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1. Heat shock response regulates stimulus-specificity and sensitivity of the pro-inflammatory NF-κB signalling

2. Heat shock factor 1 (HSF1) cooperates with estrogen receptor α (ERα) in the regulation of estrogen action in breast cancer cells

3. BRAFV600E-Associated Gene Expression Profile: Early Changes in the Transcriptome, Based on a Transgenic Mouse Model of Papillary Thyroid Carcinoma.

4. Transcriptional responses to direct and indirect TGFB1 stimulation in cancerous and noncancerous mammary epithelial cells

7. Pro-death signaling of cytoprotective heat shock factor 1: upregulation of NOXA leading to apoptosis in heat-sensitive cells

9. Interplay between HSF1 and p53 signaling pathways in cancer initiation and progression: non-oncogene and oncogene addiction

10. Heat Shock Factor 1 (HSF1) as a new tethering factor for ESR1 supporting its action in breast cancer

11. Heat shock factor 1 (Hsf1) cooperates with estrogen receptor α (erα) in the regulation of estrogen action in breast cancer cells

12. Biological Factors behind Melanoma Response to Immune Checkpoint Inhibitors

13. Heat shock response regulates stimulus-specificity and sensitivity of the pro-inflammatory NF-κB signalling

15. Additional file 2 of Heat shock response regulates stimulus-specificity and sensitivity of the pro-inflammatory NF-κB signalling

16. RRAD, IL4I1, CDKN1A, and SERPINE1 genes are potentially co-regulated by NF-κB and p53 transcription factors in cells exposed to high doses of ionizing radiation

17. Pro-inflammatory cytokine and high doses of ionizing radiation have similar effects on the expression of NF-kappaB-dependent genes

18. The periphilin 1-like BFAR isoform 3 is highly expressed in transcriptionally silent oocytes and involved in RNA metabolism

19. NGS Analysis of Liquid Biopsy (LB) and Formalin-Fixed Paraffin-Embedded (FFPE) Melanoma Samples Using Oncomine™ Pan-Cancer Cell-Free Assay

20. PHLDA1 Does Not Contribute Directly to Heat Shock-Induced Apoptosis of Spermatocytes

21. 17β-Estradiol Activates HSF1 via MAPK Signaling in ERα-Positive Breast Cancer Cells

22. Heat shock response pathways regulate stimulus-specificity and sensitivity of NF-κB signalling to temperature stress

23. The role of NF-κB transcription factor in cellular response to ionizing radiation

24. Quantitative analysis reveals crosstalk mechanisms of heat shock-induced attenuation of NF-κB signaling at the single cell level

25. SPEN protein expression and interactions with chromatin in mouse testicular cells

26. Cross talk between cytokine and hyperthermia-induced pathways: identification of different subsets of NF-κB-dependent genes regulated by TNFα and heat shock

27. The Role of Heat Shock Factors in Mammalian Spermatogenesis

28. The Role of Heat Shock Factors in Mammalian Spermatogenesis

29. Pleiotropic Role of HSF1 in Neoplastic Transformation

30. Mouse model of BRAFV600E-induced papillary thyroid carcinoma - summary of our results

31. Identification of a new mouse sperm acrosome-associated protein

32. The expression pattern of the 70-kDa heat shock protein Hspa2 in mouse tissues

33. Heat shock transcription factor 1 down-regulates spermatocyte-specific 70 kDa heat shock protein expression prior to the induction of apoptosis in mouse testes

34. Inducible 70 kDa heat shock protein does not protect spermatogenic cells from damage induced by cryptorchidism

35. Gene expression signature associated with BRAFV600E mutation in human papillary thyroid carcinoma based on transgenic mouse model

36. EXPRESSION OF THE TESTIS-SPECIFIC HSP70-RELATED GENE (HST70 GENE) IN SOMATIC NON-TESTICULAR RAT TISSUES REVEALED BY RT-;PCR AND TRANSGENIC MICE ANALYSIS

37. Overexpression of heat shock transcription factor 1 enhances the resistance of melanoma cells to doxorubicin and paclitaxel

38. NF-κB signaling pathway is inhibited by heat shock independently of active transcription factor HSF1 and increased levels of inducible heat shock proteins

39. Heat shock transcription factor 1 down-regulates spermatocyte-specific 70 kDa heat shock protein expression prior to the induction of apoptosis in mouse testes

40. Location of promoter elements necessary and sufficient to direct testis-specific expression of the Hst70/Hsp70.2 gene

41. Functional analysis of spermatocyte-specific hst70 gene promoter in transgenic mice

42. A 252 bp upstream region of the rat spermatocyte-specific hst70 gene is sufficient to promote expression of the hst70-CAT hybrid gene in testis and brain of transgenic mice

43. HSF1 Can Prevent Inflammation following Heat Shock by Inhibiting the Excessive Activation of the ATF3 and JUN&FOS Genes

44. RRAD, IL4I1, CDKN1A, and SERPINE1 genes are potentially co-regulated by NF-κB and p53 transcription factors in cells exposed to high doses of ionizing radiation

45. Quantitative analysis reveals crosstalk mechanisms of heat shock-induced attenuation of NF-κB signaling at the single cell level.

46. Active heat shock transcription factor 1 supports migration of the melanoma cells via vinculin down-regulation

47. Crosstalk between HSF1 and HSF2 during the heat shock response in mouse testes

48. The activity of acid phosphatase and the level of storage proteins during the early stages of germination of Lupinus luteus L. and Lupinus angustifolius L. seeds

49. The GC-box is critical for high level expression of the testis-specific Hsp70.2/Hst70 gene

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