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1. Advancing knowledge of the plant nuclear periphery and its application for crop science

2. Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis

3. Measuring similarity between gene interaction profiles

4. Advancing knowledge of the plant nuclear periphery and its application for crop science.

5. Chain reaction: LINC complexes and nuclear positioning [version 1; referees: 3 approved]

7. Meiosis‐specific cohesin component, Rec8, promotes the localization of Mps3 SUN domain protein on the nuclear envelope.

8. Molecular evolution of SUN-domain containing proteins in diverse plant species and their expression profiling in response to developmental and perturbation stimuli.

9. Ultra-structure of the sperm head-to-tail linkage complex in the absence of the spermatid-specific LINC component SPAG4.

10. Exploring the evolution of the proteins of the plant nuclear envelope.

11. Advancing knowledge of the plant nuclear periphery and its application for crop science

12. Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis

14. Role of KASH domain lengths in the regulation of LINC complexes

15. Molecular evolution of SUN-domain containing proteins in diverse plant species and their expression profiling in response to developmental and perturbation stimuli

16. Evolution and Functional Divergence of SUN Genes in Plants

18. The Roles of Host 5-Methylcytosine RNA Methyltransferases during Viral Infections

19. Mps2 links Csm4 and Mps3 to form a telomere-associated LINC complex in budding yeast

20. The SUN Domain Proteins OsSUN1 and OsSUN2 Play Critical but Partially Redundant Roles in Meiosis

21. SUNny Ways: The Role of the SUN-Domain Protein Mps3 Bridging Yeast Nuclear Organization and Lipid Homeostasis

22. A molecular model for LINC complex regulation: activation of SUN2 for KASH binding

23. The diverse functional LINCs of the nuclear envelope to the cytoskeleton and chromatin.

24. LINCing complex functions at the nuclear envelope: What the molecular architecture of the LINC complex can reveal about its function.

26. A classical NLS and the SUN domain contribute to the targeting of SUN2 to the inner nuclear membrane.

27. Characterization of SUN-domain proteins at the higher plant nuclear envelope.

28. Nuclear envelope localization of human UNC84A does not require nuclear lamins

29. The inner nuclear membrane protein Suni mediates the anchorage of Nesprin-2 to the nuclear envelope.

30. The testis-specific LINC component SUN3 is essential for sperm head shaping during mouse spermiogenesis

31. Measuring similarity between gene interaction profiles

32. Dynamic post-transcriptional regulation by Mrn1 links cell wall homeostasis to mitochondrial structure and function

33. Coiled-Coil Domains of SUN Proteins as Intrinsic Dynamic Regulators

34. SPAG4L/SPAG4Lβ interacts with Nesprin2 to participate in the meiosis of spermatogenesis

35. Meiosis-specific cohesin component, Rec8, promotes the localization of Mps3 SUN domain protein on the nuclear envelope

36. Ultra-structure of the sperm head-to-tail linkage complex in the absence of the spermatid-specific LINC component SPAG4

37. Structural conservation of the autoinhibitory domain in SUN proteins

38. Differential incorporation of SUN-domain proteins into LINC complexes is coupled to gene expression

39. <scp>LINC</scp> Complexes and Their Role in Human Disease

40. Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis.

41. LINC complexes and nuclear positioning

42. A Protocol for Using Förster Resonance Energy Transfer (FRET)-force Biosensors to Measure Mechanical Forces across the Nuclear LINC Complex

43. Comparative Analysis of Sequence-Structure Function Relationship of the SUN-Domain Protein CaSUN1

44. Temporal and tissue-specific disruption of LINC complexes in vivo

45. Identification of unique SUN-interacting nuclear envelope proteins with diverse functions in plants

46. Csi1 illuminates the mechanism and function of Rabl configuration

47. LINCing complex functions at the nuclear envelope

48. Exploring the evolution of the proteins of the plant nuclear envelope

49. A novel family of plant nuclear envelope-associated proteins

50. LINC complexes promote homologous recombination in part through inhibition of nonhomologous end joining

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