Skip to Content

Dear Customer:

The current international situation is complex and volatile, and uncertain tariff policies may potentially impact our product prices. Given these uncertainties, we value your understanding regarding order-related matters.

If you decide to place an order during this period, we reserve the right to adjust the price based on the evolving situation. We understand that market changes may cause inconvenience. We will negotiate with you if there’s a significant price fluctuation due to tariff policy changes before the order’s actual delivery, and in such cases we may adjust or cancel the order as necessary.

We are planning system maintenance between Friday, Apr 18 at 9:00 PM CDT and Saturday, Apr 19 at 9:00 AM CDT. This will impact both web and offline transactions, including online orders, quotes, price and availability checks, and order status inquiries. We apologize for any inconvenience.

For important updates on recent policy changes, please click here for more details.

Merck
CN
  • Asymmetric Centromeres Differentially Coordinate with Mitotic Machinery to Ensure Biased Sister Chromatid Segregation in Germline Stem Cells.

Asymmetric Centromeres Differentially Coordinate with Mitotic Machinery to Ensure Biased Sister Chromatid Segregation in Germline Stem Cells.

Cell stem cell (2019-10-01)
Rajesh Ranjan, Jonathan Snedeker, Xin Chen
ABSTRACT

Many stem cells utilize asymmetric cell division (ACD) to produce a self-renewed stem cell and a differentiating daughter cell. How non-genic information could be inherited differentially to establish distinct cell fates is not well understood. Here, we report a series of spatiotemporally regulated asymmetric components, which ensure biased sister chromatid attachment and segregation during ACD of Drosophila male germline stem cells (GSCs). First, sister centromeres are differentially enriched with proteins involved in centromere specification and kinetochore function. Second, temporally asymmetric microtubule activities and polarized nuclear envelope breakdown allow for the preferential recognition and attachment of microtubules to asymmetric sister kinetochores and sister centromeres. Abolishment of either the asymmetric sister centromeres or the asymmetric microtubule activities results in randomized sister chromatid segregation. Together, these results provide the cellular basis for partitioning epigenetically distinct sister chromatids during stem cell ACDs, which opens new directions to study these mechanisms in other biological contexts.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Nocodazole, ≥99% (TLC), powder
Sign Into View Organizational & Contract Pricing
SKUPack SizeAvailabilityPriceQuantity
25 g
Available to ship on April 18, 2025
Details...
CN¥703.39
500 g
Available to ship on April 18, 2025
Details...
CN¥3,162.01
Sigma-Aldrich
Anti-phospho-Histone H3 (Thr3) Antibody, clone JY325, rabbit monoclonal, clone JY325, from rabbit
Sign Into View Organizational & Contract Pricing
SKUPack SizeAvailabilityPriceQuantity
25 g
Available to ship on April 18, 2025
Details...
CN¥703.39
500 g
Available to ship on April 18, 2025
Details...
CN¥3,162.01