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Jak2-V617F Mouse
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Jak2-V617F Mouse
제품명
Jak2-V617F Mouse
제품 ID
C001564
품종 계통
C57BL/6JCya-Jak2em1(V617F)/Cya
Backgroud
C57BL/6JCya
상태
이 마우스 계통을 논문에서 사용할 경우, “Jak2-V617F Mouse (카탈로그 번호 C001564)은 Cyagen에서 구입하였습니다.”라고 명시해 주시기 바랍니다.
Disease Animal Models
Spontaneous Tumor
구매 가능한 제품 종류
연령
Genotype
성별
수량
표준 제공 조건은 최소 3마리의 이형접합(heterozygous) 보균자를 보장합니다. 동형접합(homozygous) 보균자 및/또는 특정 성별에 대한 브리딩 서비스도 제공됩니다.
가격 문의
Disease Animal Models
Spontaneous Tumor
기본 정보
검증 데이터
관련 자료
기본 정보
유전자명
유전자 별칭
Fd17
NCBI ID
염색체
Chr 19
MGI ID
Datasheet
품종 계통 설명
Janus kinase 2 (JAK2) is a non-receptor tyrosine kinase that plays a crucial role in the JAK/STAT signaling pathway, which transmits extracellular signals to the nucleus, promoting cell proliferation and division [1]. Myeloproliferative neoplasms (MPNs) are a group of hematological malignancies characterized by the continuous clonal proliferation of one or more relatively mature bone marrow cell lineages. Classic MPNs include polycythemia vera (PV), essential thrombocythemia (ET), and primary myelofibrosis (PMF), all of which originate from the clonal expansion of a single hematopoietic stem cell with a somatic mutation, leading to single-lineage or multilineage hyperplasia [2]. The JAK2 V617F mutation is the most common pathogenic mutation in human MPNs. It results from a single nucleotide substitution of G to T at position 1849 in exon 14 of the JAK2 gene (c.1849G>T), causing a valine to phenylalanine substitution (p.V617F) [3]. This dominant gain-of-function (GOF) mutation affects the JH2 pseudokinase domain of JAK2, disrupting its autoinhibitory function, and leading to constitutive activation of JAK2 and the JAK/STAT pathway in the absence of a ligand. The JAK2 V617F mutation is detected in 50%-60% of ET and PMF patients and more than 95% of PV patients [4]. In PV, the mutation causes excessive red blood cell production, increasing blood viscosity and thrombotic risk. In ET, it leads to excessive platelet production, which also increases thrombotic risk. In PMF, it causes bone marrow fibrosis and abnormal blood cell production, leading to anemia, splenomegaly, and other complications [3-4].
The Jak2-V617F mice are generated by introducing a homologous mutation to the human JAK2 V617F into the mouse Jak2 gene via gene editing. This strain is homozygous lethal. Heterozygous Jak2-V617F mice exhibit classic MPN-like disease phenotypes such as splenomegaly and structural damage, significantly elevated red blood cell count, hemoglobin, hematocrit, white blood cell count, platelet count, marked megakaryocytic hyperplasia (with granulocytic and erythroid hyperplasia), extramedullary hematopoiesis, and congestion of splenic sinusoids. Therefore, Jak2-V617F mice can be used for studying the mechanisms of myeloproliferative neoplasms (MPNs) like polycythemia vera (PV), essential thrombocythemia (ET), and primary myelofibrosis (PMF), as well as for evaluating therapeutic drugs.
Reference
Perner F, Perner C, Ernst T, Heidel FH. Roles of JAK2 in Aging, Inflammation, Hematopoiesis and Malignant Transformation. Cells. 2019 Aug 8;8(8):854.
Hyjek E, Vardiman JW. Myelodysplastic/myeloproliferative neoplasms. Semin Diagn Pathol. 2011 Nov;28(4):283-97.
Chen E, Mullally A. How does JAK2V617F contribute to the pathogenesis of myeloproliferative neoplasms? Hematology Am Soc Hematol Educ Program. 2014 Dec 5;2014(1):268-76.
Mullally A, Lane SW, Ball B, Megerdichian C, Okabe R, Al-Shahrour F, Paktinat M, Haydu JE, Housman E, Lord AM, Wernig G, Kharas MG, Mercher T, Kutok JL, Gilliland DG, Ebert BL. Physiological Jak2V617F expression causes a lethal myeloproliferative neoplasm with differential effects on hematopoietic stem and progenitor cells. Cancer Cell. 2010 Jun 15;17(6):584-96.
Becker H, Engelhardt M, von Bubnoff N, Wäsch R. Ruxolitinib. Recent Results Cancer Res. 2014;201:249-57.
변형 전략
Introducing the p.V617F (GTC to TTC) mutation into exon 14 of the mouse Jak2 gene via gene editing.

