Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.
Project description:By investigating the RNA binding activity of human ORC1, we show that it interacts with RNAs transcribed at active origins, which is linked to ORC1 dynamic association to the chromatin and optimal origin firing in S phase.