Karyotin example sentences

"Karyotin" Example Sentences

1. Karyotin is a protein found in the nucleus of a cell.
2. The function of karyotin is to help organize the DNA.
3. Mutations in the gene that codes for karyotin can lead to disease.
4. Karyotin is essential for proper cell division.
5. Researchers are studying the role of karyotin in cancer.
6. Karyotin is a relatively small protein, with only 400 amino acids.
7. Some scientists believe that karyotin could be a drug target for cancer therapy.
8. The structure of karyotin has been determined using X-ray crystallography.
9. Studies have shown that karyotin binds to certain DNA sequences.
10. Karyotin is involved in chromatin remodeling.
11. The expression of karyotin is regulated by various transcription factors.
12. Karyotin interacts with other proteins in the nucleus, such as histones.
13. Karyotin may play a role in DNA repair.
14. Certain viruses can target karyotin and interfere with its function.
15. Karyotin has been implicated in neurological disorders.
16. The discovery of karyotin has led to new insights into the structure of the nucleus.
17. Karyotin is conserved across many species, indicating its importance in biology.
18. Karyotin has been identified as a potential biomarker for certain cancers.
19. New drugs targeting karyotin are being developed.
20. Karyotin is thought to play a role in the development of the immune system.
21. The precise function of karyotin is still not fully understood.
22. Karyotin is one of many proteins involved in DNA replication.
23. Karyotin may interact with RNA molecules as well as DNA.
24. Some researchers hypothesize that karyotin could be involved in regulating gene expression.
25. Karyotin is synthesized in the cytoplasm and then transported into the nucleus.
26. Karyotin is subject to various post-translational modifications, such as phosphorylation.
27. Disruptions in karyotin localization can lead to abnormalities in cell division.
28. Karyotin has been shown to undergo conformational changes upon binding to DNA.
29. The study of karyotin has contributed to our understanding of nuclear architecture.
30. Karyotin is part of a complex network of proteins involved in nuclear function.
31. Karyotin has been studied in both prokaryotic and eukaryotic organisms.
32. Research on karyotin has implications for the development of personalized medicine.
33. Karyotin has been identified as a potential target for antiviral therapies.
34. The discovery of karyotin was a major breakthrough in the field of cell biology.
35. Karyotin interacts with other proteins to form larger molecular complexes.
36. Karyotin is present in all nucleated cells.
37. Scientists are still investigating the precise mechanisms by which karyotin functions.
38. Karyotin is stable in a wide range of environmental conditions.
39. Karyotin has been shown to participate in the regulation of cell differentiation.
40. Understanding karyotin is crucial for developing new treatments for genetic diseases.

Common Phases

1. The scientists analyzed the karyotin samples;
2. Karyotin is a protein found in the nuclei of cells;
3. The role of karyotin in cell division is crucial;
4. Mutations in karyotin can result in genetic disorders.

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