Figure 1. Diagram of the gene editing strategy for the generation of Jak2-V617F mice.
응용 분야
Research on JAK/STAT signaling pathway transduction;
Research on Polycythemia Vera (PV), Essential Thrombocythemia (ET), and Primary Myelofibrosis (PMF);
Development and evaluation of therapeutic drugs for myeloproliferative neoplasms (MPNs).
검증 데이터
1. Survival Curves
Kaplan-Meier survival rates of wild-type (WT) and Jak2-V617F mice were continuously monitored from 3 to 30 weeks of age following weaning. No deaths occurred in WT mice during the observation period. In contrast, Jak2-V617F mice exhibited a 25% mortality rate, with male mice showing an earlier onset of death compared to females.

Figure 2. Kaplan-Meier survival curves of Jak2-V617F and wild-type (WT) mice (both sexes; heterozygous; WT, n=10; Jak2-V617F, n=20).
2. Complete Blood Count (CBC) test
(1)CBC Results

Figure 3. Complete blood count (CBC) results of wild-type (WT) and Jak2-V617F mice (7 weeks old, male, n=5)*. N/A: Not available. The analyzer was unable to calculate this parameter; therefore, no result was reported. Data are presented as mean±SD.
Note: CBC results may vary depending on the hematology analyzer and analytical method used. The data shown here were generated using a SYSMEX XN-1000V[B1] hematology analyzer, and platelet (PLT) counts were determined using the impedance method.
(2)CBC Analysis
CBC analysis showed that, compared with wild-type (WT) mice, Jak2-V617F mice exhibited significantly increased white blood cell (WBC) counts, red blood cell (RBC) counts, hematocrit (HCT), hemoglobin (HGB) levels, and platelet (PLT) counts. These results indicate that Jak2-V617F mice had developed the hematological phenotype of myeloproliferative neoplasm (MPN) by 7 weeks of age.

Figure 4. Complete blood count (CBC) analysis of wild-type (WT) and Jak2-V617F mice (7 weeks old, male, n=5)*. (A) White blood cell (WBC) count; (B) Red blood cell (RBC) count; (C) Hematocrit (HCT); (D) Hemoglobin (HGB); (E) Platelet (PLT) count. Data are presented as mean±SD.
Note: This strain is homozygous lethal, and the validation data for Jak2-V617F mice presented in this document were obtained from heterozygous mice.
3. Appearance and weight of the spleen
Dissection result shows that compared to wild-type mice, Jak2-V617F mice have significantly enlarged spleens with increased weight.

Figure 5. Comparison of spleen appearance and weight between wild-type (WT) mice and Jak2-V617F mice (10 weeks old, male, n=3). Data are presented as mean±SD.
4. HE & Silver Staining
(1)Spleen, 10 weeks old, Male
Compared to wild-type mice, Jak2-V617F mice display splenic swelling, structural damage, and varying degrees of myeloid cell hyperplasia. Specifically, there is a marked increase in megakaryocytes with abundant cytoplasm and large, single or lobulated nuclei (blue arrows). Surrounding these are increased granulocytes of various stages, medium-sized cells with variable cytoplasm amounts, and nuclei that are round or oval, with mature granulocytes showing rod-shaped or lobulated nuclei. Also evident are increases in granulocytes and/or erythroid islands (hematopoietic center islands, yellow arrows), accompanied by an increase in platelets. Additionally, there is splenic sinus congestion and fibrous trabeculae proliferation (green arrows), among other pathologies.

