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1. Conserved chromatin and repetitive patterns reveal slow genome evolution in frogs

2. Polyploidy in Xenopus lowers metabolic rate by decreasing total cell surface area.

3. Mitotic chromosomes scale to nuclear-cytoplasmic ratio and cell size in Xenopus.

4. Dodecaploid Xenopus longipes provides insight into the emergence of size scaling relationships during development

5. Monitoring the compaction of single DNA molecules in Xenopus egg extract in real time

6. Molecular conflicts disrupting centromere maintenance contribute to Xenopus hybrid inviability

7. Scaling of biosynthesis and metabolism with cell size

9. Reconstitution of muscle cell microtubule organization in vitro

10. Identification and characterization of centromeric sequences in Xenopus laevis

13. The power of amphibians to elucidate mechanisms of size control and scaling.

14. Emergent properties of mitotic chromosomes.

15. Emergent properties of mitotic chromosomes

16. Kif2a Scales Meiotic Spindle Size in Hymenochirus boettgeri.

17. The Use of Cell-Free Xenopus Extracts to Investigate Cytoplasmic Events

18. Cell Biology: The Health Hazards of Super-Sizing

19. Importin α Partitioning to the Plasma Membrane Regulates Intracellular Scaling

20. Generation of Xenopus Haploid, Triploid, and Hybrid Embryos

21. Katanin-like protein Katnal2 is required for ciliogenesis and brain development in Xenopus embryos

22. Preparation of Cellular Extracts from Xenopus Eggs and Embryos

23. Spindle assembly in egg extracts of the Marsabit clawed frog, Xenopus borealis.

24. Subcellular scaling: does size matter for cell division?

25. The Incredible Shrinking Spindle

26. A lab co-op helps young faculty members to thrive

27. Paternal chromosome loss and metabolic crisis contribute to hybrid inviability in Xenopus.

28. Xenopus hybrids provide insight into cell and organism size control

29. Regulatory remodeling in the allo-tetraploid frog Xenopus laevis

30. Genome evolution in the allotetraploid frog Xenopus laevis

31. Correction: Mitotic noncoding RNA processing promotes kinetochore and spindle assembly in Xenopus

32. Mitotic noncoding RNA processing promotes kinetochore and spindle assembly in Xenopus

33. Microtubules: 50 years on from the discovery of tubulin

34. A versatile multivariate image analysis pipeline reveals features of Xenopus extract spindles

35. Biological Scaling Problems and Solutions in Amphibians

36. Thirty years of search and capture: The complex simplicity of mitotic spindle assembly

37. Biological Scaling Problems and Solutions in Amphibians.

38. Enzymatically Generated CRISPR Libraries for Genome Labeling and Screening

39. A Comparative Analysis of Spindle Morphometrics across Metazoans

40. Glutamylation of Nap1 modulates histone H1 dynamics and chromosome condensation in Xenopus

41. RUVs drive chromosome decondensation after mitosis.

42. TPX2 levels modulate meiotic spindle size and architecture in Xenopus egg extracts

43. Morphology and function of membrane-bound organelles

44. Cytoplasmic Volume Modulates Spindle Size During Embryogenesis

45. RanGTP and CLASP1 cooperate to position the mitotic spindle

46. REEP3/4 Ensure Endoplasmic Reticulum Clearance from Metaphase Chromatin and Proper Nuclear Envelope Architecture

47. Mitotic spindle scaling during Xenopus development by kif2a and importin α.

48. Chapter Three Interplay Between Spindle Architecture and Function

49. Interplay between spindle architecture and function.

50. Mitotic spindle scaling during Xenopus development by kif2a and importin α

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