Javascript must be enabled to continue!
Development of macrociliary cells in Beroë II. Formation of macrocilia
View through CrossRef
ABSTRACT
Two patterns of macrociliary growth occur in Beroë. Early differentiation described previously (Tamm & Tamm, 1988) leads to the first pattern of ciliogenesis. A tuft of 10–20 single cilia initially grows out from basal bodies that have migrated to the cell surface and are axially aligned. Ciliary membranes then begin to fuse along their length, except at the base, resulting in thicker groups of cilia on each cell. Progressive fusion of ciliary membranes, together with addition and elongation of new axonemes, finally results in mature macrocilia, 5 μm thick and 40 μm long, enclosed by a single membrane distally. The second pattern of ciliogenesis begins with the simultaneous appearance of several hundred ciliary buds on the apical surface. The short cilia possess individual membranes with bulbous tips, and are not axially aligned. Subsequent elongation is accompanied by progressive fusion of neighbouring ciliary membranes, except at the base, leading to flat-topped ‘stumps’ surrounded by a single membrane distally. Further elongation then proceeds asymmetrically within each stump. Axonemes on the aboral side of the macrocilium stop elongating, while those towards the oral side increase progressively in height, resulting in a slanted profile. Basal feet and central-pair microtubules are now uniformly aligned. Unequal elongation of axonemes on the oral and aboral sides of the macrocilium continues until the macrocilium resembles a lobster’s claw, with a long slender shaft projecting from a broad base. Finally, the polarity of unequal growth reverses: the shorter axonemes on the aboral side elongate and almost catch up with the longer ones on the opposite side, resulting in a mature macrocilium of uniform diameter. The unusual membrane architecture of the macro-cilium is thus a consequence of selective fusion of the distal regions of originally separate ciliary membranes. The polarized, asymmetrical growth of axonemes on the two sides of the macrocilium illustrates a remarkable control of microtubule elongation at the subcellular level.
Title: Development of macrociliary cells in Beroë II. Formation of macrocilia
Description:
ABSTRACT
Two patterns of macrociliary growth occur in Beroë.
Early differentiation described previously (Tamm & Tamm, 1988) leads to the first pattern of ciliogenesis.
A tuft of 10–20 single cilia initially grows out from basal bodies that have migrated to the cell surface and are axially aligned.
Ciliary membranes then begin to fuse along their length, except at the base, resulting in thicker groups of cilia on each cell.
Progressive fusion of ciliary membranes, together with addition and elongation of new axonemes, finally results in mature macrocilia, 5 μm thick and 40 μm long, enclosed by a single membrane distally.
The second pattern of ciliogenesis begins with the simultaneous appearance of several hundred ciliary buds on the apical surface.
The short cilia possess individual membranes with bulbous tips, and are not axially aligned.
Subsequent elongation is accompanied by progressive fusion of neighbouring ciliary membranes, except at the base, leading to flat-topped ‘stumps’ surrounded by a single membrane distally.
Further elongation then proceeds asymmetrically within each stump.
Axonemes on the aboral side of the macrocilium stop elongating, while those towards the oral side increase progressively in height, resulting in a slanted profile.
Basal feet and central-pair microtubules are now uniformly aligned.
Unequal elongation of axonemes on the oral and aboral sides of the macrocilium continues until the macrocilium resembles a lobster’s claw, with a long slender shaft projecting from a broad base.
Finally, the polarity of unequal growth reverses: the shorter axonemes on the aboral side elongate and almost catch up with the longer ones on the opposite side, resulting in a mature macrocilium of uniform diameter.
The unusual membrane architecture of the macro-cilium is thus a consequence of selective fusion of the distal regions of originally separate ciliary membranes.
The polarized, asymmetrical growth of axonemes on the two sides of the macrocilium illustrates a remarkable control of microtubule elongation at the subcellular level.
Related Results
Ca/Ba/Sr‐induced conformational changes of ciliary axonemes
Ca/Ba/Sr‐induced conformational changes of ciliary axonemes
AbstractMacrocilia of the ctenophore Beroë undergo Ca/Ba/Sr‐dependent activation of ciliary beating and microtubule sliding disintegration [Tamm, J. Comp. Physiol. A163:23–31. 1988...
Successful transfection of Lymphoblastoid cell line (Preprint)
Successful transfection of Lymphoblastoid cell line (Preprint)
BACKGROUND
Immortalization is the stage that the cell goes through before full transformation [1]. Human resting B lymphocytes from peripheral blood are eas...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...
Nature Products Enhance NKG2D Ligands Expression of CD123+CD34+CD38− Leukemia Stem Cells for Stimulating Cytotoxicity of NKG2D+ Cells to Themselves
Nature Products Enhance NKG2D Ligands Expression of CD123+CD34+CD38− Leukemia Stem Cells for Stimulating Cytotoxicity of NKG2D+ Cells to Themselves
Abstract
CD123+CD34+CD38− leukemia cells regarded as leukemia stem cells, not only refractory to chemotherapeutics but also resistant to immune response such as cyto...
Developing “Off-the-Shelf” CLL1 CAR-DNT Therapeutics for the R/R Acute Myeloid Leukemia
Developing “Off-the-Shelf” CLL1 CAR-DNT Therapeutics for the R/R Acute Myeloid Leukemia
Background: Acute myeloid leukemia (AML) is one of the most common and highly heterogeneous hematological malignancy. The prognosis is poor especially for the elderly patients. For...
Megakaryocytes Support Viability Proliferation and Protection of Primary Pre-B ALL Cells from Chemotherapy
Megakaryocytes Support Viability Proliferation and Protection of Primary Pre-B ALL Cells from Chemotherapy
Abstract
BACKGROUND: The bone marrow is known to shelter leukemia cells from chemotherapy and contributes to the survival of chemotherapy resistant residual cells, t...
Long-Term Dormant Cells in Acute Myeloid Leukemia Patient-Derived Xenografts Display Reversible Treatment Resistance, but Are Not Enriched for Leukemia-Initiating Cells
Long-Term Dormant Cells in Acute Myeloid Leukemia Patient-Derived Xenografts Display Reversible Treatment Resistance, but Are Not Enriched for Leukemia-Initiating Cells
Abstract
Introduction
Leukemia-initiating cells (LIC) are considered the source of therapy resistance and relapse, including in acute myeloid leukemia...

