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H J Lipps

Publications and source records attributed to H J Lipps.

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The formation of polytene chromosomes during macronuclear development of the hypotrichous ciliate Stylonychia mytilus.

The formation of polytene chromosomes during macronuclear development of the ciliate Stylonychia mytilus was examined in spread electron microscopical preparations. The chromatin organization of early macronuclear anlagen closely resembles the organization of micronuclear chromatin. In the course of polytenization 300 A chromatin fibers become organized in loop-like structures laterally attached to a thinner axial fiber. It is suggested that this reorganization of chromatin during polytenization is a necessary event for the subsequent chromatin elimination.

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Stereo-electron microscopy of nuclear structure and replication in ciliated protozoa (Hypotricha).

Employing stereo-electron microscopy on sections (ca. 0.1 micrometer thick) of the ciliated protozoa Stylonychia, Oxytricha and Euplotes, we have examined the ultrastructure of macronuclear replication bands (RB) and micronuclei. The macronuclear RB is composed of two zones: a "forward zone" showing a special chromatin organization consisting of regular 40 to 50 nm diameter fibers with an indication of nucleosomal substructure; and a "rear zone", the site of DNA replication, consisting of a mesh of 10 nm chromatin fibers. Micronuclei exhibit chromatin strands of 60 to 70 nm diameter. Employing the Bernhard staining procedure, we have observed that the chromatin fibers of the RB and of the micronuclei remain unbleached, whereas macronuclear condensed chromatin is bleached of stain, indicating that the replication band and the micronuclei contain chromatin in a configuration different from that of other forms of densely packed chromatin. The regularity of the chromatin fibers within the forward zone is of particular interest since it is comparable to the regularity of chromatin seen in the transcriptionally-inactive chromatin of other nuclei such as avain erythrocytes and sea urchin spermatozoa. It is likely that the forward zone chromatin fibers consist of highly ordered arrangements of nucleosomes, associated with additional nonhistone proteins.

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Chromatin elimination in the hypotrichous ciliate Stylonychia mytilus.

Chromatin elimination in the hypotrichous ciliate Stylonychia mytilus was studied by means of electron microscopy using a microspreading procedure. In the polytene chromosomes of the macronuclear anlagen three organization patterns are observed: Bands of various size composed of 300 A chromatin fibers, large blocks of 300 A nucleofilaments which probably represent the "heterochromatic" regions of the chromosome and axial 120 A filaments. Those DNA sequences which become eliminated belong to the 300 A fiber type. The eliminated chromatin occurs in the form of rings of variable size corresponding to a DNA content between 18 and 160 Kb while the axial 120 A filaments appear to be preserved.

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In vitro aggregation of the gene-sized DNA molecules of the ciliate Stylonychia mytilus.

Macronuclear DNA of hypotrichous ciliates exists in the form of gene-sized DNA molecules. It can be resolved on agarose gels into a continuum of sizes upon which is imposed a set of characteristic DNA bands. Most or all of the DNA molecules carry identical terminal inverted repeat sequences. By incubating macronuclear DNA under increasingly stronger ionic conditions, high molecular weight DNA aggregates and ring-like DNA structures are formed. Experimental evidence is presented that this aggregation is not due to the presence of identical single-stranded DNA ends on each macronuclear DNA fragment, and an alternative model for DNA aggregation is discussed.

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Histone genes in macronuclear DNA of the ciliate Stylonychia mytilus.

DNA in the macronucleus of Stylonychia mytilus exists as discrete gene-sized fragments which are derived from micronuclear DNA through a series of well-defined developmental events. It has been proposed that each of the DNA fragments might represent a gene and its controlling elements. We have investigated this possibility using genes which code for the five histone proteins. Macronuclear DNA fragments were fractionated according to size by agarose gel electrophoresis, the fragments transferred to nitrocellulose filters using the technique of Southern, and the filter-bound DNA hybridized with labeled cloned histone genes of the sea urchin, Psammechinus miliaris. Results indicate, first, that sequences homologous to the five individual histone gene probes are present in discrete macronuclear fragments which appear as bands in the gel hybridization assay. Secondly, for each of the five individual histone gene probes the homologous DNA fragments are several in number, ranging in size in from 7.6 Kb (Kilo base pairs) to 0.73 Kb. For example, the largest of six detected fragments hybridizing to the H3 gene probe contains approximately 10 times the amount of DNA required to code for a Stylonychia H3 histone. The smallest detected fragment hybridizing to the H3 probe contains enought DNA to code for approximately two copies of the histone. Finally, in general, no two histone approximately two copies of the histone. Finally, in general, no two histone gene probes hybridized to the same macronuclear DNA fragment. This result indicates that genes coding for the five histones in Stylonychia are not located together on the same macronuclear DNA fragments and implies that the five functionally related genes would not be transcribed together as a polycistronic unit.

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Free genes for rRNAs in the macronuclear genome of the ciliate Stylonychia mytilus.

When separated on an agarose gel, macronuclear DNA of the hypotrichous ciliate Stylonychia mytilus gives rise to many well-defined bands ranging in molecular weight from 0.3 x 10(6) to 14 x 10(6) dalton. Hybridization of 25 S rRNA, 17S rRNA or 5 S RNA to such a gel revealed sharp hybridization bands. This suggests that this banding pattern is not an artefact due to nonspecific degradation of macronuclear DNA but that the DNA in the macronucleus of Stylonychia occurs in discrete fragments, each coding for at least one gene. The size of the DNA fragment coding for rRNA was found to be 4.5 x 10(6) dalton, the fragment coding for 5 S RNA has a molecular weight of 150,000-250,000 dalton.

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Chromatin structure in the macronucleus of the ciliate Stylonychia mytilus.

Evidence is presented that macronuclear chromatin in the hypotrichous ciliate Stylonychia mytilus occurs in discrete fragments, each representing at least single genes. The size of these fragments varies between 3 and more than 70 nucleosomes with an average length of about 18 nucleosomes. This observation is discussed with respect to macronuclear structure of hypotrichous ciliates.

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