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Results for “Chromobox Protein Homolog 5”

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Radioimmunoassay for the major structural protein of Mason-Pfizer monkey virus: Attempts to detect the presence of antigen or antibody in humans.

The 25,000 dalton protein of Mason-Pfizer monkey virus (MPMV) was isolated by gel filtration chromatography. In agreement with results from other laboratories, antisera to type-C and the non-type-C bovine leukemia and equine infectious anemia viruses did not precipitate 125I-labelled MPMV p25. In addition, these viruses did not cross-react in a competition radioimmunoassay for MPMV p25. Twenty-one human tissues (15 breast carcinomas, 2 normal breasts, 3 acute myelogenous leukemias and 1 sarcoma) were fractionated by detergent solubilization, ammonium sulfate precipitation, and DE-52 anion exchange chromatography. These methods were shown to be highly effective for purification of MPMV p25. Under assay conditions which minimized incubation damage to the 125I-MPMV p25, all tissues failed to react in the competition radioimmunoassay (RIAT). Two hundred and two human sera or plasma specimens, including those from patients with breast cancer and 33 age-matched controls, from 50 patients with hematologic malignancies, from 12 patients with amyotrophic lateral sclerosis, and from 14 patients with systemic lupus erythematosis, were examined for antibodies to MPMV p25. With the exception of two multiple myeloma plasma which produced artifactual false positive reactions based on hypergammaglobulinemia, a known complication of salt precipitation radioimmunoassays, the remainder of the specimens were negative for evidence of MPMV p25 antibodies.

Adolescent

Partial trisomy 6p.

A case of trisomy 6p21 leads to 6pter resulting from a maternal balanced t(2;6)(p25;p21) translocation is reported. The main clinical abnormalities were psychomotor retardation, hypotrophy, blepharophimosis, nystagmus, high nasal bridge, small mouth, sacral dimple, and systolic murmur. Other anomalies might have been due to partial 2p monosomy. Comparison with seven other cases of trisomy 6p allowed the delineation of a clinical entity. Direct proof of the localization of HLA genes was given by the presence of three haplotypes in the index patient.

Abnormalities, Multiple

Phosphorylation as a regulatory mechanism of HP1 protein multifunctionality.

The Heterochromatin Protein 1 (HP1) family proteins are key regulators of chromatin structure and genome function, acting as "reader" proteins that recognize and bind to histone H3 lysine 9 methylation (H3K9me). Beyond their canonical role in heterochromatin formation and transcriptional repression, HP1 proteins exhibit functional versatility, participating in transcriptional activation, RNA processing, DNA repair, and chromosome segregation. This multifunctionality is mediated partially by post-translational modifications (PTMs), with phosphorylation emerging as a central regulatory mechanism. This review explores the diverse effects of HP1 phosphorylation on protein function and chromatin interactions, focusing on Drosophila melanogaster HP1a and its orthologs, mammalian HP1α and S. pombe Swi6. Phosphorylation in the N-terminal tail enhances HP1's affinity for H3K9me, promoting transcriptional silencing. Mitotic phosphorylation of serine residues in the hinge region, regulated by kinases such as AURKB and NDR1/2, leads to chromatin release and relocalization to the kinetochore, enabling proper chromosome segregation. Additionally, phosphorylation modulates HP1 phase separation dynamics, influencing nuclear compartmentalization and chromatin condensation. These findings highlight phosphorylation as a versatile molecular switch that enables HP1 proteins to transition between structural and regulatory roles, contributing to their evolutionary conserved multifunctionality in genome regulation and cell division. Further investigation into HP1 phosphorylation across species and contexts is essential to fully understand its contributions to chromatin biology.

Phosphorylation

HP1α binding creates a local barrier against transcription activation and persists during chromatin decondensation.

