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1. A de novo paradigm for male infertility

2. AXDND1 is required to balance spermatogonial commitment and for sperm tail formation in mice and humans

3. C19ORF84 connects piRNA and DNA methylation machineries to defend the mammalian germ line

4. A de novo paradigm for male infertility

5. A de novo paradigm for male infertility

6. Large-scale analyses of the X chromosome in 2,354 infertile men discover recurrently affected genes associated with spermatogenic failure

7. The piRNA-pathway factor FKBP6 is essential for spermatogenesis but dispensable for control of meiotic LINE-1 expression in humans

8. DDB1-and CUL4-associated factor 12-like protein 1 (Dcaf12l1) is not essential for male fertility in mice

9. Actionable secondary findings following exome sequencing of 836 non-obstructive azoospermia cases and their value in patient management

10. Diverse monogenic subforms of human spermatogenic failure

11. Zinc finger RNA binding protein 2 (ZFR2) is not required for male fertility in the mouse

12. IFPA Meeting 2011 workshop report I: Placenta: Predicting future health; roles of lipids in the growth and development of feto-placental unit; placental nutrient sensing; placental research to solve clinical problems – A translational approach

13. The piRNA-pathway factor FKBP6 is essential for spermatogenesis but dispensable for control of meiotic LINE-1 expression in humans

14. A systematic review of the validated monogenic causes of human male infertility: 2020 update and a discussion of emerging gene-disease relationships

15. Variants in GCNA, X-linked germ-cell genome integrity gene, identified in men with primary spermatogenic failure

16. Variant PNLDC1, Defective piRNA Processing, and Azoospermia

17. Lack of evidence for a role of PIWIL1 variants in human male infertility

18. Variants in GCNA, X-linked germ-cell genome integrity gene, identified in men with primary spermatogenic failure

19. A systematic review of the validated monogenic causes of human male infertility: 2020 update and a discussion of emerging gene-disease relationships

20. The Sertoli cell expressed gene secernin-1 (Scrn1) is dispensable for male fertility in the mouse

21. Lack of evidence for a role of PIWIL1 variants in human male infertility

22. Biallelic mutations in M1AP are associated with meiotic arrest, severely impaired spermatogenesis and male infertility

23. Variant , Defective piRNA Processing, and Azoospermia.

25. Semen quality is affected by HLA class I alleles together with sexually transmitted diseases.

30. Biallelic mutations in M1AP are associated with meiotic arrest, severely impaired spermatogenesis and male infertility

31. Utility of exome sequencing in primary spermatogenic disorders: From research to diagnostics.

32. AXDND1 is required to balance spermatogonial commitment and for sperm tail formation in mice and humans.

33. Toward clinical exomes in diagnostics and management of male infertility.

34. Undiagnosed RASopathies in infertile men.

35. C19ORF84 connects piRNA and DNA methylation machineries to defend the mammalian germ line.

36. AXDND1 is required to balance spermatogonial commitment and for sperm tail formation in mice and humans.

37. The origins and functional effects of postzygotic mutations throughout the human life span.

38. DDX3Y is likely the key spermatogenic factor in the AZFa region that contributes to human non-obstructive azoospermia.

39. Diverse monogenic subforms of human spermatogenic failure.

40. The piRNA-pathway factor FKBP6 is essential for spermatogenesis but dispensable for control of meiotic LINE-1 expression in humans.

41. DDB1- and CUL4-associated factor 12-like protein 1 (Dcaf12l1) is not essential for male fertility in mice.

42. Zinc finger RNA binding protein 2 (ZFR2) is not required for male fertility in the mouse.

43. Large-scale analyses of the X chromosome in 2,354 infertile men discover recurrently affected genes associated with spermatogenic failure.

44. Actionable secondary findings following exome sequencing of 836 non-obstructive azoospermia cases and their value in patient management.

45. Human INHBB Gene Variant (c.1079T>C:p.Met360Thr) Alters Testis Germ Cell Content, but Does Not Impact Fertility in Mice.

46. A systematic review of the validated monogenic causes of human male infertility: 2020 update and a discussion of emerging gene-disease relationships.

47. Comparative single-cell analysis of biopsies clarifies pathogenic mechanisms in Klinefelter syndrome.

48. Variants in GCNA, X-linked germ-cell genome integrity gene, identified in men with primary spermatogenic failure.

49. The Sertoli cell expressed gene secernin-1 (Scrn1) is dispensable for male fertility in the mouse.

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