Figure 6. Comparison of H&E staining results in the spleens of wild-type (WT) mice and Jak2-V617F mice (10 weeks old).
(2)Spleen, 29 weeks old, Male
HE staining showed that compared with WT male mice, the spleen structure of Jak2-V617F male mice was disrupted, with white pulp atrophy, significant erythroid hyperplasia, and a marked increase in megakaryocytes. Silver staining results indicated that reticular fiber hyperplasia was observed in the spleens of Jak2-V617F male mice compared with WT male mice.

Figure 7. HE and silver staining results of spleen tissues from wild-type (WT) mice and Jak2-V617F mice.
(3)Bone Marrow, 29 weeks old, Male
HE staining revealed increased and morphologically abnormal megakaryocytes in the bone marrow of Jak2-V617F male mice compared to WT controls, consistent with pre-primary myelofibrosis (prePMF) features observed in clinical patients. Silver staining showed significantly thickened and increased reticular fibers in the bone marrow of Jak2-V617F mice, indicating the development of bone marrow fibrosis.

Figure 8. HE and silver staining results of bone marrow from wild-type (WT) and Jak2-V617F mice.
5. Pharmacodynamic Experiment of Ruxolitinib Phosphate
(1)Experimental Design

Figure 9. Study Protocol and Grouping for the Pharmacodynamic Experiment of Ruxolitinib Phosphate*. Mice aged 5 weeks were randomly assigned to three groups: Group G1 (Jak2-V617F mice, administered with Ruxolitinib at 50 mg/kg via oral gavage, twice daily for 6 consecutive weeks); Group G2 (Jak2-V617F mice, administered with vehicle control via oral gavage, twice daily for 6 consecutive weeks); Group G3 (C57BL/6 wild-type mice, no treatment). Blood samples were collected from mice before administration (D0). During the administration period (D1–D41), body weight was measured and complete blood count (CBC) was performed at different time points. After the end of administration (D42), mice were euthanized, and spleen and femur tissues were harvested for H&E staining and pathological analysis.
*Ruxolitinib is a JAK1/JAK2 inhibitor indicated for the treatment of myeloproliferative neoplasms, graft-versus-host disease, as well as dermatological disorders such as atopic dermatitis and vitiligo [5].
(2)Complete Blood Count (CBC) Analysis

Figure 10. Complete Blood Count (CBC) Analysis Results of Jak2-V617F Mice after Ruxolitinib Treatment. The CBC results showed that Ruxolitinib treatment significantly reduced the white blood cell count (WBC) in Jak2-V617F mice, while no significant changes were observed in other hematological parameters, including red blood cell count (RBC), hemoglobin (HGB), hematocrit (HCT), and platelet count (PLT).
(3)Spleen Analysis

Figure 11. Spleen Morphology of Jak2-V617F Mice after Ruxolitinib Treatment. Ruxolitinib treatment in Jak2-V617F mice led to a significant reduction in spleen size.
(4)H&E Staining and Pathological Analysis

Figure 12. Pathological Analysis of Femur Tissues from Jak2-V617F Mice after Ruxolitinib Treatment. Bone marrow cavities in all samples showed numerous erythroid cells, with no significant bone trabecular hardening or narrowing of marrow cavity spaces. All samples in Groups G1 and G2 exhibited bone marrow reticulin fibrosis (blue arrows), megakaryocyte hyperplasia (yellow arrows), and sinusoidal dilation (red arrows).
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