Mouse pericentric heterochromatin forms compacted, transcriptionally silent domains, termed chromocenters, that are enriched in heterochromatin protein 1 (HP1). Whether HP1α represses chromocenters by binding locally or by maintaining a phase-separated compartment is unresolved. We investigated this question by recruiting transcriptional activators to mouse fibroblast chromocenters and quantifying repression at a transcription reporter. HP1α established a promoter-proximal barrier that suppressed weaker activators (VP16) but was overcome by stronger ones (VP64-p65-Rta [VPR] and p65). Activator-induced decondensation and transcription occurred without displacing HP1α or H3K9 trimethylation, and HP1α retained its granular distribution and stoichiometric binding dynamics. Multi-color super-resolution imaging revealed spatial segregation of transcribed and HP1α-bound regions at the nanodomain scale. A nanodomain model captured how repeat clusters independently transition between silenced and activated states. These data establish that HP1α and H3K9me3 act through independently switchable nanodomains, accounting for chromocenter regulation without invoking phase separation.

Animals

Destabilizing heterochromatin by APOE mediates senescence.

Apolipoprotein E (APOE) is a component of lipoprotein particles that function in the homeostasis of cholesterol and other lipids. Although APOE is genetically associated with human longevity and Alzheimer's disease, its mechanistic role in aging is largely unknown. Here, we used human genetic, stress-induced and physiological cellular aging models to explore APOE-driven processes in stem cell homeostasis and aging. We report that in aged human mesenchymal progenitor cells (MPCs), APOE accumulation is a driver for cellular senescence. By contrast, CRISPR-Cas9-mediated deletion of APOE endows human MPCs with resistance to cellular senescence. Mechanistically, we discovered that APOE functions as a destabilizer for heterochromatin. Specifically, increased APOE leads to the degradation of nuclear lamina proteins and a heterochromatin-associated protein KRAB-associated protein 1 via the autophagy-lysosomal pathway, thereby disrupting heterochromatin and causing senescence. Altogether, our findings uncover a role of APOE as an epigenetic mediator of senescence and provide potential targets to ameliorate aging-related diseases.

Humans

Relationship between Hp1S and Hp2 gene frequencies among human populations.

In this work, we present new data on the Hp1alpha- and Hp2alpha-chains polymorphism in different populations. We confirm the singularity of the geographical distribution of the Hp2 alleles in our samples. The analysis of the results shows that a significant correlation exists in the population between the Hp1S and Hp2 gene frequencies. An additional Hp1alpha-chain variant is described in a Pyrenean sample.

Algeria

Expression of two differentiation antigens on normal and cultured human T cells.

An antiserum specific for human T lymphocytes (AMT) was used to examine patterns of T cell surface antigen expression and to isolate their reactive membrane antigens. By a quantitative adsorption assay, different plateaus of AMT reactivity with blood T cells were observed after serial adsorptions with individual T cell lines. MOLT-3 cells removed 95% of AMT activity to blood T cells whereas MOLT-4 removed 70% and HSB-2 removed only 30%. A cross-adsorption analysis demonstrated that each of the three cell lines differed in their adsorbing efficiency to remove AMT antibodies reactive with the reciprocal cell lines. Radiolabeled membrane proteins were solubilized with either sodium deoxycholate (DOC) or NP-40 detergents, precipitated with AMT, and Staphylococcus aureus Cowan strain I, and analyzed by sodium dodecyl sulfate-polyacrylamide disc gel electrophoresis (SDS-PAGE). Two distinct T lymphocyte antigens of approximately 25,000 daltons (p25) and 16,000 (p16) were identified on MOLT-3 cells. Similar relative quantities of p25 and p16 were detected on human peripheral T cells and thymocytes. MOLT-4 cells contained less of the p25 peak than did MOLT-3. HSB-2 cells gave a small peak in the same general location as the MOLT-3 p25 peak, and a relatively large p16 peak. Adsorption of AMT with HSB-2 removed the capacity of the antiserum to precipitate p16 from MOLT-3, but did not eliminate reactivity with p25.

Animals