by EA rosette depletion via gradient centrifugation. On the basis of these observations, calculations were made of the theoretical numbers of lymphocytes with triple markers (EA+Slg+Zy-C3+ = 3.0%) and lymphocytes with only a single surface marker (EA+ only = 12.5%, Zy-C3+ only = 1.5%, Slg+ only = 1.5%). Finally a schematic representation of the multiple subpopulations of lymphocytes with various surface markers is presented.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

A D Bankhurst, E Hastain, G Husby, E Diaz-Jouanen, R C Williams. 1978. Human lymphocyte subpopulations defined by double surface markers.. https://pubmed.ncbi.nlm.nih.gov/304082/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Abnormal lymphocyte capping in a patient with severe combined immunodeficiency disease.

Despite the presence of normal numbers and distribution of T and B lymphocutes and normal levels of serum immunoglobulins, a five-month-old infant failed to show any evidence of T-cell or B-cell immunity. In trying to identify a specific membrane abnormality as a potential cause of the immunologic dysfunction, we examined the lateral mobility of the cell-surface receptor for concanavalin A. In contrast to normal cells, in which the receptor is distributed uniformly over the cell surface, the patient's lymphocytes showed an unusually high accumulation of concanavalin A receptors in surface caps. This capping abnormality appeared in both T and B lymphocytes and was exaggerated by colchicine, an inhibitor of microtubule assembly. These findings support the theory that plasma-membrane-cytoskeleton interactions have a role in the expression of specific immunity; the findings also identify new areas that should be considered in trying to understand the primary immunodeficiency diseases.

B-Lymphocytes