• Title/Summary/Keyword: Cell division cycle

Search Result 333, Processing Time 0.024 seconds

H2AX Directly Interacts with BRCA1 and BARD1 via its NLS and BRCT Domain Respectively in vitro (H2AX의 BRCA1 NLS domain과 BARD1 BRCT domain 각각과의 in vitro 상호 결합)

  • Bae, Seung-Hee;Lee, Sun-Mi;Kim, Su-Mi;Choe, Tae-Boo;Kim, Cha-Soon;Seong, Ki-Moon;Jin, Young-Woo;An, Sung-Kwan
    • KSBB Journal
    • /
    • v.24 no.4
    • /
    • pp.403-409
    • /
    • 2009
  • H2AX, a crucial component of chromatin, is implicated in DNA repair, cell cycle check point and tumor suppression. The aim of this study was to identify direct binding partners of H2AX to regulate cellular responses to above mechanisms. Literature reviews and bioinformatical tools were attempted intensively to find binding partners of H2AX, which resulted in identifying two potential proteins, breast cancer-1 (BRCA1) and BRCA1-associated RING domain 1 (BARD1). Although it has been reported in vivo that BRCA1 co-localizes with H2AX at the site of DNA damage, their biochemical mechanism for H2AX were however only known that the complex monoubiquitinates histone monomers, including unphosphorylated H2AX in vitro. Therefore, it is important to know whether the complex directly interacts with H2AX, and also which regions of these are specifically mediated for the interaction. Using in vitro GST pull-down assay, we present here that BRCA1 and BARD1 directly bind to H2AX. Moreover, through combinational approaches of domain analysis, fragment clonings and in vitro binding assay, we revealed molecular details of the BRCA1-H2AX and BARD1-H2AX complex. These data provide the potential evidence that each of the BRCA1 nuclear localization signal (NLS) and BARD1 BRCA1 C-terminal (BRCT) repeat domain is the novel mediator of H2AX recognition.

Expression of Neuronal Nitric Oxide Synthase (nNOS) in Developing Rat Kidney (분화중인 흰쥐 콩팥의 요세관에서 nNOS의 발현)

  • Song, Ji-Hyun;Ryu, Si-Yun;Kim, Jin;Jung, Ju-Young
    • Applied Microscopy
    • /
    • v.38 no.2
    • /
    • pp.141-148
    • /
    • 2008
  • Nitric oxide (NO) is an important regulator of renal blood flow, glomerular hemodynamics, and tubule transport processes in the kidney. There is also evidence that NO is involved in cell cycle regulation and mitotic division. During development the nNOS expression pattern differs from that observed in adult animals. However, little is known about temporal and spatial patterns of nNOS expression in the developing kidney. The purpose of this study was to establish the time of expression and the distribution of nNOS in the developing rat kidney. Kidneys from 14-, 16-, 17-, 18-, and 20-day-old fetuses, 1-, 4-, 7-, 14-, and 21-day-old pups, and adult animals were preserved and processed for immunohistochemistry. In the adult kidney, nNOS was detected in the parietal epithelium of Bowman s capsule, macula densa, descending thin limb and inner medullary collecting duct. nNOS immunoreactivity appeared first in the distal tubule anlage at 15 days of gestation, and in all epithelial cells of developing thick ascending limbs (TAL) as well as macula densa of 17- and 18-day-old fetuses. From 20 days of gestation to 14 days after birth, nNOS was expressed in the newly formed cortical TAL, which are located in the medullary ray, whereas in mature TAL of juxtamedullary nephrons, nNOS immunolabeling gradually decreased in intensity and became restricted to the macula densa. In inner medullary collecting ducts, nNOS immunoreactivity appeared first at 7 days after birth in the papillary tip and gradually ascended to the border between outer and inner medulla. In the descending thin limb and parietal epithelium of Bowman's capsule, weak nNOS immunoreactivity was observed at 14 days after birth and labeling gradually increased to adult levels at 21 days after birth. These results suggest that differential expression of nNOS in the developing kidney is an important physiological regulator of renal function during kidney maturation.

The Inhibitory Effect of Ecklonia cava and Eisenia bicyclis Ethanol Extract on Histamine in Mackerel (감태와 대황 에탄올 추출물 처리에 의한 저장 중 고등어 내의 히스타민 생성 억제 효과)

  • Kim, Bo-Ram;Kim, Koth-Bong-Woo-Ri;Kim, Min-Ji;Kim, Dong-Hyun;Jung, Seul-A;Kang, Bo-Kyeong;Bark, Si-Woo;Pak, Won-Min;Park, Hong-Min;Lim, Sung-Mee;Cho, Young-Je;Ahn, Dong-Hyun
    • Microbiology and Biotechnology Letters
    • /
    • v.42 no.1
    • /
    • pp.93-98
    • /
    • 2014
  • This study was conducted to investigate the inhibitory effect of Ecklonia cava (EC) and Eisenia bicyclis (EB) ethanol extract on histamine production in mackerel. Changes in viable cell counts, histamine contents, pH and VBN of mackerel fillet treated with ethanol extracts during 25 days at 4 were measured. Treatments of EC and EB ethanol extract had reduced growth of viable cells by 2 log cycles during storage. Production of histamine was decreased by EC and EB extracts (115 and 96 ppm) when compared to the control at 5 days (384 ppm). The pH of mackerels treated with EC and EB extracts were no different, while the pH of the control increased during storage. Furthermore, the VBN of mackerels treated with EC and EB extracts were significantly decreased when compared to the control. In conclusion, EC and EB extract may reduce scombroid fish poisoning by decreasing histamine production in mackerel during refrigerated storage.