19 results on '"Hossain, Manzar"'
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2. Meier-Gorlin Syndrome
3. Abstract 1259 Biochemical Investigation and Evolutionary Comparison of the Mechanism of the Initiation of DNA Replication in Eukaryotic Cells
4. Orc1 Binding to Mitotic Chromosomes Precedes Spatial Patterning during G1 Phase and Assembly of the Origin Recognition Complex in Human Cells
5. Tudor domain proteins in protozoan parasites and characterization of Plasmodium falciparum tudor staphylococcal nuclease
6. A role of falcipain-2, principal cysteine proteases of Plasmodium falciparum in merozoite egression
7. Silencing the Expression of Cysteine Proteases (Falcipains) in Plasmodium Falciparum using RNA Interference Approaches
8. Cyclin binding Cy motifs have multiple activities in the initiation of DNA replication
9. Cyclin binding Cy motifs have multiple activities in the initiation of DNA replication
10. The dNTP triphosphohydrolase activity of SAMHD1 persists during S-phase when the enzyme is phosphorylated at T592
11. Opposing roles for DNA replication initiator proteins ORC1 and CDC6 in control of Cyclin E gene transcription
12. Author response: Opposing roles for DNA replication initiator proteins ORC1 and CDC6 in control of Cyclin E gene transcription
13. Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
14. Transient silencing of Plasmodium falciparum Tudor Staphylococcal Nuclease suggests an essential role for the protein
15. Meier-Gorlin syndrome mutations disrupt an Orc1 CDK inhibitory domain and cause centrosome reduplication
16. Proteome Analysis Reveals a Large Merozoite Surface Protein-1 Associated Complex on the Plasmodium falciparum Merozoite Surface
17. Plasmodium falciparum Tudor Staphylococcal Nuclease interacting proteins suggest its role in nuclear as well as splicing processes
18. Orc1 Binding to Mitotic Chromosomes Precedes Spatial Patterning during G1 Phase and Assembly of the Origin Recognition Complex in Human Cells.
19. Proteome analysis reveals a large merozoite surface protein-1 associated complex on the Plasmodium falciparum merozoite surface.
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