Search

Your search keyword '"Martina P. Pasillas"' showing total 30 results

Search Constraints

Start Over You searched for: Author "Martina P. Pasillas" Remove constraint Author: "Martina P. Pasillas"
30 results on '"Martina P. Pasillas"'

Search Results

1. Systematic analysis of transcriptional and epigenetic effects of genetic variation in Kupffer cells enables discrimination of cell intrinsic and environment-dependent mechanisms

2. Heterogeneity of HSCs in a Mouse Model of NASH

3. TREM2-independent microgliosis promotes tau-mediated neurodegeneration in the presence of ApoE4

4. Somatic mosaicism reveals clonal distributions of neocortical development

5. Somatic mosaicism in the mature brain reveals clonal cellular distributions during cortical development

6. Niche-Specific Re-Programming of Epigenetic Landscapes Drives Myeloid Cell Diversity in NASH

7. Brain cell type-specific enhancer-promoter interactome maps and disease-risk association

8. Cell type-specific enhancer-promoter connectivity maps in the human brain and disease risk association

9. Neutralization of Oxidized Phospholipids Ameliorates Non-alcoholic Steatohepatitis

10. Liver-Derived Signals Sequentially Reprogram Myeloid Enhancers to Initiate and Maintain Kupffer Cell Identity

11. 264 Interrogating altered enhancer landscapes to decode pathogenic changes in macrophages during chronic inflammatory disease

12. Niche-Specific Reprogramming of Epigenetic Landscapes Drives Myeloid Cell Diversity in Nonalcoholic Steatohepatitis

13. Procedures for the biochemical enrichment and proteomic analysis of the cytoskeletome

14. NUP98–NSD1 links H3K36 methylation to Hox-A gene activation and leukaemogenesis

15. Novel Genes Critical for Hypoxic Preconditioning in Zebrafish Are Regulators of Insulin and Glucose Metabolism

16. Persistent Transactivation by Meis1 Replaces Hox Function in Myeloid Leukemogenesis Models: Evidence for Co-Occupancy of Meis1-Pbx and Hox-Pbx Complexes on Promoters of Leukemia-Associated Genes

17. Meis1 programs transcription of FLT3 and cancer stem cell character, using a mechanism that requires interaction with Pbx and a novel function of the Meis1 C-terminus

18. Transcriptional Profiling During the Early Differentiation of Granulocyte and Monocyte Progenitors Controlled by Conditional Versions of the E2a–Pbx1 Oncoprotein

19. Nup98-HoxA9 immortalizes myeloid progenitors, enforces expression of Hoxa9, Hoxa7 and Meis1, and alters cytokine-specific responses in a manner similar to that induced by retroviral co-expression of Hoxa9 and Meis1

20. An environment-dependent transcriptional network specifies human microglia identity

21. Proteomic analysis reveals a role for Bcl2-associated athanogene 3 and major vault protein in resistance to apoptosis in senescent cells by regulating ERK1/2 activation

22. Hoxa9 Immortalizes a Granulocyte-Macrophage Colony-Stimulating Factor-Dependent Promyelocyte Capable of Biphenotypic Differentiation to Neutrophils or Macrophages, Independent of Enforced Meis Expression

23. EB-1, a tyrosine kinase signal transduction gene, is transcriptionally activated in the t(1;19) subset of pre-B ALL, which express oncoprotein E2a-Pbx1

24. NSD1 PHD domains bind methylated H3K4 and H3K9 using interactions disrupted by point mutations in human sotos syndrome

25. Quantitative production of macrophages or neutrophils ex vivo using conditional Hoxb8

26. Abstract LB-18: Bcl2-associated athanogene 3 and major vault protein regulate cell survival and resistance to apoptosis in senescent cells by regulating ERK activation

27. Meis1a suppresses differentiation by G-CSF and promotes proliferation by SCF: potential mechanisms of cooperativity with Hoxa9 in myeloid leukemia

28. HoxB8 requires its Pbx-interaction motif to block differentiation of primary myeloid progenitors and of most cell line models of myeloid differentiation

29. Decreased transcript expression coincident with impaired glycosylation in the beta2-adrenergic receptor gene does not result from differences in the primary sequence

30. Fusion to Vp16 Converts MEIS1 into an Oncoprotein That Immortalizes Progenitors and Causes AML in the Absence of Coexpressed Hox Genes: Hoxa7 and Hoxa9 Induced Further Stem Cell Gene Transcription in Vp16MEIS1 Progenitors

Catalog

Books, media, physical & digital resources