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rabbit anti grp78 antibody  (Proteintech)


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    Structured Review

    Proteintech rabbit anti grp78 antibody
    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    Images

    1) Product Images from "Tankyrase activity is essential for asymmetric division and chromosome segregation in oocyte meiosis"

    Article Title: Tankyrase activity is essential for asymmetric division and chromosome segregation in oocyte meiosis

    Journal: Journal of Advanced Research

    doi: 10.1016/j.jare.2025.07.008

    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of GRP78 in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
    Figure Legend Snippet: TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of GRP78 in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)

    Techniques Used: Migration, Control, Expressing, Western Blot



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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of <t>GRP78</t> in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
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    Image Search Results


    TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of GRP78 in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)

    Journal: Journal of Advanced Research

    Article Title: Tankyrase activity is essential for asymmetric division and chromosome segregation in oocyte meiosis

    doi: 10.1016/j.jare.2025.07.008

    Figure Lengend Snippet: TNKS affects distributions of Formin2 and ER for chromosome migration in mouse oocytes. (A) Representative images of Formin2 in MI stage oocyte from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (B) Relative intensity of Formin2 at spindle poles in oocytes from the control (n = 47) and JW55 treatment (n = 51) groups. ***, P < 0.001. (C) Band intensity analysis of Formin2 expression in the MI stage oocytes from control and JW55 treatment groups. *, P < 0.05. (D) Representative images of ER-tracker in MI stage oocyte from the control and JW55 treatment groups. Black, ER-tracker. Bar = 20 μm. (E) The percentage of abnormal ER distribution in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. *, P < 0.05. (F) Relative intensity of ER-tracker in oocytes from the control (n = 50) and JW55-treated (n = 56) groups. ***, P < 0.001. (G) Western blot of GRP78 in MI stage oocytes from control and JW55 treatment groups. (H) Band intensity analysis of GRP78 in the control and JW55 treatment groups. *, P < 0.05. (I) Representative images of a relative position change between chromosomes and Formin2 in ATI stage oocytes from the control and JW55 treatment groups. Green, Formin2. Cyan, DNA. Bar = 20 μm. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)

    Article Snippet: Rabbit anti-α-Tubulin antibody (11224-1-AP), rabbit polyclonal anti-GAPDH antibody (10494-1-AP), rabbit anti-GRP78 antibody (11587-1-AP), rabbit anti-TNKS1 antibody (18030-1-AP), rabbit anti-Ran antibody (10469-1-AP), and rabbit anti-Rab11a antibody (67902-1-Ig), rabbit anti-Securin antibody (18040-1-AP), rabbit anti-CDC25C antibody (66912-1-Ig), rabbit anti-Formin2 antibody (11259-1-AP), rabbit anti-BubR1 (11504-2-AP) were from Proteintech.

    Techniques: Migration, Control, Expressing, Western Blot