Gene inactivation by multiphoton-targeted photochemistry
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Authors: Berns, MW; Wang, ZF; Dunn, A; Wallace, V; Venugopalan, V
Abstract
Multiphoton-targeted photochemistry was used to selectively inactivate the expression of genes in vertebrate cells. A membrane permeable DNA-associating vital dye, ethidium bromide monoacetate (visible wavelength single photon absorption peak at 530 nm) was used to photosensitize chromosomes in dividing cells. A 100-ps infrared laser beam operating at 1.06 microns was focused onto a selected region of a mitotic chromosome corresponding to the sites of the nucleolar (ribosomal) genes. Individual cells followed through mitosis demonstrated a reduction in the number of nucleoli formed in daughter cells that corresponded to the number of nucleolar genes sites irradiated. These results demonstrate the ability to selectively manipulate genes by using the focal point specificity characteristic of multiphoton microscopy. This technique should have wide biotechnology applications both in vitro and in vivo.
Preferential expression of NuMA in the nuclei of proliferating cells
EXPERIMENTAL CELL RESEARCH
Authors: Taimen, P; Viljamaa, N; Kallajoki, M
Abstract
Nuclear mitotic apparatus protein (NuMA) has an indispensable function in normal mitosis as an organizer of the mitotic spindle. NuMA is a prominent component of interphase cell nuclear matrix but its role during interphase is largely unknown. We examined the presence of NuMA in several human tissues. The majority of cells were positive for NuMA but a few negative cell types were found, including spermatozoa, superficial keratinocytes, neutrophil granulocytes, syncytiotrophoblasts, and some neurons, fibro blasts, and smooth and skeletal muscle cells. We further investigated the presence of NuMA in a cultured estrogen-dependent human breast cancer cell Line and observed the disappearance of nuclear NuMA in the quiescent cells. The percentage of NuMA-positive cells diminished from an initial similar to 100 to 60% during 6 days of culture. The presence of NuMA correlated positively with the presence of proliferation marker Ki-67 antigen and negatively with the culture time, confluence, and size of the cell islets. These results show that some nonproliferating, highly differentiated cell types lack NuMA and that cells may lose their NuMA without dramatic effects on the nuclear shape. This suggests that NuMA may be a nonessential component of the interphase nucleus. (C) 2000 Academic Press.